Eastern woodrat

Last updated

Contents

Eastern woodrat
Neotoma floridana smalli close.jpg
An individual of the Neotoma floridana smalli subspecies
Scientific classification OOjs UI icon edit-ltr.svg
Domain: Eukaryota
Kingdom: Animalia
Phylum: Chordata
Class: Mammalia
Order: Rodentia
Family: Cricetidae
Subfamily: Neotominae
Genus: Neotoma
Species:
N. floridana
Binomial name
Neotoma floridana
(Ord, 1818)
Subspecies
click to expand
  • N. f. attwateri Mearns, 1897
  • N. f. baileyi Merriam, 1894
  • N. f. campestris J. A. Allen, 1894
  • N. f. haematoreia A. H. Howell, 1934
  • N. f. illinoensis A. H. Howell, 1910
  • N. f. osagensis Blair, 1939
  • N. f. rubida Bangs, 1898
  • N. f. smalli Sherman, 1955

The eastern woodrat (Neotoma floridana), also known as the Florida woodrat or bush rat, is a pack rat native to the central and Eastern United States. It constructs large dens that may serve as nests for many generations and stores food in outlying caches for the winter. While widespread and not uncommon, it has declined or disappeared in several areas.

Taxonomy

Eight subspecies of the eastern woodrat are currently recognized: N. f. illinoensis, N. f. floridana (the nominate), N. f. smalli, N. f. baileyi, N. f. pennsylvanica, N. f. attwateri, N. f. osagensis, and N. f. rubida. Of these, the Key Largo woodrat (N. f. smalli) is classified as endangered by the IUCN. [2] [3] The Allegheny woodrat (Neotoma magister) was previously considered a subspecies but was elevated to species status based on comparative mitochondrial DNA analyses. [4] Subspecies are thought to be descended from one species living along the Appalachian Plateau, which subsequently spread out through the Coastal Plain.[ citation needed ]

Description

The eastern woodrat is a rodent of medium size, with an average length of 21.2 centimetres (8.3 in) and weight of 245 grams (0.540 lb), [3] but grows up to 17 inches (43 cm) long. [5] The body is short and stocky and the tail is exceptionally long (15–20 centimetres (5.9–7.9 in)). It is covered in a soft, gray-brown pelage, which is darker dorsally. Belly and feet are white. Sexes are alike, but males tend to be slightly larger. [2]

Distribution and habitat

Distribution

The distribution for the eastern woodrat stretches across the Southeastern and Midwestern United States. They are located as far south as the Tennessee River and Central Florida. The more central areas they are found are Kentucky and Tennessee. Northern locations include Kansas, central Missouri, and southern Illinois. [6] They can also be found along the Appalachian Mountains that range all the way to New York. [2] They're also in some western locations and Piedmont areas of Maryland. [7] They can be seen in places like woodlands, [8] prairies, mountains, swamps, [9] and lowland hardwood forests as far west as Colorado. The more disjunctive population occurrence is in Nebraska and Key Largo, Florida. [6] Woodrats are usually found in marshes, coastal plains, and grasslands. [2] The eastern woodrat's habitat ranges latitudinally from central Florida to southeastern New York, and longitudinally from Connecticut to eastern Colorado. [2] Reintroduction to north-eastern states, such as Illinois, have occurred in the 2010s. [10]

With a wide range but low population density, this species is considered uncommon. The overall population has been decreasing since 1982. The primary cause for this decline in the southeastern United States has been habitat destruction due to human development of the coastal plains. [11]

The species has been recovered as a fossil from late Pleistocene deposits in southeastern New Mexico, several hundred miles southwest of its nearest current range. [12]

The species does not hibernate, even in the northern extremes of its range. [13]

Habitat

The species inhabits wooded areas, swamps and hedges, with a variety of different habitat preferences reported for the recognized geographic subspecies. [1] Nests can be located in and around rocky bluffs, upland woods, swamps and hammocks, dry scrub pine, grasslands, abandoned buildings, marshes, and refuse piles. [8] In Texas they are mostly found around brush piles, in Kansas they are often found around hilltop limestone, the base of trees, standing hollow trees, and under root tangles along gullies. They are recently found in Florida around willow trees. The eastern woodrat likes the ability to cover and get away from predators quickly. [6]

