Egg-Laying Mammals

Mammals are endotherms, animals that maintain their own internal body temperature, and they have three unique traits: they are covered with fur or hair; the young are fed milk from the mother’s mammary glands; and they have three middle-ear bones.  Most mammals give live birth, but one group, the monotremes, are egg-laying mammals.  Fossil evidence has been found of monotremes that once lived in South America, but all of the species alive today, echidnas and platypus, reside in Australia and New Guinea. 

Monotremes have other unique traits such as lacking adult teeth and stomachs.  Food is taken in by mouth, swallowed, and travels through the esophagus straight into their intestines, which contain the chemicals needed to break down the food and absorb nutrients directly into the bloodstream.

Monotremes are solitary animals, coming together once a year to mate.  An egg takes nearly a month to grow inside the female’s body, receiving nutrients directly from her. The egg has a soft, leathery exterior; and once it is laid, hatching  happens quickly, usually within several days.  Babies are called “puggles” and are born with well-developed forelegs allowing them to crawl over the mother’s body.  Females do not have teats.  Milk is excreted through special pores and puddles directly on the skin of the female’s stomach for the babies to lap up.  Monotremes will lay one to two eggs each year.  Parental care is provided only by the female, and newborns stay with the females for four to six months.

Eastern long-beaked echidna, Zaglossus bartoni, range map by Chermundy, Jan 2011
Western long-beaked echidna, Zaglossus bruijnii, range map by Chermundy, Jan 2011
Sir Davids long-beaked echidna, Zaglossus attenboroughi, range map by Chermundy, Jan 2011
Short-beaked echidna, Tachyglossus aculeatus, range map by Chermundy, Jan 2011

Echidnas compose a group of four monotreme species that are nocturnal, spending most of the day hiding in fallen trees or empty burrows.  With fur coats of darker brown or black, they are well camouflaged.  All species forage for ants, termites, and other small invertebrates using a highly developed sense of smell to detect the trails and movements of their prey.  As shown on the maps above, habitat for each species may include vast acreages or almost nothing at all.  These secretive animals have not been well-studied, and accurate population numbers are not well-known.

Eastern long-beaked echidna, Zaglossus bartoni, by Matteo De Stefano, specimen at MUSE
Western long-beaked echidna, Zaglossus bruijnii, by Jaganath, Mar 2006

The Eastern long-beaked echidna, Zaglossus bartoni, weighs 10-20 pounds, has no tail, and lives in the mountainous regions of New Guinea above 7,000 feet in altitude.  It thrives on earthworms and insects using its long sticky tongue to easily capture and eat them.  The Western long-beaked echidna, Zaglossus bruijnii, also lives in similar habitat west of the Paniai Lakes region of New Guinea.  This species is the largest of the echidnas, weighing about 40 pounds.  They have long, sharp claws used to dig earthworms and other insects from the ground.  It is illegal to hunt either of these species, but both are considered delicacies and have been greatly affected by poaching, as well as habitat destruction.

Short-beaked echidna, Tachyglossus aculeatus, by Fir0002-Flagstaffotos, Jan 2007

The short-beaked echidna, Tachyglossus aculeatus, sometimes known as a spiny anteater, weighs between five and fifteen pounds.  They have dark brown fur with cream colored quills made from modified keratin.  A short tail and short but stout and strong limbs allow this animal to dig rapidly and easily tear apart logs in its search for termites and underground insects.  Short-beaked echidnas spend much of their life underground and can tolerate low oxygen and high carbon dioxide levels.  They have no sweat glands and cannot tolerate high heat, but will use their ability to swim in order to cool off during heat spells.  During winter in Australia, the animal enters torpor, reducing its metabolism to conserve energy until waking in spring to mate.

Sir Davids long-beaked echidna, Zaglossus attenboroughi, specimen at Naturalis Biodiversity Center

Sir David’s long-beaked echidna, Zaglossus attenboroughi, is the smallest echidna at about five pounds.  This species is also solitary and nocturnal, coming together with others only once a year to find a mate.  The female digs a well-insulated burrow for her single egg and takes care of her young for 4-5 months.  These echidnas are critically endangered with population sizes unknown.  The last one to be positively identified in the wild was recorded on a trail camera in 2023.

Duck-billed platypus, Ornithorhynchus anatinus, by Klausber, Mar 2012
Duck-billed platypus, Ornithorhynchus anatinus, range map from the IUCN Database, Nov 2012
Platypus puggles, by Faye Bedford, Jul 2009

The duck-billed platypus, Ornithorhynchus anatinus, has a streamlined body made for easy maneuvering in the water.  They live about 15 years in the wild and can mate at age two; they will normally have more than one mate in their lifetimes.  Puggles are born hairless at about 8″ in length and will nurse for 2 to 4 months before learning to swim.  They have some strange looking features including a large, flat bill and legs that come off the sides of their body, making them awkward on land, but graceful in the water.

Duck-billed platypus electrolocation infographic by Chiswick Chap

The platypus is a nighttime, underwater hunter, searching for shrimp, crayfish, and other small animals.  Their bill is covered with electroreceptors that can detect electrical impulses given off by their prey, enabling them to find their food even in dark, murky waters and muddy bottoms.  Without teeth, they collect their prey in cheek pouches until they return to the water’s surface.  A hard plate that runs along the edge of their bill is used in combination with bits of stone to grind their food before swallowing it.

Duck-billed platypus hind foot spur by Elonnon, Aug 2005

Spikes or sharp, hollow spurs, are located on each of the platypuses hind ankles.  Primarily used during mating season when engaged in fights with other males to establish territory, the spike delivers venom when stabbed into another animal.  The venom is not fatal to other animals including humans, but if a human is stabbed, the venom causes nausea, sweats, swelling, and excruciating pain that is not treatable with any known pain-killer including morphine.  However, the venom is being used in medicinal studies.  A hormone contained in the venom has been found to promote the release of insulin and lower blood sugar levels in diabetes patients.  A second chemical compound being studied is a protein in the female’s milk that has been found effective in treating antibiotic resistant bacteria.

Monotremes are unique in the world of mammals, but very little is actually known about their daily habits, population ranges, and what is needed to protect these species.  Learn more by visiting the Jurica-Suchy Nature Museum or a natural history institution near you.

Spring Migration

Meteorological spring starts Sunday, and we are already starting to hear the calls of early migratory birds, heading north from southern wintering grounds, working to establish territory their among the best nesting sites available. 

Red-winged blackbird, Agelaius phoeniceus, singing by Rhododendrites, May 2023

Some birds, including red-winged blackbirds, Agelaius phoeniceus, get their cue to start spring migration as temperatures get warmer.  These species head to prairies, forests, and wetlands to claim a location they can protect, call for a mate, and establish a nesting site with good protection and food sources.  Other birds, including many warbler species, return in spring when daylight hours lengthen.  Generally flying at night, they use star positions and the Earth’s magnet field to guide them.  If nights are stormy or heavily overcast, early morning may find hundreds of them waiting in fields for clear skies.  Birds may also stop for a day or two in areas located on the southern shores of any large body of water to rest and feed before crossing.

Red-winged blackbird, Agelaius phoeniceus, flock at sunset by Jerry Segraves
North America flyway map by USFWS

Bird species around the world generally follow established flyways, established routes over specific locations between their southern and northern territories.  Many migration routes do not follow a straight path.  Some species have historical stopover or feeding locations that provide a rest point along the way.  Other species may not be able to cross a mountain range; or a large body of water can act as a barrier for land birds, but may be a required food source for wetland birds.

Arctic tern, Sterna paradisaea, adult & juvenile by Charles J Sharp, Aug 2025
Arctic tern, Sterna paradisaea, in flight by Charles J Sharp, Aug 2025

Long distance migration routes are most common for birds wintering in subtropical and tropical areas and breeding in the northern hemisphere.  Long migrations in the southern hemisphere are far less common because there is less land near the South Pole to support breeding activities.  The record holder for migration distance is the Arctic tern, Sterna paradisaea, overwintering in Antarctica and breeding in Arctic locations, a round trip between 30,000 and 55,000 miles.  Some shorter migrations are between upper and lower altitudes in mountainous regions.

Penguin migration map by Fred Cooke
& Jenni Bruce, Aug 2011
Dusky grouse male, Dendragapus obscurus, displaying by US NPS

Most birds migrate in flocks, which reduces the energy needed to fly long distances and provides added protection against predators.  Penguins migrate without flying.  Most penguin species swim between locations, covering up to 1,000 miles round trip.  A few species cover long distances on foot, including dusky grouse, Dendragapus obscurus, in the Rocky Mountains which walk from lower to higher elevations.  However, a flock may encounter unfavorable weather or flying conditions that causes a large number of birds to stall in one location, introducing other risks including depleted food sources and predation by land-based animals.

At the Jurica-Suchy Nature Museum, we host a nature walk every other week to observe changes in our campus including the birds that are moving through the area.  There are many birding groups worldwide that provide opportunities to observe and learn about migratory birds in every location.  Consider joining a group, or take your own bird walk as we have clear days and warming temperatures and see who’s on the move in your area.

Tracks In The Snow, pt.2

In the last blog we explored many of the characteristics of tracking.  In this blog, we’ll explore tracks, eating patterns, and scat from animals that are active in northern Illinois throughout our winters.  Many of these species live elsewhere, as well, and the information here can be applied to other species with the same characteristics as those in Illinois. 

White-tailed deer, Odocoileus virginianus, domesticated horse, and bison, Bison bison, can all be found and observed in many urban and agricultural areas of northern Illinois.  These hoofed mammals all walk on their toes, making a deep print of two toenails split down the center.  The pointed end faces the direction the animal was traveling.

White-tailed deer, Odocoileus virginianus, by mirceax, Getty Images
Deer tracks by florathexplora, Mar 2008
Bison, Bison bison, grazing by belfasteileen, Getty Images

Hoofed species in this area are all browsers and grazers.  Browsers feed on leaves, fruit, and soft shoots of woody plants.  One browser in this area, the white-tailed deer, leaves a distinct bite pattern exhibiting a ragged tear from the lower teeth and a clean cut from the upper teeth.  Deer also use their lower teeth to scrape away soft bark from trees such as cherry, apple, willow, and sumac.  Grazers feed on grass and lower-growing vegetation. These species include horses and bison which bite grass off close to the ground.

