The Effects of Predation and Supplemental Food on Foraging and Abundance of White-footed Mice (Peromyscus Leucopus) in Relation to Forest Patch Size

The Effects of Predation and Supplemental Food on Foraging and Abundance of White-footed Mice (Peromyscus Leucopus) in Relation to Forest Patch Size
Author: Gregory James Marcello
Publisher:
Total Pages: 35
Release: 2005
Genre: Peromyscus leucopus
ISBN:

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The purpose of this study was to examine some of the possible causes for the negative density-area relationship reported for the white-footed mouse, Peromyscus leucopus. I examined predation and food availability in three small and three large forest fragments. Giving up density trays and various odors were used to test the variation in foraging behavior in the presence of a predator odor. Nest boxes and counts of periodical cicada emergence holes were used to test the effects of an emergence of periodical cicadas on P. leucopus population densities. Predator odors had no effect on foraging behaviors. P. leucopus responded to indirect, but not direct, cues of predation. Estimated densities of periodical cicada emergence holes were strongly related to the relative population density of P. leucopus. Continued study of predation and food differences in forest fragments of different sizes is needed to further examine the negative density-area relationship of P. leucopus.

Effects of Forest Fragmentation on the Abundance, Distribution, and Population Genetic Structure of White-footed Mice (Peromyscus Leucopus)

Effects of Forest Fragmentation on the Abundance, Distribution, and Population Genetic Structure of White-footed Mice (Peromyscus Leucopus)
Author: Christine Schandorsky Anderson
Publisher:
Total Pages:
Release: 2004
Genre: Fragmented landscapes
ISBN:

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Fragmentation of forests has led to the creation of forest patches that differ in size, proportion of edge habitat, and degree of isolation. Although densities of many mammalian species are positively related to patch area, there appears to be a general negative relationship between density of white-footed mice (Peromyscus leucopus) and patch area. In Chapters 2 - 5, I investigated both resource-based (i.e., vegetation characteristics) and dispersal-based (i.e., inhibited dispersal and sink) hypotheses to explain the negative density - area relationship using live-trapping data and DNA-microsatellite analyses. As an extension of how forest fragmentation may affect movements by this habitat generalist into and out of habitats, in Chapter 6 I focused on how patch isolation influences population genetic structure. Data were collected from 1999 to 2001 in 15 different patches of various sizes and degrees of isolation. I confirmed that relative abundance of P. leucopus was negatively related to forest patch area (Chapter 2). My results indicated that relative abundance of P. leucopus was positively related to structural complexity of understory vegetation and total basal area of trees, and tended to be negatively related to the species richness of trees (Chapter 2 and 3). Although I was unable to differentiate whether understory vegetation results in higher relative abundances due to food or cover, the results suggest that vegetation characteristics contribute to the negative density - area relationship. Based on live-trapping data and DNA-microsatellite analyses, I rejected both dispersal-based hypotheses to explain the effect of patch area on relative abundance of P. leucopus (Chapters 4 and 5). Within-population genetic variation was high across populations, and only 50% of individuals could be assigned to their population of capture based on multilocus genotypes, suggesting high rates of gene flow. Degree of isolation and landscape structure had a small but significant influence on population genetic structure in this species (Chapter 6). This project illustrates the habitat generalist behavior and good dispersal ability of white-footed mice, but it appears that both abiotic and biotic factors, including competition and predation, are important in explaining the effects of forest fragmentation on P. leucopus.

Effects of Climate and Density on the Survival of White-footed Mice (Peromyscus Leucopus)

Effects of Climate and Density on the Survival of White-footed Mice (Peromyscus Leucopus)
Author: Eric Richard Wengert
Publisher:
Total Pages:
Release: 2009
Genre: Adaption (Physiology)
ISBN:

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Short-lived rodents are sensitive to changes in environmental conditions and exhibit annual fluctuations under seasonal environments in northern temperate regions. I analyzed 34 years of monthly live-trapping data on white-footed mice (Peromyscus leucopus) collected in Carter Woods, Ohio. I used a theoretic-information approach to select the best approximating models and analysis of deviance to infer effects of climate and density on survival of mice. I tested for a cost of reproduction to females and found no difference in survival between reproductive states. Directions and magnitudes of effects of climate and density varied over time. Increased variability in temperature reduced effects of density on survival. I detected an Allee effect and density dependent effects on survival. Long-term trapping data are needed to study temporal effects of climate and density on the demography of rodents. Recruitment had a greater impact on population growth rate than survival.

EFFECTS OF CLIMATE AND DENSITY ON THE SURVIVAL OF WHITE-FOOTED MICE (PEROMYSCUS LEUCOPUS).

EFFECTS OF CLIMATE AND DENSITY ON THE SURVIVAL OF WHITE-FOOTED MICE (PEROMYSCUS LEUCOPUS).
Author:
Publisher:
Total Pages:
Release: 2008
Genre:
ISBN:

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Short-lived rodents are sensitive to changes in environmental conditions and exhibit annual fluctuations under seasonal environments in northern temperate regions. I analyzed 34 years of monthly live-trapping data on white-footed mice (Peromyscus leucopus) collected in Carter Woods, Ohio. I used a theoretic-information approach to select the best approximating models and analysis of deviance to infer effects of climate and density on survival of mice. I tested for a cost of reproduction to females and found no difference in survival between reproductive states. Directions and magnitudes of effects of climate and density varied over time. Increased variability in temperature reduced effects of density on survival. I detected an Allee effect and density dependent effects on survival. Long-term trapping data are needed to study temporal effects of climate and density on the demography of rodents. Recruitment had a greater impact on population growth rate than survival.

Current Programs

Current Programs
Author:
Publisher:
Total Pages: 734
Release: 1974
Genre: Engineering
ISBN:

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North American Rodents

North American Rodents
Author: David J. Hafner
Publisher: IUCN
Total Pages: 188
Release: 1998
Genre: Nature
ISBN: 9782831704630

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The first comprehensive treatment of North American rodents of conservation concern. This action plan summarizes the rodent fauna of North America and provides available information on every rodent taxon that has been considered to be of conservation concern by state, provincial and private conservation agencies and regional experts. It is hoped that the survey provided in this action plan will serve as a common ground for all these parties in drawing up conservation strategies for rodents.

Making Nature's City: A Science-based Framework for Building Urban Biodiversity

Making Nature's City: A Science-based Framework for Building Urban Biodiversity
Author: Erica Spotswood
Publisher:
Total Pages: 156
Release: 2019-09
Genre: Nature
ISBN: 9781950313037

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Using the framework developed in this report, urban designers and local residents can work together to link local parks, greenways, green roofs, street trees, stormwater basins, commercial landscaping, and backyards to support biodiversity while making cities better places to live.

Game Management

Game Management
Author: Aldo Leopold
Publisher: Univ of Wisconsin Press
Total Pages: 519
Release: 1987-03-13
Genre: Nature
ISBN: 0299107736

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With this book, published more than a half-century ago, Aldo Leopold created the discipline of wildlife management. Although A Sand Country Almanac is doubtless Leopold’s most popular book, Game Management may well be his most important. In this book he revolutionized the field of conservation.