The nest can be constructed from a variety of different materials, such as sticks and branches, rocks, dry dung, tin cans, glass shards, and lined with dry grass, crushed bark, bird feathers, and even rotting wood, acorn fragments, and loose soil. [9] These items are either picked up in the mouth or dragged, depending on the size of the item. [6]

Even though there is only one visible entrance, woodrat nests have multiple escape routes. Each 'house' contains up to 2 nests, but usually only one woodrat will be found in each home. Houses can be up to 4 metres (13 ft) in length, 2 metres (6.6 ft) in width, and more than 1 metre (3.3 ft) in height. The shape depends on the location and may be pyramidal, conical, or domed (if sufficient structural support is present). Nests may be found up to 8 metres (26 ft) above ground in trees or vines, but normally are located at ground level. [6] [2] Houses are efficient shelters from temperature fluctuations and rain. [2]

Individuals are known to stay in one location for their entire lives, with multiple generations inhabiting the same nest. Unoccupied nests are frequently taken over by other animals, including rabbits, mice, snakes, amphibians, and various invertebrates. [1] [14]

Eastern woodrats are typically solitary creatures, so they usually have a buffer between territories. The females have a smaller territory than males, averaging around 0.17 hectares (0.42 acres). Males average around 0.26 hectares (0.64 acres) and the species-wide average territory area is 662 square metres (7,130 sq ft). Being solitary, the rats tend not to stray much farther than 21 metres (69 ft) from their nests unless sexually active or for a preferred food. [11]

Ecology

Foraging

As with most members of the genus, the Eastern Woodrat feeds opportunistically on nuts, seeds, fungi, buds, stems, roots, foliage, and fruits. [1] [15] While the eastern woodrat's nest is typically found on the ground, it is a capable climber and may forage above ground. [2] Eastern Woodrats eat about 5% of their body weight in dry mass each day. During the summer months, most feeding is done while foraging. Only small amounts of food are taken back to the den for daytime feeding. [2] Woodrats do not change significantly in weight from autumn to spring. Weight of individual woodrats is not correlated to the kilocalories in their caches. [16]

Eastern woodrats are known for their foraging and caching habits. When searching for food is dangerous or unproductive, animals often use food stores to supply all or part of their diet. This is a feasible strategy to avoid food shortage. It is the habit of collecting and storing both food and nonfood items that has earned the eastern woodrat is other common name of "pack-rat" or "trade rat". [17] Starting in September, the woodrat will start to forage and store food in its midden for use and survival in the winter. [18] Although caches do not serve as the sole source of winter food, caches examined yielded as much as 1 imperial bushel (36 L) of plant material. [17]

Woodrats have great adaptability in their feeding habits. They feed on almost any kind of plant material including leaves, roots and tubers, wood, bark, stems, and seeds. [7] Although the Eastern Woodrats eat mostly green vegetation, they also eat various types of fruits, nuts, fungi, ferns, and seeds. [18] Food preferences vary between individuals, populations and geographic areas. [16] In Texas, pecan nuts are a major food source; in Tennessee, mint and beechnuts were found to be the most cached item; in Pennsylvania, mushrooms were one of the top food items. Acorns are a major food source for all woodrat populations, as oak trees are found throughout its range and acorns can be stored for a long time. [2] Energy and perishability influence the woodrat's diet and caching. The value of food when consumed should equal or exceed the cost of gathering and storage. Food is chosen by dryness and degree of microbial infection. Woodrats tend to eat perishable food and cache less perishable foods, thus reducing the risk of loss to spoilage. [19]

Decomposition of food stores appears to be a constant challenge. Woodrats seem to exhibit physiological adaptions that allow them to consume food inhabited by fungi. Fungi can increase nutritional value of some foods by making nutrients within food more accessible by breaking down complex carbohydrates, which woodrats may exploit. [20]

Although eastern woodrats are herbivores, evidence suggests that the species will take meat if given the opportunity. Snakes, salamanders, mice, and quail have all been found in stomachs of Woodrats. [21] Gnawed bones have been found in caches, probably used for sharpening teeth and for their mineral contents. Only anecdotal evidence exists concerning woodrat carnivory. However, woodrats will cache carrion if given the chance. [21]