Rabbit tracks by Lorianne DiSabato, Jan 2025
Squirrel tracks in snow by Tracy Rolling, Feb 2010

Rabbits, squirrels, and chipmunks all move with a hopping motion.  The smaller front feet land first and the larger hind feet land immediately in front of the front feet.  Squirrels and chipmunks have five toes on the hind feet and four toes on their front feet.  Rabbits have furred feet, effectively hiding the distinct toes, and their tracks appear as a large oblong hind foot in front of a much shorter front foot.  The spacing of the tracks indicates of how fast the animal was moving.

Eastern cottontail rabbits, Sylvilagus floridanus, have teeth on both the upper and lower jaw, leaving a clean, forty-five degree angle cut a few inches off the ground.  They prefer sumac, maple, apple and oak.  Other signs that may be present where rabbits have eaten are scat piles.  Their scat is small ovals that come out one at a time, so a pile of scat indicates that the rabbit stayed in that one spot for an extended period of time.  Squirrels and chipmunks both have continuously growing incisors that leave distinct, small parallel grooves on the ends of woody shoots they have chewed. 

Perching bird tracks in snow by Jim Forest, Feb 2017
Webbed trails, Raritan River Bank by joiseyshowaa, Jan 2009

Woodpecker tracks show two toes pointing in each direction.  Perching birds have one toe pointing backwards and three toes pointing forwards.  Larger birds of prey such as hawks and owls may have tracks that are blurred indicating feathers covering their toes.  Waterfowl, including ducks and geese, will make flattened tracks showing webbing between their toes.

Owl wing prints and attack point by Chris Fournier, Dec 2013

Many larger hawks and owls in our area hunt by soaring on wind drafts while scanning the ground below for prey.  When a mouse or other small animal is found, the predator will dive from overhead to snatch up the prey or pin it to the ground before killing it, then possibly taking the prey to another location to eat.  Wing marks and depressions in snowy areas are clear indications of an attack.

Raccoon tracks by August Ride, Jan 2018
Opossum track by Phil Myers, Univ of Mich, Ann-Arbor, Feb 2009

The North American raccoon, Procyon lotor, and Virginia opossum, Didelphis virginiana, have alternating prints.  Raccoons leave a round print with five long toes that distinctly resembles a human footprint.  Opossums also have five toes, but the outer one is opposable, like our thumb, and leaves a distinctive print with four toes pointing forward and one pointing to one side.  You may also observe a wavy line between the opossum tracks as it drags its tail along.

Canines and felines have padded feet.  Clues to the specie’s identity come from observations of the general shape of the imprint, how many toes there are, if there are claw marks at the ends of the toes, and the general pattern left by the trail of prints.  Canines including dog, red fox, Vulpes vulpes, and coyote, Canis latrans, walk on their four front toes.  Each footprint will show a back pad, a small pad behind each toe, and a claw mark in front of each toe.  The overall imprint will be longer than it is wide.  Red fox trails exhibit direct registration, with the hind foot stepping directly into the track left by the front foot but other canine species show indirect registration with front and hind tracks slightly separated.

Coyote tracks in snow by David Merwin, Mar 2007
Bobcat track by Frank D Lospalluto, Feb 2016

Felines include domesticated cats and bobcats, Lynx rufus.  These animals have similar prints from walking on their four front toes, but a feline track shows the back pad and four toe pads in a circular impression, and no claw marks because they withdraw their claws when walking. 

When observing tracks, keep in mind these points: whether hind feet and front feet are different, how many toes are showing, are there claw marks, is there webbing, feathers, or fur between toes, which foot is in front, and the shape of the print. Consider a tracking field guide or a visit to the Jurica-Suchy Nature Museum or a natural history museum near you for more information.

Seaside

Shorelines of oceans, seas, and large bodies of water around the world are habitats for plants and animals that thrive in challenging conditions.  Tides occur twice each day when water levels rise over a six hour period to cover large areas before receding to leave those same areas open to the air until the next tide starts to move inland again.

Shoreline habitat has been classified into zones often known by many different names.  The intertidal zone is the area affected by changing temperature and salinity conditions as water moves in and out with each tide.  The subtidal zone is the lowest and is exposed to air only during extreme spring tides or storms.  The backshore zone is the highest and is exposed to water only during extreme spring tides or storms. 

Starfish & anemone in tidal pool by Jonathan Levy
Sea urchin in tidal pool, Bahia de Banderas by Jim Hoffman, Mar 2017

Many species of animals live in each zone and are adapted to living completely submerged as well as completely uncovered by water for several hours each day.  They handle the change in temperature and salinity with exposure to air or water.  Tidal pools may keep some animals submerged for far longer periods.  Temperature, dissolved oxygen, and salinity change far less for these organisms. 

Some species can be found in every zone in the ecosystem, but many are anchored to rocks or dug into the bottom.  Species may prefer one zone, but get washed into another zone by wave action.  Many organisms have tough outer surfaces to put up with battering waves and exposure to sun and wind.  All of the occupants are subject to a wide range of predators from those that move on dry land to underwater hunters.  Let’s take a look at a few of the creatures able to live in these ever-changing conditions.

The sea anemone clings to rocks and protects itself by drawing in its tentacles to become a jelly-like blob.  The squat lobster can be found under stones along the shoreline.  Its tail is fan-shaped and facilitates quick escapes when the animal is threatened by pulling the lobster through the water with powerful strokes.  Bryozoans are small filter feeding organisms protected by a hard exoskeleton that the animal can withdraw into for protection.

Dog whelk, Nassarius livescens, by Budak, Dec 2016
Starfish & anemone in tidal pool by Jonathan Levy

A mollusk called a dog whelk is a stealth predator often found on rocky surfaces.  It uses its tongue to drill through the shells of other mollusks, where it squirts a digestive juice into the prey’s shell which kills and partially digests the prey.  The dog whelk then uses its tongue to suck up the soupy meal.  The starfish is another fierce predator.  It wraps its arms around a shellfish and pulls it apart.  Upon opening the shell, the starfish pushes its stomach out of itself and into the prey’s open shell where it empties its digestive juices inside, and similar to the dog whelk, creates a tasty, soupy, meal.

Fan worm by Marta Terry L.
Sea urchin in tidal pool, Bahia de Banderas by Jim Hoffman, Mar 2017

Sea urchins can be found clinging to hard surfaces where they feed on algae and other small, encrusted animals.  Fan worms look like a leathery tube among underwater rocky crags.  Several feathery tentacles fan out into the water to filter out microorganisms flowing by.

Shorelines create a habitat that is constantly changing with tides moving in and out, inconsistent weather conditions, and a large variety of flora and fauna coming and going.  Learn more about this fascinating habitat at the Jurica-Suchy Nature Museum or a natural history museum near you.

Bird Beaks

Beaks or bills?  Two interchangeable words naming the horny part of the jaw of a bird.  They have numerous uses including gathering food, feeding, preening, and display, and are often used for functions that would be accomplished by arms and hands on other animal species.  Let’s take a closer look at their structure and how birds use them for feeding.

Beaks come in a variety of sizes, and most are proportionate to the size of the bird’s head.  Two or more of the bones comprising the lower jaw in birds are often fused together, increasing the strength of the overall structure.  Birds do not have teeth, allowing the jaw bones to be lightweight, making it easier for a bird to hold its head out in front of its body while flying. 

Barn owl, Tyto alba, skull showing fused jaw bones by Didier Descouens, Jul 2010

Beaks are made from bone covered with keratin, a structural protein providing strength and rigidity.  Yet beaks have some flexibility which adds to their dexterity when in use.  The inner surface of the keratin layer is constantly growing while the outer surface is equally being worn away by use.  Both upper and lower jaws are jointed where they attach to the skull, allowing for extended movements including the ability of a bird to open its jaws wider than most other animal species.

Great white pelican, Pelecanus onocrotalus, by Craig Adam, Feb 2013; Red-headed woodpecker, Melanerpes erythrocephalus, by Mark Moschell, May 2016; Evening grosbeak, Hesperiphona vespertina, by Fishhawk, Feb 2021

A beak is specialized for every species depending on diet and food gathering methods.  Cone-shaped beaks, found among cardinals, grosbeaks, and finches, can trap, cut, and crush seeds.  Scoop-shaped beaks allow skimmers, spoonbills, and pelicans to slide their lower jaw under slippery prey, then catch and hold onto it .  Beaks tipped with a chisel-like point are used by woodpeckers probing into crevices in hard materials.  Along with a reinforced skull, keratin reinforces the beak’s toughness, standing up to repeated hammering and prying movements.

From upper left: Blue-gray gnatcatcher, Polioptila caerulea, by Dave Wendelken, Jul 2023; Pied flycatcher, Ficedula hypoleuca, by Edward Anderton, Jun 2012; Ruby-throated hummingbird, Archilocus colubris, by Mark Moschell, Jun 2019; Great-horned owl, Bubo virgianus, by Kevin Milazzo, Feb 2021

Narrow tweezer-like beaks, used by gnatcatchers, warblers, and wrens, stab or seize small insects from branches.  Wider and flatter tweezer-shaped beaks on purple martins and flycatchers can snatch an insect in flight.  Long, slender beaks on hummingbirds are made for sucking nectar from the deep recesses of long, tubular flowers as well as catching tiny insects, such as fruit flies.  Sharply pointed, hooked beaks are used by eagles, owls, hawks and shrikes to stab prey and hold on while pulling the meat apart into mouthful-sized chunks.

Many beaks serve more than one feeding function, as species change their diet from one type of food to another as seasons change.  Tongues are an important addition to the mouth, manipulating food items for beaks to be more effective.  Different sizes and colors of beaks convey information to other individuals about a birds sex and maturity level.  This essential body part provides birds with many of the same capabilities as other animal species.  Come to the Jurica-Suchy Nature Museum, or a nature center near you, to learn more about the many adaptations of birds.

