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Road avoidance and its energetic consequences for reptiles

Roads are one of the most widespread human‐caused habitat modifications that can increase wildlife mortality rates and alter behavior. Roads can act as barriers with variable permeability to movement and can increase distances wildlife travel to access habitats. Movement is energetically costly, and...

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Autores principales: Paterson, James E., Baxter‐Gilbert, James, Beaudry, Frederic, Carstairs, Sue, Chow‐Fraser, Patricia, Edge, Christopher B., Lentini, Andrew M., Litzgus, Jacqueline D., Markle, Chantel E., McKeown, Kassie, Moore, Jennifer A., Refsnider, Jeanine M., Riley, Julia L., Rouse, Jeremy D., Seburn, David C., Zimmerling, J. Ryan, Davy, Christina M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6745830/
https://www.ncbi.nlm.nih.gov/pubmed/31534694
http://dx.doi.org/10.1002/ece3.5515
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author Paterson, James E.
Baxter‐Gilbert, James
Beaudry, Frederic
Carstairs, Sue
Chow‐Fraser, Patricia
Edge, Christopher B.
Lentini, Andrew M.
Litzgus, Jacqueline D.
Markle, Chantel E.
McKeown, Kassie
Moore, Jennifer A.
Refsnider, Jeanine M.
Riley, Julia L.
Rouse, Jeremy D.
Seburn, David C.
Zimmerling, J. Ryan
Davy, Christina M.
author_facet Paterson, James E.
Baxter‐Gilbert, James
Beaudry, Frederic
Carstairs, Sue
Chow‐Fraser, Patricia
Edge, Christopher B.
Lentini, Andrew M.
Litzgus, Jacqueline D.
Markle, Chantel E.
McKeown, Kassie
Moore, Jennifer A.
Refsnider, Jeanine M.
Riley, Julia L.
Rouse, Jeremy D.
Seburn, David C.
Zimmerling, J. Ryan
Davy, Christina M.
author_sort Paterson, James E.
collection PubMed
description Roads are one of the most widespread human‐caused habitat modifications that can increase wildlife mortality rates and alter behavior. Roads can act as barriers with variable permeability to movement and can increase distances wildlife travel to access habitats. Movement is energetically costly, and avoidance of roads could therefore impact an animal's energy budget. We tested whether reptiles avoid roads or road crossings and explored whether the energetic consequences of road avoidance decreased individual fitness. Using telemetry data from Blanding's turtles (Emydoidea blandingii; 11,658 locations of 286 turtles from 15 sites) and eastern massasaugas (Sistrurus catenatus; 1,868 locations of 49 snakes from 3 sites), we compared frequency of observed road crossings and use of road‐adjacent habitat by reptiles to expected frequencies based on simulated correlated random walks. Turtles and snakes did not avoid habitats near roads, but both species avoided road crossings. Compared with simulations, turtles made fewer crossings of paved roads with low speed limits and more crossings of paved roads with high speed limits. Snakes made fewer crossings of all road types than expected based on simulated paths. Turtles traveled longer daily distances when their home range contained roads, but the predicted energetic cost was negligible: substantially less than the cost of producing one egg. Snakes with roads in their home range did not travel further per day than snakes without roads in their home range. We found that turtles and snakes avoided crossing roads, but road avoidance is unlikely to impact fitness through energetic expenditures. Therefore, mortality from vehicle strikes remains the most significant impact of roads on reptile populations.
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spelling pubmed-67458302019-09-18 Road avoidance and its energetic consequences for reptiles Paterson, James E. Baxter‐Gilbert, James Beaudry, Frederic Carstairs, Sue Chow‐Fraser, Patricia Edge, Christopher B. Lentini, Andrew M. Litzgus, Jacqueline D. Markle, Chantel E. McKeown, Kassie Moore, Jennifer A. Refsnider, Jeanine M. Riley, Julia L. Rouse, Jeremy D. Seburn, David C. Zimmerling, J. Ryan Davy, Christina M. Ecol Evol Original Research Roads are one of the most widespread human‐caused habitat modifications that can increase wildlife mortality rates and alter behavior. Roads can act as barriers with variable permeability to movement and can increase distances wildlife travel to access habitats. Movement is energetically costly, and avoidance of roads could therefore impact an animal's energy budget. We tested whether reptiles avoid roads or road crossings and explored whether the energetic consequences of road avoidance decreased individual fitness. Using telemetry data from Blanding's turtles (Emydoidea blandingii; 11,658 locations of 286 turtles from 15 sites) and eastern massasaugas (Sistrurus catenatus; 1,868 locations of 49 snakes from 3 sites), we compared frequency of observed road crossings and use of road‐adjacent habitat by reptiles to expected frequencies based on simulated correlated random walks. Turtles and snakes did not avoid habitats near roads, but both species avoided road crossings. Compared with simulations, turtles made fewer crossings of paved roads with low speed limits and more crossings of paved roads with high speed limits. Snakes made fewer crossings of all road types than expected based on simulated paths. Turtles traveled longer daily distances when their home range contained roads, but the predicted energetic cost was negligible: substantially less than the cost of producing one egg. Snakes with roads in their home range did not travel further per day than snakes without roads in their home range. We found that turtles and snakes avoided crossing roads, but road avoidance is unlikely to impact fitness through energetic expenditures. Therefore, mortality from vehicle strikes remains the most significant impact of roads on reptile populations. John Wiley and Sons Inc. 2019-08-13 /pmc/articles/PMC6745830/ /pubmed/31534694 http://dx.doi.org/10.1002/ece3.5515 Text en © 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Paterson, James E.
Baxter‐Gilbert, James
Beaudry, Frederic
Carstairs, Sue
Chow‐Fraser, Patricia
Edge, Christopher B.
Lentini, Andrew M.
Litzgus, Jacqueline D.
Markle, Chantel E.
McKeown, Kassie
Moore, Jennifer A.
Refsnider, Jeanine M.
Riley, Julia L.
Rouse, Jeremy D.
Seburn, David C.
Zimmerling, J. Ryan
Davy, Christina M.
Road avoidance and its energetic consequences for reptiles
title Road avoidance and its energetic consequences for reptiles
title_full Road avoidance and its energetic consequences for reptiles
title_fullStr Road avoidance and its energetic consequences for reptiles
title_full_unstemmed Road avoidance and its energetic consequences for reptiles
title_short Road avoidance and its energetic consequences for reptiles
title_sort road avoidance and its energetic consequences for reptiles
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6745830/
https://www.ncbi.nlm.nih.gov/pubmed/31534694
http://dx.doi.org/10.1002/ece3.5515
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