Drinking water is typically not needed. Woodrats get the water they need from dew, water-containing plants such as succulents, and fruit, and can survive droughts with these water sources alone. [2]

Reproduction and lifecycle

Eastern woodrats are aggressive towards conspecifics. Older individuals will chase and fight younger woodrats. The species only becomes sociable during breeding season. [22]

The breeding season of eastern wood rats depends on the climate. Those in warmer climates (e.g. Florida and Georgia) can reproduce all year, while eastern wood rats in higher latitudes (e.g. Kansas and Nebraska) breed from early spring to mid fall. Their estrous cycle lasts between 3 and 8 days, while gestation lasts between 32 and 38 days. [11] One to six young are born in each litter, and the female may become pregnant again after a week. Females can have up to three litters in a year, with two being normal. They can also sometimes reproduce in their first year, as they reach sexual maturity before males. Females are solely responsible for the young. Females and males fight when they come across each other. If the male wins, copulation occurs, but if the female wins, the male is usually killed during fighting. [2]

Pups are born with closed eyes, limited amount of hair and immediately attached to the teat. Most of the pelage will have appeared by day 8. [23] On the 15th day their hair is fully grown and their eyes are wide open. The young wean for 3–4 weeks and become independent after 70–90 days. Juveniles continue growing until they are about 8 months old. [24] The females start mating as young as 5 months. [25]

In captivity the Eastern Woodrat has been recorded to live for up to 8.6 years, however the average lifespan in the wild is 3 years. The majority of deaths occur within their first year of life. One field study in Kansas tracked 27 individuals, of which 6 survived to adulthood and only 3 lived long enough to reproduce. [11]

Predators and parasites

Eastern woodrats are a common prey item for many predators. Most common predators are the great horned owl, spotted skunk, long-tailed weasel, red fox, raccoon, and the timber rattlesnake, along with other various snakes. Woodrats try to avoid predators by being mostly active at night and hiding in their large dens during daylight. Unweaned pups in dens in particular are commonly taken by snakes. [24]

One of the most common parasites of eastern woodrats are botfly larvae. Adult botflies lay their eggs outside the entrance of the woodrat's den. They then attach themselves to the woodrat's fur when it passes through entrance. Once the eggs hatch, the botfly larvae penetrate the skin and lodge in the woodrat's neck, chest, and abdomen until pupation. The resulting cyst can be 15 mm in diameter but does not seem to cause any obvious discomfort. Botflies infest approximately 16% of the eastern woodrat population.[ citation needed ]

Raccoons may carry raccoon roundworms, an intestinal parasite. Woodrats may ingest the eggs of the roundworm while foraging at raccoon latrine areas. Larvae migrate to the brain, causing a lack of energy, loss of muscle control, and eventually death. The roundworm is a known mortality factor in woodrats in Indiana, New York, New Jersey, and Pennsylvania, with infection rates of around 75%. [24]

Ecological role

Eastern woodrat nests provide homes for a number of other species including, but not limited to, other rodents, insects, reptiles, and frogs. [26] Seed dispersal by caching and transporting seeds into dens has a great impact on the spread and maintenance of forest ecosystems, and woodrat fecal matter increases soil fertility. [27] The study of feces from prehistoric woodrat middens has been of great use in archaeological and paleontological research by providing indications about changing floral regimes. [28]

Interaction with humans

Eastern woodrats are popularly known for being pests. They tend to seek out houses, especially cottages or cabins in wooded areas, for warmth or housing, and do not hesitate to make nests out of mattresses and other furniture while feeding in adjacent cultivated areas. Automobiles may be damaged by chewing on wires and the introduction of nesting materials. Rarely, eastern woodrats may be the carriers of diseases that are communicable to humans. [27] The eastern woodrat does not have any economic impact on humans, but may receive blame for damages made by black or Norway rats. [26]

Conservation

Most subspecies of the eastern woodrat have been classified as Least Concern by the IUCN, with the exception of the Key Largo woodrat. While the species appears to never have been abundant, it remains widespread and reasonably common. [1] However, at smaller scales, the species has been listed as endangered, threatened, or of special concern in 5 of the 17 states in which they are found. State status designations may not be accurate since there is little research done where woodrats are presumed to be common. All states with recorded population decline are on the edge of the species range. The only conservation action taken has been habitat protection in Indiana, Illinois, North Carolina, and Florida. [1] [11]