Great Horned Owls

The great-horned owl, Bubo virginianus, is native to much of the Americas, including most of North America and Central America and about half of South America.  It is the second heaviest owl in North America, right behind the snowy owl, Bubo scandiacus, weighing up to five-and-a-half pounds with a wingspan between three and five feet.

Great-horned owl, Bubo virginianus, by Andy Reago&Chrissy McClareen, Aug 2012
Range and distribution of Great-Horned Owl, Bubo virginianus by BirdLife International, 2014

Feathers cover the entire body, including their feet, and are varying shades of browns and grays.  Their backs and heads are mottled or barred in several patches.  This coloration, especially when coupled with mostly nocturnal activities, provides excellent camouflage.  Their ‘horns’ are actually feathers sticking upwards on either side of their heads.  These are called plumicorns, but their function is not well understood.  The feather structure of the wing allows owls to fly silently and includes a serrated leading edge to disrupt turbulence and softer feathers behind to help deaden sound.

Great horned owl plumicorns by Jean-pol Grandmont, Aug 2013
Great horned owl wing structure by Peter K. Burian, Aug 2015

The owl’s ears are covered by feathers, but are not symmetrical with one being higher on the side of the head than the other.  This arrangement provides the owl with the ability to triangulate sounds and precisely locate prey in the dark or when prey is hidden, such as when an animal is moving about under a layer of snow.  Their flattened face, shaped as a round disc, also helps to direct sound to their ears.  Like all owls, their eyes are fixed in the sockets, but the bird can swivel its head almost 180° to either side allowing it to see in all directions.

Great horned owl talons by Curtis Bouvier, May 2010

Great horned owls hunt from a perch, observing the area below them before diving swiftly and silently from far above.  Their diet consists of small mammals, birds, amphibians, and a variety of snakes.  Their talons are powerful and deadly, with a grip comparable to much larger birds such as golden eagles.  Most prey is killed by being pierced or crushed in the talons.  Owls may hunt and kill for more than their immediate needs and will cache their kills for future meals.

Great horned owls are not migratory.  When an owl is ready to mate, courtship occurs in late fall and pairs mate for life, establishing a territory together in which they will live their entire lives.  Most territorial defense is through hooting at a transgressor, but rare physical confrontations have been observed.  If an owl cannot establish its own territory, it will live in silence among the fringes of other territories.

Great-horned owl juveniles, Bubo virginianus, by Alan Vernon, Jun 2010
Great horned owl female & juvenile on nest by John Kees, Apr 2012

Males are responsible for picking a nest site, almost always taking over a nest constructed by another species.  Mated pairs breed once every two to three years, laying from one to six eggs.  Egg laying occurs between late February and early April.  The female alone incubates the eggs, never leaving the nest, while the male hunts and brings her food.  After about 33 days, the eggs hatch.  Young owls will start to fly after seven weeks, but take a full month or more to become proficient.

Great horned owl calling, Bubo virginianus, by Michael & Katie LaTour, Jan 2019 (at 0:02, 0:10)
Great-horned owl pair calling by Bushman, Dec 2013 (at 0:18, 0:41, 0:51, 1:22)

Owls are more often heard than seen.  Although the females are larger than males, females have a smaller voice box and thus a higher pitched hooting call ending with a slight rising note.  Juveniles can make hissing or screeching sounds and are often misidentified as barn owls, Tyto furcata.

You can learn more about these magnificent birds at the Jurica-Suchy Nature Museum.  Make a reservation to come see us by visiting our website at:  https://ben.edu/campus-links/jurica-suchy-nature-museum/  (click on Register to Visit the Museum).

Bearing Up In Winter

American black bears, Ursus americanus, live in several habitats in North America including forests, beaches, and  alpine regions.  However, their diet, home range, and sleeping pattern are unique to each individual bear.  Winter behavior is determined by temperature and available food in their immediate area.

Black bear on the shoreline on Vancouver Island, BC by Miharing, Getty Images Signature
Black bear in first snow by KenCanning, Getty Images Signature

Bears are omnivores, eating a variety of plants, insects, fish, small animals, carrion, and human garbage.  In colder months, the lack of readily available food and falling temperatures drive bears into dens to hibernate until warmer temperatures return.  Typical den sites include hollow logs, under tree root masses, and rocky crevices or caves.  Black bears, especially in areas of the Smoky Mountains where extreme temperature drops do not occur, will make dens in tree cavities high off the ground.  Bears are not true hibernators and may be awake or even leave the den on days with warmer temperatures.

Black bear in rock crevice den by
Nastasic, Getty Images Signature
Black bear den under root mass by
Blazer76, Getty Images

Once they move into a den, bears can lower their body temperature by eight to twelve degrees and burn body fat to satisfy all of their energy requirements.  They do not eat, drink, urinate, or defecate while in the den, although they do wake occasionally to shift their resting position.   Bears remain in hibernation while cold temperatures persist.  In Alaska’s interior, this may be up to seven months, while in southern and coastal areas hibernation might last only two to three months.  In late summer and fall, bears eat 50 to 80 pounds of food and add three to six pounds of fat each day in preparation for winter.

Black bears are solitary animals, coming together only in summer to mate, a bi-annual activity for adult females.  Females are able to delay implantation of the fertilized eggs until after they are in the den for the winter.  Cubs are born after eight weeks, in mid-winter.  They weigh less than half-a-pound and are hairless and helpless.  An average litter of one to three cubs will nurse from their mother for three to six months and will be nearly five pounds each as they emerge from the den in late spring.  Cubs stay with mom for about 18 months, learning to fend for themselves, and will reach an average of 80 pounds by the end of their first year.

Black bear den with female and nursing cubs by National Park Service

Unless the bear is a pregnant female or the weather conditions are extreme, if there is food available, there is no need to hibernate.  Zoo bears historically do not hibernate.  However, many zoos are changing their practices by reducing meal sizes so their bears do enter hibernation for short periods.  Studies show that this leads to fewer problems with overweight bears, and allows pregnant females the quiet time needed for cubs to develop naturally.

Black bear cubs in spring in Glacier Bay National Park by National Park Service
Black bear female nursing cubs by Alan D Wilson, 2010

Scientists are studying several health issues important to both bears and humans.  Bears lose about 25% of their muscle mass during an extended hibernation, but emerge from the den with strong bones and good physical abilities.  As humans become less active due to aging or other circumstances, they lose almost 60% of muscle and bone mass in the same period.  Loss of bone mass, termed osteoporosis, accounts for over half of the bone fractures in adults over fifty years of age.  Studies on how bears conserve and reuse proteins during hibernation, and use fat for energy, may provide insights into helping people to maintain their strength and health as they age or become less active.

At the Jurica-Suchy Nature Museum, you can learn more about black bears, grizzly bears, and polar bears.

Butterflies

I recently visited The Butterfly Place in Westford, Massachusetts.  It was quite nice to walk through and learn about the various species and habits of these beautiful and lively insects.

Clockwise from upper left, all pictures by Don Arnold: Brown Clipper butterfly, Parthenos sylvia; Giant swallowtail butterfly, Papilio thoas; Julia butterfly, Dryas julia; Monarch butterfly, Danaus plexippus; Malachite butterfly, Siproeta stelenes

Butterflies come in a variety of colors and patterns providing camouflage to hide from potential predators, identifying an individual to potential mates, and/or allowing an insect to absorb heat needed for daily activities.  The colors we see can come from colored pigments that reflect light of a specific color or from structural pigments that take on different colors depending on the angle and intensity of reflected light.  Structural pigments produce blues, whites, and colors with a metallic sheen.  Genes control which pigments appear in each part of their wings to create the multitude of patterns.  Variations in just a few genes may determine that a pattern in one species is slightly different in size, shape, or color in another species, or completely different in a third species.

Blue morpho, Morpho peleides, with brown & white pattern vs same colors and slightly different pattern on Owl butterfly, Caligo eurilochus

Butterflies eat by sipping sweet nectar from a variety of flowers.  Their tongue, called a proboscis, forms a hollow straw that restricts them to a liquid diet.  When not eating, you can observe the proboscis curled up in front of their mouth.  When uncurled, it forms a long tube, able to reach deep into a flower to the base where nectar is stored.  Watch the video below as this monarch inserts its proboscis into the base of the lantana as it feeds.  Many butterflies enjoy juice from fruit, especially as it starts to decompose to a softer, more liquid-like stage.

Rice paper butterfly, Idea leuconoe, probing for nectar

Puddling is another feeding activity where butterflies take in liquid from puddles, wet gravel, sweat, and scat.  These are all sources for minerals and salts needed for egg development.  Females may find their own puddling sources, but males also engage in this activity, passing along a complex package of sperm, minerals, salt, and other nutrients to females during mating.

Clockwise from upper left, all pictures by Don Arnold: Piano key butterfly, Heliconius melpomene; Rice paper butterfly, Idea leuconoe; Sara butterfly, Heliconius sara; Scarlet swallowtail butterfly, Papilio rumanzovia; Zebra longwing butterfly, Heliconius Charitonia

Butterfly houses are interesting and fun places to observe many of these species and their behaviors up close.  We can provide for our native butterflies by learning which plants host caterpillars and which plants provide nectar for adults.  Select these plants for your garden, or place potted plants on an outside porch during warmer months.  You can provide additional habitat for butterflies and other small insects by mowing less frequently, limiting the use of pesticides in your yard, and leaving small brush piles in your garden.

Hummingbirds

It is getting to the end of summer, and many bird species that winter in Central and South America will soon be starting their migrations.  Of the 320 species of hummingbirds, 15 spend the summer breeding in North America, from the Gulf Coast states to southern Canada, before returning to winter habitat farther south.  Only one species, the Ruby-Throated Hummingbird, Archilochus colubris, breeds east of the Mississippi River. 

Hummingbirds have a very high metabolism with a normal heart rate of 250 beats per minute that accelerates to almost 1250 beats per minute when in flight.  They consume large amounts of nectar each day to get enough sugar to support their energy requirements.  Several small grooves running the length of their tongue funnel nectar into their throat by capillary action, a force that causes liquid to rise in a small tube without needing to use air to suck the liquid in.  They also eat any small invertebrate to fulfill protein, vitamin, and mineral needs.  Hummingbirds snatch insects mid-air while in flight, poach them from spider webs, and glean tiny moth caterpillars from new leaves and branch tips.  Another foraging method uses the blast of air beneath their powerful wings to roll over leaves on the forest floor, revealing the insect life below.

