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Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations

BACKGROUND: Individual body growth is controlled in large part by the spatial and temporal heterogeneity of, and competition for, resources. Grizzly bears (Ursus arctos L.) are an excellent species for studying the effects of resource heterogeneity and maternal effects (i.e. silver spoon) on life hi...

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Autores principales: Nielsen, Scott E, Cattet, Marc RL, Boulanger, John, Cranston, Jerome, McDermid, Greg J, Shafer, Aaron BA, Stenhouse, Gordon B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3849066/
https://www.ncbi.nlm.nih.gov/pubmed/24010501
http://dx.doi.org/10.1186/1472-6785-13-31
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author Nielsen, Scott E
Cattet, Marc RL
Boulanger, John
Cranston, Jerome
McDermid, Greg J
Shafer, Aaron BA
Stenhouse, Gordon B
author_facet Nielsen, Scott E
Cattet, Marc RL
Boulanger, John
Cranston, Jerome
McDermid, Greg J
Shafer, Aaron BA
Stenhouse, Gordon B
author_sort Nielsen, Scott E
collection PubMed
description BACKGROUND: Individual body growth is controlled in large part by the spatial and temporal heterogeneity of, and competition for, resources. Grizzly bears (Ursus arctos L.) are an excellent species for studying the effects of resource heterogeneity and maternal effects (i.e. silver spoon) on life history traits such as body size because their habitats are highly variable in space and time. Here, we evaluated influences on body size of grizzly bears in Alberta, Canada by testing six factors that accounted for spatial and temporal heterogeneity in environments during maternal, natal and ‘capture’ (recent) environments. After accounting for intrinsic biological factors (age, sex), we examined how body size, measured in mass, length and body condition, was influenced by: (a) population density; (b) regional habitat productivity; (c) inter-annual variability in productivity (including silver spoon effects); (d) local habitat quality; (e) human footprint (disturbances); and (f) landscape change. RESULTS: We found sex and age explained the most variance in body mass, condition and length (R(2) from 0.48–0.64). Inter-annual variability in climate the year before and of birth (silver spoon effects) had detectable effects on the three-body size metrics (R(2) from 0.04–0.07); both maternal (year before birth) and natal (year of birth) effects of precipitation and temperature were related with body size. Local heterogeneity in habitat quality also explained variance in body mass and condition (R(2) from 0.01–0.08), while annual rate of landscape change explained additional variance in body length (R(2) of 0.03). Human footprint and population density had no observed effect on body size. CONCLUSIONS: These results illustrated that body size patterns of grizzly bears, while largely affected by basic biological characteristics (age and sex), were also influenced by regional environmental gradients the year before, and of, the individual’s birth thus illustrating silver spoon effects. The magnitude of the silver spoon effects was on par with the influence of contemporary regional habitat productivity, which showed that both temporal and spatial influences explain in part body size patterns in grizzly bears. Because smaller bears were found in colder and less-productive environments, we hypothesize that warming global temperatures may positively affect body mass of interior bears.
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spelling pubmed-38490662013-12-04 Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations Nielsen, Scott E Cattet, Marc RL Boulanger, John Cranston, Jerome McDermid, Greg J Shafer, Aaron BA Stenhouse, Gordon B BMC Ecol Research Article BACKGROUND: Individual body growth is controlled in large part by the spatial and temporal heterogeneity of, and competition for, resources. Grizzly bears (Ursus arctos L.) are an excellent species for studying the effects of resource heterogeneity and maternal effects (i.e. silver spoon) on life history traits such as body size because their habitats are highly variable in space and time. Here, we evaluated influences on body size of grizzly bears in Alberta, Canada by testing six factors that accounted for spatial and temporal heterogeneity in environments during maternal, natal and ‘capture’ (recent) environments. After accounting for intrinsic biological factors (age, sex), we examined how body size, measured in mass, length and body condition, was influenced by: (a) population density; (b) regional habitat productivity; (c) inter-annual variability in productivity (including silver spoon effects); (d) local habitat quality; (e) human footprint (disturbances); and (f) landscape change. RESULTS: We found sex and age explained the most variance in body mass, condition and length (R(2) from 0.48–0.64). Inter-annual variability in climate the year before and of birth (silver spoon effects) had detectable effects on the three-body size metrics (R(2) from 0.04–0.07); both maternal (year before birth) and natal (year of birth) effects of precipitation and temperature were related with body size. Local heterogeneity in habitat quality also explained variance in body mass and condition (R(2) from 0.01–0.08), while annual rate of landscape change explained additional variance in body length (R(2) of 0.03). Human footprint and population density had no observed effect on body size. CONCLUSIONS: These results illustrated that body size patterns of grizzly bears, while largely affected by basic biological characteristics (age and sex), were also influenced by regional environmental gradients the year before, and of, the individual’s birth thus illustrating silver spoon effects. The magnitude of the silver spoon effects was on par with the influence of contemporary regional habitat productivity, which showed that both temporal and spatial influences explain in part body size patterns in grizzly bears. Because smaller bears were found in colder and less-productive environments, we hypothesize that warming global temperatures may positively affect body mass of interior bears. BioMed Central 2013-09-08 /pmc/articles/PMC3849066/ /pubmed/24010501 http://dx.doi.org/10.1186/1472-6785-13-31 Text en Copyright © 2013 Nielsen et al.; licensee BioMed Central Ltd. This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Nielsen, Scott E
Cattet, Marc RL
Boulanger, John
Cranston, Jerome
McDermid, Greg J
Shafer, Aaron BA
Stenhouse, Gordon B
Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title_full Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title_fullStr Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title_full_unstemmed Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title_short Environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
title_sort environmental, biological and anthropogenic effects on grizzly bear body size: temporal and spatial considerations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3849066/
https://www.ncbi.nlm.nih.gov/pubmed/24010501
http://dx.doi.org/10.1186/1472-6785-13-31
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