Threats

Where eastern woodrats have declined, a variety of possible causes has been identified. Based on the historical records, it appears that extremely cold winters can cause a dramatic decline in populations. In 1912 and 1918, severe winters reduced the Illinois eastern woodrat populations. In 1948 and 1949, long winters with accumulation of snow and ice might have caused high mortality of litters in Kansas and starvation of adults. [24]

In recent times, urban development is thought to have had an impact. In South Carolina, massive development and urbanization, including forest clearance and road expansion, have led to habitat loss and isolation of woodrat populations. Suitable habitats in the Coastal Plains of South Carolina are not protected at all. [29]

While woodrats forage on many different food items, they are largely depended on cached acorns and nuts during winter. Eruptions of the gypsy moth in the basin of the Lower Mississippi River in 1964 and 1965 resulted in poor acorn and chestnut crops and subsequently in increased mortality in eastern woodrats in the area. [24]

The continued spread of raccoons may increase the likelihood of lethal infection of woodrats with the raccoon roundworm. [29]

Conservation management

In 2003, The Fish and Wildlife Service and Florida department of Environmental Protection jointly initiated a program for the removal of feral and free-roaming cats from conservation areas occupied by woodrats, which has proven largely successful. [30] Another step towards preserving this species is the separation of human activities from woodrat habitats to reduce human disturbance and secondary effects such as the presence of raccoons. [11]

The species has been reintroduced in several areas including Pine Hills, Union County and some sites in Missouri. [10] Reintroduction areas need to be checked for adequate food supplies, shelter resources and absence of raccoon roundworm. It has been suggested that the sex ratio be skewed toward females because eastern woodrats are polygynous, and that a genetically diverse stock be used to improve adaptability and survival rates. [31]

Related Research Articles

<span class="mw-page-title-main">Southern flying squirrel</span> Species of rodent

The southern flying squirrel or the assapan is one of three species of flying squirrel found in North America. It is found in deciduous and mixed woods in the eastern half of North America, from southeastern Canada to Florida. Disjunct populations of this species have been recorded in the highlands of Mexico, Guatemala, and Honduras.

<span class="mw-page-title-main">Desert woodrat</span> Species of rodent

The desert woodrat is a species of pack rat native to desert regions of western North America.

<span class="mw-page-title-main">Fox squirrel</span> Species of mammal

The fox squirrel, also known as the eastern fox squirrel or Bryant's fox squirrel, is the largest species of tree squirrel native to North America. Despite the differences in size and coloration, it is sometimes mistaken for American red squirrels or eastern gray squirrels in areas where the species co-exist.

<span class="mw-page-title-main">Key Largo woodrat</span> Subspecies of rodent endemic to Key Largo, Florida, United States

The Key Largo woodrat, a subspecies of the eastern woodrat, is a medium-sized rat found on less than 2,000 acres of the northern area of Key Largo, Florida, in the United States. It is currently on the United States Fish and Wildlife Service list of endangered species. Only 6500 animals were thought to remain in North Key Largo in the late 1980s.

<span class="mw-page-title-main">Mexican woodrat</span> Species of rodent

The Mexican woodrat is a medium-sized pack rat.

The Crocodile Lake National Wildlife Refuge is part of the United States National Wildlife Refuge System, located in north Key Largo, less than 40 miles (64 km) south of Miami off SR 905. The 6,686 acre (27.1 km2) refuge opened during the year of 1980, under the Land and Water Conservation Fund Act of 1965 and the Endangered Species Act of 1973. It was established in order to protect critical breeding and nesting habitat for the threatened American crocodile and other wildlife. This area also includes 650 acres (2.6 km2) of open water in and around the refuge. In addition to being one of only three breeding populations of the American crocodile, the refuge is home to tropical hardwood hammock, mangrove forest, and salt marsh. It is administered as part of the National Key Deer Refuge which is also located in the Florida Keys.

<span class="mw-page-title-main">Allegheny woodrat</span> Species of rodent

The Allegheny woodrat, is a species of "pack rat" in the genus Neotoma. Once believed to be a subspecies of the eastern woodrat, extensive DNA analysis has proven it to be a distinct species.