Anna’s hummingbird catching insects by Stan Lupo, Jul 2023

Hummingbirds do not bond with a mate.  Females establish a territory that optimizes the available nectar and offers multiple nest sites.  Males establish a territory based on encountering as many females as possible.  Both will defend their areas from other hummingbirds, as well as other nectar feeders including butterflies and bees.  Daily feeding starts on the outer edge of their territory to chase out any overnight interlopers and ends with nectar sources deep inside the area’s interior.  Males will breed with as many females as possible.  Females may have more than one brood of eggs each year, either concurrently or one brood following another.

Nests are about 2″ in diameter, built of small twigs, lined with soft plant material, and covered on the outside with greenish-gray lichens.  Nests are bound to branches with spider silk, usually in a forest clearing.  The lichens provide camouflage by making the nest appear as a large knot when seen from below.  Females reach breeding age at the end of their first year, and can breed throughout their lifetimes.  They construct one or more nests, each containing two white eggs, the size of peas, which are incubated by only the female for 14 to 16 days.  The male takes no part in raising the young birds, coming together with the female only during mating. 

Allen’s Hummingbird nest, by Mike’s Birds, Mar 2013
Ruby-throated hummingbird on nest with lichen, by Lorie Shaull, Jul 2020

Hummingbirds found in the western portions of North America travel overland migration routes.  However, midwestern and eastern birds fly non-stop over the Gulf Of Mexico.  A hummingbird can increase its fat reserves and double its body weight in the 7 to 10 days prior to the overseas trip.  Through studies using banded birds, we have learned that they fly alone, normally at night, along with large flocks of other birds.  Young birds, making the trip for the first time, can successfully navigate the migration route with no prior training.  Their guidance system, how it works, and how it is learned are all still a mystery.

No hummingbird species are listed as endangered.  However, hybridization among species is common, and their small size and great speed make them very difficult to count and track.  Little data is available about population size changes and movements; however, more birds have been found over-wintering as far north as the Gulf Coast states of North America.

At the Jurica-Suchy Nature Museum, we have numerous bird specimens on display, including hummingbirds.  We welcome you to come in and learn more about these amazing creatures.

Cicadas

Cicadas are found in habitats with deciduous trees on every continent except Antarctica.  There are about 3,000 species worldwide; and 170 make their home in North America, including several species divided into three groups with 13-year or 17-year life cycles, found exclusively in the eastern and central United States.  The map below shows where various groups are located. 

USDA Forest Service brood map of all periodical cicadas

Cicadas hatch from eggs laid in tree branches.  After dropping to the ground and burrowing into the soil, they spend the majority of their lives as a nymph living underground.  Using their rostrum, a long, sharp rigid structure that can penetrate the outer layer of tree branches and roots, they feed on the sugar and water flowing through the xylem tissue of the tree.  Species classified as annual cicadas actually live from one to nine years, some emerging each summer.  They are active for four to six weeks to mate, lay eggs, and then they die.

Look closely to see the rostrum sticking out in front of the nose

Magicicada after emerging from final molt by Karly Tuminello

Cicadas have wide set eyes, short antennae, and large, clear wings with membranes clearly visible.  The surfaces of their outer wings are covered by small, blunt, waxy spikes.  They are water repellant, keeping the insect dry.  These spikes can also break up and kill any potentially harmful bacteria landing on the surface.

Magicicada species showing short antennae & clear wings by Karly Tuminello

Beneath the wings are muscular structures called tymbals which can be flexed creating a sound like banging a drum.  The buzzing sound commonly associated with cicadas is a result of rapidly flexing these muscles.  Tymbals are found on both sexes, and are used to hear sound as well as produce sound.  Males often form large groupings to enhance their sound and attract more females to a single location. 

Magicicada waiting for wings to harden after molting by Karly Tuminella

Nymphs start to emerge when underground soil temperatures are above 64⁰F, usually in late May in the northern hemisphere.  Males emerge about two weeks before females.  After emerging, the nymph will find a suitable perch and molt to reveal a fully winged adult; then spend from one to six days waiting for their wings to harden.  Males fly up into nearby deciduous trees to find a suitable mating perch and begin calling to attract a female, which will join the male after her molt is complete.  After mating, the female lays about 600 eggs.  She cuts 25 to 30 small slits in branches and deposits about 20 eggs in each where they will remain for six to ten weeks before hatching.  Both sexes may mate several times with different partners, although most only mate once.

Cicada’s mouth parts are strong enough to pierce tree bark, but they do not bite or sting, although they may pierce human skin if handled roughly.  They do not pose any danger to humans and have not been known to carry any harmful disease.  They feed on sap, not foliage, so they pose no threat to mature trees.  Younger or smaller trees with only a few branches may be overwhelmed by the many slits made by a female laying a full brood of eggs.  Lots of slits may cause scarring that could kill smaller branches.

Empty cicada husks provide food for many species by Karly Tuminello

Cicadas and their empty husks do provide food for many predators including birds, fish, mammals, herps, and other insects.  The emergence of the periodical cicadas will provide a feast for their predators, whose populations will boom next year before being reduced by less available food over the following several years.  One theory for why there are periodical species concludes that cicadas emerging in mass numbers can overwhelm the predators need for food, allowing a great number of cicadas to breed and maintain their own high population.  Other theories also exist to explain this natural phenomenon, but whatever the reason, they are harmless insects with a very interesting life cycle for us to observe this year.

Extinct & Endangered – pt.3

An endangered species is one that is likely to become extinct in the near future, either worldwide or locally in a known range.  In some instances, these species may be saved through habitat conservation, breeding assistance, and education.  This final installment on Extinct & Endangered will take a look at three species in North America that have benefited greatly from such efforts.

The Gila Monster, Heloderma suspectum, is the only venomous lizard native to the United States and is listed as near threatened.  Their ranges are quite small, covering 700 to 3000 square feet.  They spend most of their lives in underground burrows, and they are only regularly outside for a couple of hours each day during their mating season, from March to May.  Gila monsters hunt small animals, and prey is eaten alive, head first.  Venom is delivered through their saliva as the prey is chewed and acts to slow the prey’s reactions.  While venom is not deadly to humans, it can cause swelling and severe pain. 

Gila Monster, Heloderma suspectum by Erin Donalson, Getty Images
Gila Monster, Heloderma suspectum by Shoemcfly, Getty Images

Gila monsters pose no direct threat to humans, usually living in remote areas, but still have a fearsome reputation that contributes to illegal hunting of the species.  They were the first venomous animal in the United States to get legal protection from being collected, killed, or sold.  As development threatens areas where the Gila monster is found, conservationists are moving populations to preserves where there is minimal interactions with humans.  Breeding numbers in the wild are still robust, although captive breeding efforts have been started in zoos across North America.  Education and preservation of appropriate habitat has so far kept this species off the endangered lists.

The black-footed ferret, Mustela nigripes, is listed as endangered, but increasing in population.  Their native range includes southern Canada and the northern United States, but habitat loss and disease have reduced populations to only a few hundred.  They are a playful member of the weasel family, using several vocalizations for communication including barks, chattering, and chuckling.  They are nocturnal and rarely seen in the daytime.  Prairie dogs, hunted in underground burrows at night, are their exclusive food source.

Black-footed ferret, Mustela nigripes, portrait by Delecrouix, Getty Images Pro
Black-footed ferret, Mustela nigripes, at prairie dog burrow by kahj19, Getty Images

The species was declared extinct in the late 1960s until a dozen individuals were found in Wyoming in the early 1980s.  Deliberate extermination of prairie dog colonies, because they are considered a nuisance species, has had a significant impact on black-footed ferret populations.  Habitat protection and captive breeding programs have been successful at boosting population numbers.  There are now about 300 black-footed ferrets living in Wyoming and other sites in the north central and southwestern United States where individuals have been released.  Habitat loss and disease are still constant threats, and scientists estimate that about 3,000 individuals will be required to save the species from extinction.

The California Condor, Gymnogyps californianus, the largest bird in North America, formerly nested in caves in high cliff faces along the southern California coast until real estate development claimed all of their habitat.  In the 1980s, as the last 34 birds were captured, the species was declared extinct in the wild. 

California Condor, Gymnogyps californianus, tagged, in flight by OldFulica, Getty Images

Condors are slow flyers, soaring in great circles, searching for carcasses of dead animals to eat.  They eat until they are full, and can go about two weeks between meals.  Juveniles may take several months to learn to fly and land gracefully, without crashing.  Condors reach reproductive maturity at four to six years of age, and can live over fifty years.  After mating, females lay only one egg, and mating may not take place every year.

California Condor, Gymnogyps californianus, Grand Canyon by Blewulis, Getty Images Pro

Even with slow reproduction rates, efforts to expand the population by hand-rearing and re-introduction to unaffected habitat have resulted in close to 450 birds back in the wild in California, Utah, Arizona, and the Baja.  Still listed as an endangered species, the California condor is making great progress in rebuilding its population.

California Condor, Gymnogyps californianus by DonArnold, Mar 2024
Introduction to Extinct & Endangered at Jurica-Suchy Nature Museum by DonArnold, Mar 2024

Extinct and endangered species can be found in every habitat and location worldwide.  Many are being helped by direct action with hand-rearing and habitat protection.  Indirect action through new laws, conservation support, and education has also had a positive effect.  Many of these species are on display at various nature museums including the Jurica-Suchy Nature Museum.  Plan a visit soon to learn more.

Bird Beaks

Birds have an amazing ability: flight.  They use their wings, equivalent to our hands and arms, to lift themselves into the air and keep themselves aloft.  But they still need to be able to do all of the things that mammals use their forelimbs for, and for that, birds have beaks, also called bills.

Female mallard, Anas platyrhycnchos, by Traci L. Smith Images
Mallard diving for food by Alexas_Fotos, Pixabay

A bill has an upper and lower jaw bone covered with toughened skin.  The edges of each bill may be serrated for cutting, grooved and etched for grasping, or smooth.  On some species, edges are soft, pliable, and loaded with nerve receptors that can detect what is moving through the bill.  This allows birds that siphon their food from murky water to detect food even when it is not visible.

Black skimmer, Rynchops niger, fishing by Nick Dale, Getty Images
Atlantic puffin, Fratercula arctica, by Stockomotion, Getty Images Signature

The bill’s skin sheath constantly exfoliates, or peels.  New skin constantly grows from underneath, drying and hardening to replace the old skin.  Excess layers of skin grow at the bill’s tip where most of the wear and tear takes place.  Skimmers, of the genus Rynchops, have bills that grow at twice the rate of other species.  They feed by trailing their lower bill in the water as the fly, wearing the skin down at a faster rate.  Other protuberances and colors may enhance the bill.  Atlantic puffins, Fratercula arctica, grow a bright orange, yellow, and black bill extension only during breeding season.

Bill shapes vary greatly among bird species and are used in a variety of ways for feeding……

Pelicans, genus Pelecanus, have hooked upper tips and a large pouch hanging under the lower jaw allowing them to scoop slippery fish out of the water and hold onto them. 

Pelican hooked tip & pouch by McCaig, Getty Images

The long-billed curlew, Numenius americanus, has a slim, curving bill that can reach deep into sand and mud for insects, clams, and small crustaceans. 

Curlew probing the beach by Dypics, Getty Images

The American oystercatcher, Haematopus palliatus, can pry open oysters and other bivalves. 

Ruby-throated hummingbirds, Archilochus colubris, have long, slim bills for probing deep flower nectaries to sip the nectar inside.

Ruby-throated hummingbird, Archilobus colubris, by Mattcudaphotos

Whippoorwills, of the family Caprimulgidae, have bills fringed with bristles to catch insects by swinging their bills left and right while in flight.

Eastern whippoorwill, Antrostomus vociferus, bill with fringe by Budgora, Jun 2022
Close-up of Eastern whippoorwill bill with fringe

Bills make great multi-use tools for many other daily activities.  These may include preening, building nests, digging, turning eggs over, defending oneself, attacking prey species, scratching, assistance when moving and climbing, and displaying color and shapes during courtship and breeding.  Other bill shapes are shown on the Jurica-Suchy Nature Museum’s ‘Bird Beak Adaptations’ slide below.  Come to the museum to learn more about these wonderful adaptations and other fascinating birds facts.

Puffins

Puffins are part of the Alcidae family of seabirds along with murres, guillemots, auklets, murrelets, and 25 recently extinct species.  All members of the family can fly and are excellent divers and swimmers.  Three species are found in the North Pacific Ocean including the tufted puffin, Fratercula cirrhata, horned puffin, Fratercula corniculata, and rhinoceros auklet, cerorhinca monocerata.  The Atlantic puffin, Fratercula arctica, is the only species found in the North Atlantic Ocean.

The rhinoceros auklet was thought to have been misidentified when it was first discovered and named. However, DNA testing has shown that all four puffin species have a common auklet ancestor.  Puffin species have short, stocky wings and tails, with darker gray-to-black plumage on top of their heads and backs and lighter whitish-to-brown plumage on their faces and underparts.  Their bills change color during breeding seasons to display several stripes of red, orange, yellow, and black.

Tufted puffin, Fratercula cirrhata, breeding coloration by MrDaz, Getty Images Signature

Short wings require the birds to beat them quite fast to fly, about 400 beats a minute, but they achieve speeds of 45 to 55 mph in flight.  Short wings are used as powerful flippers underwater along with feet used as rudders.  Puffins can dive to 200 feet or more catching a dozen or more small fish and invertebrates as they swim through the water.  A uniquely designed hinge on their bill allows the top and bottom bill to meet at several different angles so the bird can add more fish without losing its grip on any that are already caught.

Puffins spend winters at sea, far from land, floating on the surface or pursuing prey.  Breeding season occurs in late spring, and most adult birds come together, forming large colonies containing breeding and non-breeding individuals.  Non-breeding birds spend hours each day exhibiting a behavior called wheeling flight – flying figure eights over the cliffs where the colony is located.  After finding a mate, puffins form long-term pair bonds.  After breeding, pairs may split up when out at sea, but often return the next breeding season to find the same mate and nesting site.  Puffins breed in large colonies on coastal cliffs of offshore islands.  Only one egg is laid and both parents incubate the egg and feed the chick.  Chicks fledge at night, and juveniles spend the first five years out at sea before returning to the breeding colonies.

Horned puffin, Fratercula corniculata, nesting on Latrabjarg Cape, Vestfirdir, Iceland by Nikolay Tsuguliev, Getty Images
Atlantic puffin roost by Shankar S., May 2016

Puffins are not considered endangered, but are starting to encounter trends affecting the continuity of their successful breeding.  Warming waters in the oceans are reducing populations of fish that breed and live in cold water areas, that are the favorite prey of the auk family.  Threats on the mainland of Iceland, historically one of the largest breeding colonies, include being hunted by mink introduced in the 1930s, so most colonies are now located on offshore islands.  Hunting for feathers, eggs, and meat has been sustainable on island ranges for hundreds of years.   However, hunting on the American mainland during the late 1800s and early 1900s eradicated the population at one point.  In the last 50 years, about 50,000 birds have returned to protected areas in Maine.  Their biggest natural predator is the great black-backed gull which dive-bombs and picks off birds near shore during breeding periods.

Tufted puffin, Fratercula cirrhata, spreading its wings by TiannaChantal, Getty Images

Puffins have an average lifespan of over thirty years, spending most of their lives out at sea.  Reproduction rates are low with only one chick born each year to a pair of puffins, but a breeding pair may produce twenty chicks in their lifetimes and threats from natural predators are small.  Puffins are favorite species in many zoos and some aquariums.  Learn more by visiting a local institution or take a virtual tour from a live webcam at: https://explore.org/livecams/puffins/puffin-loafing-ledge-cam.

Carnivorous Plants

Plants and insects have myriad relationships to one another.  Some are mutually beneficial, as when plants offer nectar to feed insects which in turn pollinate the plants.  Other relationships only benefit the insects when they feed on leaves, stems, and roots.  For carnivorous plants, preying on insects to fulfill their need for nitrogen and other nutrients benefits only the plants.

Venus flytrap, Dionaea muscipula by Len Worthington, Aug, 2016

Pitcher plants are carnivorous, living in bogs and fens found in warm weather areas.  In North America, most species are found along the southeastern coastal states from Texas to West Virginia.  Bogs are depressions filled with rain or melted snow, while fens are similar but get their water from surface or groundwater.  Both types of wetlands are low in oxygen and nitrogen, very acidic, and often quite cold.  These characteristics slow down the rate of decay in the vegetation of the wetland, further reducing the availability of nitrogen which is a vital component of chlorophyll, the compound used by plants, along with water, carbon dioxide, and energy, to photosynthesize sugar for food. 

Carnivorous plants use several strategies to attract and trap insects.  Pitfall traps have slippery faced leaves forming a funnel with a pool of digestive enzymes waiting at the bottom.  Downward facing hairs on the leaves make it harder for insects to climb out.  Some plants use an opposite strategy and cover their leaf surfaces with a sticky secretion, trapping any insects that land on them.  Still others have a leaf-like structure made of two halves that snap together when an insect lands on an inner surface, trapping the insect inside.  In both of the last two instances, digestive enzymes are then released to cover, kill, and break down the insect body for absorption by the plant.

White-topped pitcher plant, Sarracenia leucophylla, traps separated from flowers by NC Orchid, Apr 2016
Two-spotted bumblebee, Bombus bimaculatus by Judy Gallagher, Jun 2022

Carnivorous plants are insect pollinated and must be able to attract pollinators without trapping them.  All of the plant species go through a dormant period as seasonal temperatures get cooler.  Traps die back and are regrown when warmer weather returns.  In several species, flowers bloom and attract pollinators with nectar, completing fertilization before traps develop.  Other plants separate the flowers and traps by a physical distance.  Traps usually lie close to ground level to attract crawling insects, and flowers are grown on top of tall stalks to attract flying insects.  A third method is to make the flowers less attractive to potential prey, and make the traps less attractive to potential pollinators.  This is achieved by using different colors, patterns, and scents on flowers and traps.

Metallic green sweat bee, Agapostemon sericeus by Dann Thombs, Aug 2008
Cobra lily, Darlingtonia californica by Charles Peterson, Mar 2018

Whether you are growing these unique plants at home or viewing them in a botanical garden or out in the wild, some of the plants and their pollinators to watch for include the white-topped pitcher plant, Sarracenia leucophylla  and the two-spotted bumblebee, Bombus bimaculatus; the cobra lily, Darlingtonia californica and the mining bee, Andrena nigrihirta, Tracy’s sundew, Drosera tracyi and the metallic green sweat bee, Agapostemon sericeus, and the Venus flytrap, Dionaea muscipula and any of the hoverfly species, Toxomerus sp.

Bog landscape by Chris Moody, Jun 2009

Bee An Early Pollinator

There are over 20,000 species of bees world-wide, and more species are found every year.  Bees are important pollinators, especially in early springtime.  Other pollinator species abound, and all are important to the life-cycle of flowers, but bees are thought to increase seed production by about 70%.

Dandelions on day 100 by Mike Deal, Apr 2010

The bees we see in our gardens are all adults, emerging from their nests between early spring and late summer.  The first to emerge are the bumblebees.  They have wingbeats of about 200 strokes per minute and a metabolic rate that is double that of a hummingbird, allowing them to generate plenty of body heat to stay warm during cool spring weather.  Orchard bees are the next out as soon as daily temperatures stay in the mid-50s.  Native honeybees may also come out at about this time, but imported bees cannot fly in temperatures less than 60˚F.  Early blooming flowers including dandelion, jewelweed, aster, goldenrod, and clover, are important sources for pollen and nectar in spring.

Honeybee covered in zucchini pollen by John Kimbler, Getty Images

As crop plants start to flower, including fruit trees and vegetables, a large pollinator workforce is needed.  Almost one-third of the food consumed by humans comes from plants requiring pollination.  As pollen is collected by bees, the grains are spread over the bee’s body, allowing some of those grains to rub off and pollinate subsequent plants as the bee follows a route visiting various flowers.  Adult bees feed mostly on nectar, eating very little of the pollen they collect.  Pollen is brought to the nest to feed their young.