<span class="mw-page-title-main">White-throated woodrat</span> Species of rodent

The white-throated woodrat is a species of rodent in the family Cricetidae. It is found from central Mexico north to Utah and Colorado in the United States. It is primarily a western species in the United States, extending from central Texas west to southeastern California. Populations east of the Rio Grande in New Mexico and Trans-Pecos Texas, previously considered to be variants of the white-throated woodrat, have since 1988 been assigned to the white-toothed woodrat.

<span class="mw-page-title-main">Bushy-tailed woodrat</span> Species of rodent

The bushy-tailed woodrat, or packrat is a species of rodent in the family Cricetidae found in Canada and the United States. Its natural habitats are boreal forests, temperate forests, dry savanna, temperate shrubland, and temperate grassland.

<span class="mw-page-title-main">Dusky-footed woodrat</span> Species of rodent

The dusky-footed woodrat is a species of nocturnal rodent in the family Cricetidae. They are commonly called "packrats" or "trade rats" and build large, domed dens that can reach several feet in height. Coyotes and other predators will attempt to prey on these rodents by laying waste to the dens, but the sheer volume of material is usually dissuasive. Occasionally, dusky-footed woodrats will build satellite dens in trees. Although these animals are solitary, except in the mating season, dens are frequently found in clusters of up to several dozen, forming rough "communities". The mating system in this species appears to be variable, with promiscuity most generally at high population densities and monogamy at lower densities.

<span class="mw-page-title-main">White-toothed woodrat</span> Species of rodent

Neotoma leucodon is a species of rodent in the family Cricetidae. Although originally named from San Luis Potosí, Mexico, as a species by Clinton Hart Merriam, the white-toothed woodrat was long considered to be a synonym of the white-throated woodrat. Molecular data, however, indicate the populations east of the Rio Grande in New Mexico and Trans-Pecos Texas represent a different species than morphologically similar populations west of the river.

<span class="mw-page-title-main">Big-eared woodrat</span> Species of rodent

The big-eared woodrat is a nocturnal rodent of the woodrat genus Neotoma, in the family Cricetidae. Closely related to, and formerly included in the species Neotoma fuscipes, it is endemic to western North America and occurs west and south of the Salinas Valley from the California Coast Ranges south of Monterey Bay to northern Baja California, as well as in the Sierra Nevada, extending north to the South Fork American River.

<span class="mw-page-title-main">Pack rat</span> Genus of rodents

A pack rat or packrat, also called a woodrat or trade rat, are any species in the North and Central American rodent genus Neotoma. Pack rats have a rat-like appearance, with long tails, large ears, and large, black eyes. Pack rats are noticeably larger than deer mice, harvest mice, and grasshopper mice, and are usually somewhat larger than cotton rats.

<i>Baylisascaris procyonis</i> Species of roundworm

Baylisascaris procyonis, also known by the common name raccoon roundworm, is a roundworm nematode, found ubiquitously in raccoons, the definitive hosts. It is named after H. A. Baylis, who studied them in the 1920s–30s, and Greek askaris. Baylisascaris larvae in paratenic hosts can migrate, causing larva migrans. Baylisascariasis as the zoonotic infection of humans is rare, though extremely dangerous due to the ability of the parasite's larvae to migrate into brain tissue and cause damage. Concern for human infection has been increasing over the years due to urbanization of rural areas resulting in the increase in proximity and potential human interaction with raccoons.

Ctenophthalmus pseudagyrtes is a species of fleas in the family Hystrichopsyllidae. It is widespread in North America, east of the Rocky Mountains, and is found mainly on small mammals. In Missouri, it has been recorded on the Virginia opossum, northern short-tailed shrew, eastern mole, raccoon, eastern chipmunk, Florida woodrat, prairie vole, woodland vole, white-footed mouse, including nests, marsh rice rat, hispid cotton rat, house mouse, and brown rat. Hosts recorded in Tennessee include the Virginia opossum, northern short-tailed shrew, eastern mole, eastern chipmunk, southern red-backed vole, rock vole, woodland vole, white-footed mouse, golden mouse, hispid cotton rat, marsh rice rat, and house mouse.

<span class="mw-page-title-main">Estero River</span> River in Florida, United States

The Estero River is a 6.4-mile-long (10.3 km) waterway in south Lee County, Florida, United States, near the village of Estero. It flows from east to west, emptying into Estero Bay, an inlet of the Gulf of Mexico.

The Key Largo cotton mouse is a subspecies of rodent in the family Cricetidae. The subspecies is endemic to Key Largo in the upper Florida Keys. It is a slightly larger mouse with a more reddish color than other mouse species from mainland Florida. The Key Largo cotton mouse can breed throughout the year and has an average life expectancy of five months.

References

  1. 1 2 3 4 5 6 Cassola, F. (2017) [errata version of 2016 assessment]. "Neotoma floridana". IUCN Red List of Threatened Species . 2016: e.T42650A115199202. doi: 10.2305/IUCN.UK.2016-3.RLTS.T42650A22371112.en . Retrieved 5 January 2023.
  2. 1 2 3 4 5 6 7 8 9 10 11 12 Wiley, Robert W. (1980). "Neotoma floridana". Mammalian Species (139): 1–7. doi: 10.2307/3503989 . JSTOR   3503989.
  3. 1 2 "Neotoma floridana - Eastern Woodrat" at the Encyclopedia of Life
  4. Edwards, Cody W.; Bradley, Robert D. (1 August 2001). "Molecular Phylogenetics of the Neotoma Floridana Species Group". Journal of Mammalogy. 82 (3): 791–798. doi: 10.1644/1545-1542(2001)082<0791:MPOTNF>2.0.CO;2 .
  5. Alden, Peter (1987). Peterson First Guide to Mammals of North America. Illustrated by Richard P. Grossenheider. Boston: Houghton Mifflin Company. pp. 88–89. ISBN   0-395-42767-3. LCCN   86027821.
  6. 1 2 3 4 5 Feldhamer, George A.; Thompson, Bruce C.; Chapman, Joseph A. (21 October 2003). Wild Mammals of North America: Biology, Management, and Conservation. Johns Hoppkins University Press. ISBN   978-0-8018-7416-1.
  7. 1 2 Guilliams, Brandi (2008). Dewey, Tanya; Powers, Karen (eds.). "Neotoma floridana (eastern woodrat)". Animal Diversity Web. Retrieved 17 February 2023.
  8. 1 2 Knowles, T.W. and J.R. Burger. 2008. Predominant use of windthrows by nesting eastern woodrats (Neotoma floridana) in the South Carolina coastal plain. Am. Midl. Nat. 160(1):209-219
  9. 1 2 Hutchins, M. 2002. Article title. Grzimek's Animal Life Encyclopedia. 2nd ed. Vol. 3. p.221. Gale Publishers, Farmington Hills, Michigan.
  10. 1 2 Poole, A. K.; Novosak, B. A.; Gooley, A. C.; Ing, D. M.; Bluett, R. D.; Carter, T. C.; Feldhamer, G. A. (2013). "Reintroduction of the eastern woodrat (Neotoma floridana) in southern Illinois". Southeastern Naturalist. 12 (1): 1–10. doi:10.1656/058.012.0101. S2CID   86753856.
  11. 1 2 3 4 5 6 Monty, Anne-Marie; Feldhamer, George A. (May 2002). "Conservation Assessment for The Eastern Woodrat, (Neotoma floridana) and The Allegheny Woodrat (Neotoma magister)" (PDF). www.fs.usda.gov. USDA Forest Service, Eastern Region. Retrieved 17 February 2023.
  12. Harris, A. H. (1984). "Neotoma in the Late Pleistocene of New Mexico and Chihuahua". Special Publications of the Carnegie Museum of Natural History. 8: 164–178.
  13. Rossell Jr, C. R.; Roach, S. H.; Rossell, I. M.; McGrath, C. (2009). "Attributes of rock crevices selected by Allegheny and eastern woodrats in the zone of contact in the Appalachian mountains of North Carolina". American Midland Naturalist. 162 (1): 200–206. doi:10.1674/0003-0031-162.1.200. S2CID   86759455.
  14. Best, Troy L.; Dusi, Julian L. (2014). Gosse Nature Guides: Mammals of Alabama. Tuscaloosa, US: University Alabama Press.