Bumblebee in flight with loaded corbicula by mirceax, Getty Images

Honeybees and bumblebees have a bare spot on their back leg called a corbicula, surrounded by inward curving hairs.  As pollen is collected from each flower, it is scraped into this holding area, which may amount to 20% of their body weight while in flight.  After landing, a bee grips a flower tightly with its jaws and legs.  Snuggling close to the anthers, the bee vibrates and dances to disrupt the pollen inside and let it fall onto their bodies.  They proceed to groom all the pollen grains into the corbicula before moving onto the next blossom.  When the corbicula full, the bee will fly straight to the nest, unload all of the pollen, and return immediately to where they left off to collect more. 

Honeybee collecting pollen into scopa by baianliang, Getty Images Signature

Other bees store pollen in scopa, tufts of hair on their legs and abdomens.  As pollen covers the bee during its flower visits, the four front legs are used to scrape the pollen down past their abdomen where the two back legs pack it into the scopa.  Some bees may carry the pollen dry, and others may mix in a little nectar to form a dough-like substance that easily sticks to their body hair.

Brown honeybee heading into narrow opening by Gregory Johnston

Buzz pollination video @ This Vibrating Bumblebee Unlocks a Flower’s Hidden Treasure |  Deep Look

Pollen collection has resulted in the development of several adaptations found among many bee species.  Electrostatically charged body hair attracts pollen.  The charge is a result of air moving across the body while the bee is in flight.  When plants are small enough that only the bee’s head fits inside, hooked hairs on faces and under chins allow easy pollen collection.  Some plants keep pollen in anthers, long tubes that must be turned upside down and shaken to release the pollen.  Many bee species use buzz pollination, hanging onto the anthers to tip them, then vibrating their wing muscles to loosen the pollen, allowing it to fall on themselves.

Red head bee, Pachyprosopis eucyrta, licking up nectar by Jean&Fred Hort, Mar 2014

Nectar provides carbohydrates in the form of sugars and amino acids.  Bees use their tongues to lick it  or suck it up.  Several species have longer tongues for use on deep-necked flowers.  Honeybees collect nectar and bring it back to their hives to store it.  Over time, some of the water content evaporates, forming honey.  This is used as food over winter or at times when other food is scarce.  Some bumblebees have been shown to also collect and return nectar to the hive, but don’t create true honey.  This nectar is used as nourishment for the hive-bound queen only, not as a food source for the entire colony.

As we begin to see the many blossoms of spring and summer, remember that adult bees are only out in our gardens for a short period of their lives.  We can assist their work as pollinators by allowing early spring flowers to finish their blooms before cutting them down.   

Bumblebee on flower from skitterphoto, Pixabay
Bumblebee collected pollen by vinkirill, Getty Images

The Ocean Deep

Seventy percent of the Earth’s surface is under the ocean, and only a small portion is in shallow water along continental shelf areas.  The ocean is divided into five zones; the sunlight zone, above 650 feet; the twilight zone, extending to 3300 feet; the midnight zone, down to 13,000 feet; the abyssal zone, down to 21,300 feet; and the hadal zone, extending to the bottom of the ocean.  Below 3,000 feet, no light penetrates from the surface; the water temperatures are freezing; and oxygen levels are very low.  The pressure exerted on any surface at sea level is 14.7 pounds per square inch (psi), and humans can withstand three to four times this amount, or 45 psi to 60 psi.  At 3,000 feet deep, the pressure is 1,345 psi.

Ocean zone chart by DonArnold, 2023
Delta submersible by Robert Schwemmer, CINMS, NOAA, Oct 2010

Pressure keeps sea water from becoming solid ice, even when it is at freezing temperatures.  It also makes exploring the ocean difficult, requiring special submersible vehicles.  Everything moves more slowly under pressure, and a submersible can take an explorer deep into the ocean given enough time and oxygen.  Deep sea creatures can survive because the structure of their bodies is lean and contain no air spaces.  Let’s take a look at a few of the wondrous creatures that live in these habitats.

Humpback anglerfish by August Brauer in Public Domain

In the darkness of deep areas, many species find food and mates by touch.  Others may use bioluminescent communication – the ability to create light from a chemical reaction between luciferin and oxygen within an organism’s body.  Lights show up as spots of various colors on different parts of the body and may be used for attracting a mate, confusing a predator, or attracting prey.  Lanternfish have several spots located on their heads, undersides, and tails.  Female anglerfish and dragonfish have a shaft that protrudes from their head out in front of their mouths with a glowing tip attracting prey within striking distance.  Gulper eel use the lighted tip of their tail as a lure to attract a meal.

Tripod fish by NOAA Okeanos Explorer Program, Public domain, 2010
Fangtooth fish by Sandra Raredon-Smithsonian Institution, Public domain

Tripod fish have two pelvic fins and a tail fin that are elongated and can be filled with fluid to stiffen them, allowing the fish to stand on the ocean bottom while conserving energy.  Two long, wavy pectoral fins act as  arms to detect prey floating or swimming by and push the prey toward their mouths.  Fangtooth fish is another species that can detect vibration and nearby movement.  This species is only six inches in length, but have the largest teeth in proportion to their body size of any fish in the ocean.  The long lower fangs fit into pouches in the roof of their mouths so their teeth do not pierce their brain cavity.

Dragonfish teeth array by UC San Diego Jacobs School of Engineering, May 2019

The dragonfish, another small fish about six inches long, has a frightening array of teeth located on its jaws and tongue.  Their teeth are transparent and their bodies are black, making them impossible to see even in depths where there may be some light.  The jaws are loosely hinged, allowing the fish to open its mouth wider than normally hinged jaws would allow.  Prey swimming nearby may not notice the wide opening, nor be able to detect the transparent teeth, making the dragonfish a top predator of invertebrates, squid, and shrimp.  In addition, when biting, they inject a highly toxic poison to paralyze and kill their prey.  This toxin can be dangerous to humans getting bitten or attempting to eat this species.

Giant spider crab by Michael Coghlan, Jan 2014; Gulper eel by Claf Hong, Mar 2005; Lanternfish, Myctophum punctatum1 by Emma Kissling

Some fish practice diel vertical migration, a pattern of movement where a species feeds near the surface at night and moves back into deeper waters to rest during the day.  Lanternfish come up to feed on zooplankton and fangtooth fish feed on squid in shallow waters.  Some species, including anglerfish and gulper eels, have elastic-like skin for their mouths and stomachs.  Mouths can be opened extremely wide to swallow prey larger then themselves.  The food is contained in a similarly elastic stomach which shrinks slowly as digestion progresses.  Several different species of spider crabs roam the ocean depths scavenging for meat or plant material that falls to the bottom.

Deep-sea animals are seldom seen, but are not immune from climate change and human impacts.  Scientists continue to study changes in deep-sea food webs caused by overfishing, ocean acidification, and expanding low-oxygen zones.  Learn more about the habitat and species of these areas at the Jurica-Suchy Nature Museum at Benedictine University or your local nature museum or aquarium.

Nuthatches

In northern Illinois, it is still winter, and we have enjoyed watching various birds at our backyard feeders,  including nuthatches.  There are four species native to North America and about two dozen more found world-wide.  Taxonomists have moved several species back & forth between genera in recent years, making the exact number of species vary from time to time.  The name is from an English reference to the behavior of wedging a nut into a crevice and pecking at it until the inner portion is hatched and can be eaten.

White-breasted nuthatch, Sitta carolinensis by Mdf, Dec 2005; Pygmy nuthatch, Sitta pygmaea by Len Blumin, Mar 2006; Brown-headed nuthatch, Sitta pusilla by Anne Davis, Nov 2013; Red-breasted nuthatch, Sitta canadensis by Katie Herr, Dec 2013

Nuthatches have short tails and legs, compact wings, powerful bills, and strong claws.  Nuthatch species have similar markings including varying hues of grayish-blue wings, black caps, a white throat, and light colored white-buff-reddish bellies.  In most species, a dark eye-stripe and white cheeks frame each side of the face.  Males and females are hard to distinguish, although males may have darker hues on their bellies. 

White-breasted nuthatches, Sitta carolinensis, stand 5″ tall with a white face completely surrounding the eyes.  They range from southern Canada to Mexico.  Red-breasted nuthatches, Sitta canadensis, have a white face and neck and range from southern Canada to the central U.S.  Brown-headed nuthatches, Sitta pusilla, have a white belly and cheeks with a white spot at the nape of the neck.  They are found in the pine forests of the southeast U.S.  Pygmy nuthatches, Sitta pygmaea, characterized by a white spot under their eyes, are found west of the Rocky Mountains from British Columbia to central Mexico.

White-breasted nuthatch, Sitta carolinensis, heading down by Sarunas Burdulis, Feb 2021
Click > below to listen to the song recorded by Aidan Place, May 2020

Nuthatches are the only birds that can walk head first down a tree trunk, allowing them to forage up or down a tree trunk, seeing insects in crevices missed going the other way.  They are comfortable eating while hanging upside down, as are woodpeckers; however, the nuthatch does not use its tail for support relying solely on the strength of its feet.  They eat insects and invertebrates when available, but will readily feed on seeds, peanut butter, and suet in colder periods.  Food items are often cached in crevices in trees and then covered by lichen or bits of bark.

Brown-headed nuthatch, Sitta pusilla by Shawn Taylor, Mar 2020
Click > below to listen to the song recorded by PT Xiao, May 2022

Nuthatches prefer open woodlands near sea level in temperate climates.  In warmer southern regions, they live at slightly higher elevations.  They use abandoned woodpecker holes or natural cavities in trees for nesting.  Inside, they build a small cup from twigs, lined with soft material for their eggs.  Entrances may be protected in a variety of ways.  Red-breasted nuthatches collect pine resin to line the rim of the nest hole and avoid it themselves by diving straight into the hole.  White-breasted nuthatches often crush blister beetles and rub the remains around the rim, using the foul smell to deter potential predators.