  15. Gingerich, Jerry Lee (1994). Florida's Fabulous Mammals. Tampa, FL: World Publications. p. 42. ISBN   0-911977-13-9.
  16. 1 2 Horne, E.A.; McDonald, M.; Reichman, O.J. (1998). "Changes in Cache Contents over Winter in Artificial Dens of the Eastern Woodrat (Neotoma floridana)". Journal of Mammalogy. 79 (3): 898–905. doi: 10.2307/1383097 . JSTOR   1383097.
  17. 1 2 Wilson, Don (1999). The Smithsonian Book of North American Mammals. Washington and London: Smithsonian Institution Press.
  18. 1 2 Whitaker, J. O. (1996). National Audubon Society Field Guide to North American Mammals (Revised ed.). New York: Knopf. ISBN   9780679446316.
  19. Post, J.; McDonald, M.W.; Reichman, O.J. (1998). "Influence of Maternal Diet and Perishability on Caching and Consumption Behavior of Juvenile Eastern Woodrats". Journal of Mammalogy. 79 (1): 156–162. doi: 10.2307/1382850 . JSTOR   1382850. S2CID   84941508.
  20. Herrera, J.; McDonald, M.W. (1997). "Consumption by Eastern Woodrats (Neotoma floridana) of Food Infected by Fungi". American Midland Naturalist. 137 (2): 239–244. doi:10.2307/2426847. JSTOR   2426847.
  21. 1 2 Williams, Christopher K. (2000). "Eastern Woodrat (Neotoma Floridana) Consumption of Northern Bobwhite (Colinus Virginianus)". The American Midland Naturalist. 143: 239–244. doi:10.1674/0003-0031(2000)143[0239:ewnfco]2.0.co;2. S2CID   85873631.
  22. Jerry O. Wolff; Paul W. Sherman, eds. (2008). Rodent Societies - An Ecological And Evolutionary Perspective. University of Chicago Press.
  23. Pearson, Paul G. (1952). "Observations concerning the Life History and Ecology of the Woodrat, Neotoma floridana floridana (Ord)". Journal of Mammalogy. 33 (4): 459–463. doi:10.2307/1376018. JSTOR   1376018.
  24. 1 2 3 4 5 Monty, A.; Feldhamer, G. (2002). Conservation Assessment for The Eastern Woodrat, (Neotoma floridana) and The Allegheny Woodrat (Neotoma magister) (PDF) (Report).
  25. Armstrong, D. M.; Fitzgerald, J. P.; Meaney, C. A. (2010). Mammals of Colorado (Second ed.). Boulder, US: University Press of Colorado.
  26. 1 2 Brown, Larry N. (1997). A Guide to the Mammals of the Southeastern United States . Knoxville: The University of Tennessee Press. pp.  113. ISBN   978-0870499661. Remarks: The eastern woodrat seldom if ever has an economic impact on man, but they sometimes receive blame for damage caused by two introduced species (the black rat and Norway rat).
  27. 1 2 Feldhamer, George A.; Thompson, Bruce C.; Chapman, Joseph A. (2003). Wild Mammals of North America: Biology, Management, and Conservation. Baltimore, Maryland: Johns Hopkins University Press. pp. 381–390. ISBN   978-0-8018-7416-1.
  28. Betancourt, Julio H.; Van Devender, Thomas R.; Schultz Martin, Paul (1990). Packrat Middens: The Last 40,000 Years of Biotic Change. Tucson, Arizona: The University of Arizona Press. ISBN   978-0816511150.
  29. 1 2 Bunch, M.; Miller, S.; Webster, D. (2005). "Eastern woodrat" (PDF). South Carolina State Wildlife Action Plan. Supplemental volume: Species of conservation concern.
  30. Cove, Michael V.; Simons, Theodore R.; Gardner, Beth; O'Connell, Allan F. (1 September 2019). "Towards recovery of an endangered island endemic: Distributional and behavioral responses of Key Largo woodrats associated with exotic predator removal". Biological Conservation. 237: 423–429. doi: 10.1016/j.biocon.2019.07.032 . ISSN   0006-3207. S2CID   199632444.
  31. Muiznieks, B. (2006). "Captive propagation and the key largo woodrat". Endangered Species Update. 23: A32–A33.