Red-breasted nuthatch, Sitta canadensis by Walter Siegmund, Jul 2008
Click > below to listen to the song recorded by Matthew L. Brady, Jan 2023

Nuthatches are one of only a few animals that use tools.  A small piece of bark is often used by red-breasted nuthatches to apply resin to the nest entrance.  Bark splinters are also used by brown-headed nuthatches to pry up bark on tree trunks and extract the insects underneath.  If the tool performs well, the bird will carry it from place to place.  Pygmy nuthatches live in large, extended family groups with other relatives often helping to care for younger birds.  They nest in large family groups, huddling together for warmth on cold nights.  Red-breasted nuthatch irruptions are common in the central U.S. when the weather turns harsh in Canadian boreal forests, making it difficult to find enough food.

Pygmy nuthatch, Sitta pygmaea by Becky Matsubara, Aug 2019
Click > below to listen to the song recorded by Ron Overholtz, Jan 2019

Nuthatches are a favorite species at backyard bird feeders.  They will turn up daily for seeds, nuts, peanut butter, and suet, and are entertaining as they flit in and out, taking food items away to cache in nearby trees or other crevices.

Listen to additional calls and songs for each species at the following sites:  White-breasted nuthatch: https://xeno-canto.org/species/Sitta-carolinensis Red-breasted nuthatch: https://xeno-canto.org/species/Sitta-canadensis Brown-headed nuthatch: https://xeno-canto.org/species/Sitta-pusilla Pygmy nuthatch: https://xeno-canto.org/species/Sitta-pygmaea

Aquatic Insects

Rivers and streams meander, fall, swirl, pool and flow through landscapes based on how their channel has been shaped and filled.  Moving water, referred to as a current, goes in different directions and speeds as it flows.  Currents are slower on the water’s surface, sides, and bottom due to friction with air, soil and rock.  The fastest current is just below the surface where nothing impedes its progress, and the slowest is where the water pushes in all directions due to obstacles in its path.

Woodland stream by John Holmes, Getty Images

Aquatic insects living in these turbulent waters employ a variety of methods to anchor themselves in place to breathe and eat.  Most aquatic insect species are in their larval stage and will leave their aquatic environment when they become adults.  Some are benthic species living attached to the bottom; some are swimmers commonly found in slower moving water; some live in the swift-moving current.

Water Penny by Cliff White; Stonefly larva by Jim Rathert, Riffle beetle by Cliff White, all images courtesy of Missouri Department of Conservation

Most insects must be able to securely anchor themselves to breathe and eat.  The water penny, a flow-adapted insect, uses its whole body, a flattened oval disc, to adhere itself to a rock using suction.  With its smooth back and with no protrusions, water easily flows over and around this species.  Where the current flows around rocks on the bottom, an area of quiet water forms just behind each rock.  The caddisfly builds a case around itself from rocks, sticks, and mud and remains in this quieter area.  Stoneflies and riffle beetles use sharp hooks at the ends of their legs to hang onto the bottom substrate even while walking about in the flowing water.  Where water pools and currents slow after a sandbar, mayflies, crane flies, and midges live in burrows in the silty bottom.

Pseudiron mayfly by Dave Ostendorf, courtesy Missouri Department of Conservation
Mosquito larva courtesy Missouri Department of Conservation
Damselfly nymph by Cliff White, courtesy Missouri Department of Conservation

For animals with lungs, muscles expand the lungs pulling in air where oxygen can be absorbed into the blood stream and transported to cells in the body.  Insects do not have lungs but use air tubes attached to spiracles, openings on the outside of their bodies that can be opened or closed.  A fine network of air tubes allow oxygen to be absorbed directly by each cell.  Damselfly, mayfly, and stonefly use gills to extract oxygen from flowing water and pump it into their air tubes.  Mosquitos and water scorpions use snorkeling, where a breathing tube connected to a spiracle breaks the water’s surface.  Water beetle adults trap a bubble of air under their wing covers when they dive.  It is held in place by hairs on their bodies and covers the spiracles located along the sides of the abdomen.

Caddisfly larva with pebble case by Jim Rathert, courtesy Missouri Department of Conservation
Caddisfly larva with plant fiber case by Jim Rathert, courtesy Missouri Department of Conservation

In addition to oxygen, water currents bring a steady supply of food downriver and carry away waste.  In forested streams, vegetation and decaying animals falling into the water provide a variety of food.  Midges are able to collect tiny particles of plants and animals found in slow-moving water.  Some species of stonefly and caddisfly are shredders, feeding on vegetation moving past them by chewing it into small bits.  Filter feeders, including black fly and riffle beetles, use nets and fans to trap particles from faster-moving currents.

Midge fly larva by Cliff White, courtesy Missouri Department of Conservation
Crane fly larva by Jim Rathert, courtesy Missouri Department of Conservation

In areas exposed to lots of sunlight, algae and aquatic insects are the main food sources.  Mayfly, caddisfly, and water pennys scrape  algae from rocky surfaces.  Other species of stonefly and riffle beetles are predators and use their hooked feet to position themselves in steady currents where they are able to snag other species being swept along.  Another predator, the alderfly, burrows its bottom into the streambed to catch prey swimming nearby.  Damselfly larva may anchor themselves to the bottom or fill a bladder at their rear end with water and expel it with enough force to propel themselves through the current to snag prey.

Alderfly larva courtesy Missouri Department of Conservation

Whether the current is fast or slow, flowing through clear areas or obstacles, streams provide insects with numerous places to live.  On you next walk along a waterway, consider all that is happening just below the surface.

Sei Whale

The sei (SAY) whale, Balaenoptera borealis, is the third largest rorqual, a group of large baleen whales that feed by straining food from the water.  They live 50 to 70 years and grow up to 60 feet in length, weighing 100,000 pounds.  They have bluish-gray backs, creamy bellies, a tall, hooked dorsal fin, and a large mouth with 200-400 baleen plates made of keratin.  Their skin is often marked with a series of curvy healed scars made by “cookie-cutter” sharks which attach themselves to large species with suction-cup lips hiding sharp teeth that cut out a section of flesh about two inches in diameter to eat.

Cetaceans of the Channel Islands National Marine Sanctuary, Sei Whale, Internet Archives-NOAA, 1987

There are two types of whales, toothed whales and baleen whales which are considerably larger, but have no teeth.  Toothed whales and other cetaceans including dolphins and porpoises, have one blowhole leading to the left nasal passage.  Baleen whales have both nasal passages open as two blowholes to accommodate their huge size, allowing a much greater air exchange when surfacing.  In all cetaceans, muscles are contracted to open a nasal plug in the blowhole allowing them to breathe.  When underwater, the muscles are relaxed, blocking the blowhole and preventing the animal from breathing in water.  Air sacs immediately below the blowholes allow for creation of long, loud, low-frequency calls within the hearing range of humans.  Most calls last less than one second and sound levels are equivalent to standing next to a jack hammer, carrying long distances underwater.

Sei whales are found in temperate oceans around the world, but not in polar or tropical waters.  The southern sub-species population is slightly larger than the northern one, and there is no evidence of interbreeding.  Current population estimates place a total of 80,000 individuals world-wide, but sei whales prefer deep ocean waters and rarely come near land making placement of tracking devices and accurate estimates difficult.  Tagging has been moderately successful, with many lost signals.  It is known that they migrate annually, following the available prey and using prevailing currents to move quickly, but exact migration routes and breeding areas are not yet known.

Sei whale feeding by Allison Henry, NOAA
Calanoid Copepod by Proyecto Agua

Sei whales generally travel alone or in small groups of up to six individuals.  They are one of the fastest swimmers of all ocean species, attaining speeds up to 35mph for short distances.  When feeding, they swim on their sides near the surface with one side of their huge mouths open taking in large amounts of water and straining out prey.  Their favorite food is copepods, a tiny planktonic crustacean, but they will also consume krill, squid, and small schooling fish such as anchovies, sardines, and mackerel.  They may make shallow dives to pursue schools of fish, quietly sinking below the surface; they can stay underwater for five to twenty minutes.  Each whale consumes about 1,000 pounds of food daily.

Sei whale mother & calf, by Christin Khan, NOAA, Jun 2014

Sei whales reach sexual maturity between six and twelve years old, and a young adult is about 45 feet in length.  Females are slightly larger than males.  Gestation is 11 to 13 months, and each female mates once every two to three years.  One calf is born in winter.  A newborn is about fifteen feet in length and weighs 1500 pounds at birth.  Calves remain with their mother for six to nine months before being weaned off its mother’s milk.  Males are polygynous where one male has mating rights with several females.

Sei whales were overhunted in the mid-1960s for meat and oil after blue whale and fin whale populations were decimated in earlier years.  They were added to the IUCN Red List as endangered in 1970.  Their only natural predator is a pack of orcas.  Massive die-offs have been recorded in the last fifty years, and evidence suggests the cause is red tides, a harmful algal bloom that severely depletes oxygen levels in large areas and may last for several weeks or months.

Red tide from NOAA, Jun 2009

Other threats include entanglement in fishing gear, leading to whales dragging the gear for long distances, ultimately tiring them to a point where feeding and breeding are impossible.  Climate change affecting ocean water temperatures and currents is altering prey distribution and availability resulting in less successful foraging.  Opening more shipping lanes in polar regions along the edges of sei whale territory, another result of climate change, contributes to more vessel strikes.  Shipping also increases ocean noise, making long-range communications for all species more difficult; however, the impacts from this on the sei whale population is not well understood.

The sei whale remains a species with more mystery than knowledge.  You can learn more about cetaceans in general from your local natural history museum or come to the Jurica-Suchy Nature Museum at Benedictine University to see a full skeleton of a sei whale on display. 

Flamingos

The greater flamingo, Phoenicopterus roseus, with its long neck and legs, hooked downward bill, and bright pink plumage can be found on five of the seven continents, not including Australia or Antarctica.  Only one of the six species is native to the continental U.S., the American greater flamingo, Phoenicopterus ruber, and its native range encompasses only the far southern portions of Florida.  Three additional species are found in the Caribbean and northeastern and southwestern portions of South America, plus two species are native to coastal areas of Europe, Africa , and Asia.

Flamingos on Lake Nakuru, by PhilWilks, Getty Images Pro

Flamingos are found in all types of shallow water habitats.  They forage in both saltwater lakes and coastal lagoons, in addition to freshwater wetlands, ponds, and mudflats.  They are able to eat prey found in very alkaline waters that most other avian species cannot tolerate.  Feral birds, ones that have escaped captivity and are now breeding in the wild, from the other three species found in North and South America have formed several colonies along the southeastern coast of the U.S.

The name flamingo comes from a Spanish word meaning flame, bright and red in color.  Immature birds are gray or brown.  They absorb carotene, a reddish-yellow pigment, from their food, which slowly changes their plumage to light pink, deepening to darker shades including reds and oranges.  It takes about three years until a bird attains the bright pink adult plumage everywhere except their flight feathers which are jet black and can be seen only when their wings are extended.

Greater Flamingo chick in water by JHVEPhoto, Getty Images

Flamingos have the longest neck and legs of any native bird in the U.S.  Wingspans on full-grown adults may reach five feet.  Flying in a V-formation, flocks move quickly, with necks extended, taking short, strong wingbeats.  Flamingos call is a strong honking, sometimes hard to distinguish from geese, to maintain the group’s cohesion in flight.  Webbed feet provide stability on soft sand, mudflats, and in shallow waters along lake bottoms.  Flamingos are excellent swimmers, and they use their webbed feet to stabilize their bodies in the water when reaching downward for food growing in deeper lakes and ponds. 

Flying flamingo by USO, Getty Images
Flamingo head, by XavierMarchant, Getty Images

A flamingo’s bill is sharply angled downward in the middle.  On most birds, the upper bill is part of the bones of the head, heavier and immovable.  On flamingos, this is reversed and the upper bill can be used as a flap against a heavy lower bill.  When feeding, the bird lowers its head, turning the bill upside down, sweeping it from side to side through the water.  A central groove in the lower bill contains space for a fat tongue, used to push and pull higher volumes of water through the bill.  The edges of the bill are lined with rows of horny plates called lamellae that strain out crustaceans, mollusks, and small insects.  Flamingos are typically night feeders, resting during the day.

Flamingos roost in single species colonies.  They will only breed if they are part of a large group, and breeding occurs for all at the same time.  Nest mounds are volcano-shaped, arranged close by one another on a mudflat.  Each breeding pair of birds lays only one egg on top of its mound.  Parents take turns incubating the egg while the other is foraging.  Chicks stay with the parents for four to six weeks after hatching, until they are able to feed themselves.  Still unable to forage and in need of protection, all of the chicks in larger colonies may form one group called a creche.  The group can be guarded by only a few adults, giving the rest of the colony the opportunity to forage for themselves and bring back food for the creche.

Nesting Rose Flamingo with egg in nest, by Artush, Getty Images
Chick and mother, by tane-mahuta, Getty Images

Toward the end of the 1800s, feather collecting for the millinery markets adversely impacted many bird populations.  However, this did not include flamingos because their feathers quickly lose the pink color once they are removed from the bird.  Today, flamingo populations around the world are shrinking due to habitat loss.  Much of their native habitat is wetland coastal areas being developed.  In addition, flamingos do not have the capacity to switch diets, and as more wetlands are drained or polluted, food sources are continually disappearing.

Look for these magnificent birds at your local zoo, or consider a trip to see them in many of the nature areas in southern Florida.

Duck Potato Salad

Walking around a freshwater marsh, we can observe dozens of plants and animals.  Daily sunlight provides hours of energy, but it is only usable by the plants, which create their own food in a process called photosynthesis.  Plants may be fully submerged, floating, or living above the water’s surface, but all are vital components of the food supply.

Marsh panorama by Beyond_Invisible, Getty Images

Just as animals breathe, plants also need to exchange gases, taking in carbon dioxide and releasing oxygen.  Plants living in a marsh, where they are fully or partially saturated with water, have developed several strategies for the gas exchange process.  Spongy tissue is a universal adaptation of marsh plants.  Both stems and leaves contain large airspaces surrounding food producing cells which are well distributed throughout the plant.  Airspaces also keep the plants lightweight and enable stems, leaves and flowers to float on or reach above the water’s surface. 

Green algae by Bobby McKay, Oct 2013

Floating wisps of green algae are primitive plants that have been on earth for over two billion years and are the basic food source for all life in the marsh.  Millions of microscopic animals, crustaceans, insects, and small fish depend directly on green algae for their food.  Green algae lack stems, leaves and flowers, but grow as long chains of nearly identical cells.  Some algae are microscopic, some can be easily observed as green strands on or below the water’s surface and some grow to several hundred feet in length.

Duckweed by Carolyn Jewel, Mar 2009
Duckweed forest pond by Sunsju, Aug 2019

Duckweeds refer to a group of tiny, flowering plants that float on the surface of wetland areas.  They  reproduce by dividing their cells.  This is a rapid process taking from 16 to 48 hours.  In optimal growing conditions, with plenty of sunlight and nutrients available, the surface area of a pond can be covered in a very short period of time.  Several species of pond plants grow long, narrow leaves with soft, nourishing cells providing a easy-to-eat and tasty treat for marsh dwellers.  With large airspaces, these plants are able to stay afloat no matter how long they grow.

Spatterdock by Kirill Ignatyev, Jul 2011

Plants with floating leaves, such as spatterdock, must have a method for preventing excess water from entering leaves and stems when they exchange gases.  Plants have stomata, openings in the leaf where gases are exchanged.  In terrestrial plants, stomata are located on the undersides of leaves to prevent rain from entering the opening.  Floating leaves have stomata on the upper side of the leaf, providing far less exposure to water.

Water marigold by Gennady Alexandrov, May 2014

Water marigold has two types of leaves, one that grows on the stem above the water’s surface and another that grows on the submerged stems.  Leaves growing in air take in carbon dioxide and release oxygen through their stomata.  Submerged leaves have very thin cell walls and exchange the same gases directly with the water surrounding them.

Arrowhead by Ed Ogle, Aug 2016
Arrowhead with bulb, -duck potato’, lower right, by Andriy Nekrasov, Getty Images

Arrowhead is firmly anchored in the bottom of ponds, and has stems, leaves, and flowers growing above the surface.  It reproduces by both seeds grown from pollinated flowers and bulbs grown on submerged stems.  Bulbs remain submerged, attached to the stem and grow until they are mature enough to anchor themselves in the bottom silt and start another plant.  While growing, the bulbs are very tasty and are a favorite food of many duck species, earning the nickname duck potatoes.

Wild celery, Vallisneria americana, by Schizoform, Jun 2022

Wild celery produces both male and female flowers.  Female flowers are attached to long stems that float on the water’s surface.  Male flowers break off underwater and float to the surface unattached, where they are blown around until they meet a female flower, transferring pollen by contact.  The pollinated flower coils downward back under the surface where the seeds develop and are released into the water to start a new plant wherever they land on the silt bottom.

Marsh plants come in many forms and each is well adapted to the unique conditions of the habitat in which they live.

Forest Litter, Hand Lens Views

This week we take a look at one other group of species found in the forest litter, those that we can best observe using a hand lens.  Springtails are tiny insects colored gray, brown, and white.  They are wingless with a worm-like body, and are named for a unique abdominal structure that allows them to suddenly jump.  They are extremely numerous, ranging from 500 to 50,000 individuals per square meter.  Springtails may form dense groups that come out in winter on top of new fallen snow earning them the nickname “snow fleas.”  They are an important species of decomposer feeding on fungi, decaying vegetation, and live vegetation.

Springtail, genus Isotoma, by Ryszard, Aug 2009
Springtails, aka Snow Fleas, by mwms1916, Mar 2015

Soil mites are members of the arachnid family, the same as spiders.  When viewed up close, they may look like tiny spiders having four pairs of legs, and a rounded, glossy abdomen in a variety of dark earth tones.  Soil mites are decomposers, as well as predators.  They feed mostly on decaying vegetation, but also eat springtails, round worms, and fungi.

Red velvet soil mite, Trombidium sp, by Alexey Nikodimov, Apr 2018

Pseudoscorpions, also called false scorpions, look like real scorpions without the dagger-like abdomen.  They carry no poison, but have two large claw-like appendages in front.  They are predators of springtails, soil mites, and certain worm species.  Pseudoscorpions have no eyes or ears, living in the dark soil just below the leaf litter.  Almost as numerous as springtails and soil mites, they depend on scent and vibration to locate their prey.

Pseudoscorpion by Philippe Garcelon, Mar 2021
Pseudoscorpion by Philippe Garcelon, Oct 2018

Other animal species that can be observed with either your eyes or a hand lends include ants and beetles.  These two groups are quite diverse and can be found in all habitats and soil types.

Bark beetle, by Katja Schultz, Jul 2017
Eastern Bess beetle larva, by Katja Schultz, Jul 2014
Ground beetles by Bernard DuPont, Feb 2006

Beetles make up the largest order of insects with over 300,000 known species.  They can be found under decaying logs, under loose bark, and in the leaf litter.  They are especially attracted to light sources at night.  The larval stage of a beetle is called a grub, often found in shallow soil layers both on the forest floor as well as in our own backyards.  Beetles feed on decaying vegetation, live roots, and other plant parts.  They are a major food source for a variety of birds, mammals, arachnids, and other predatory insects.

Ants in bark by Michael Jefferies, Mar 2010

Ants are another insect group, forming vast colonies organized into social castes.  There is a single queen in each colony plus thousands of workers and soldiers.  Each individual has an appointed job serving the colony.  Ants provide several ecological functions in any habitat: predators, scavengers, pollinators, recyclers, and soil aerators.  Ant species are split into four groups identified as carpenter ants, little black ants, red ants and fire ants.

Hidden Hollow by DonArnold, Nov 2016

Forests are stopping grounds for many migrating species of birds, mammals, and insects.  Forest litter is an excellent layer of insulation, and many of the species we have reviewed are active throughout the year, providing food for migrators and ecological services to the other year-round inhabitants.  I encourage you to get out and observe this exciting habitat as you hike the forest paths this autumn.