When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)

The genetic consequences of climate-driven range fluctuation during the Pleistocene have been well studied for temperate species, but cold-adapted (e.g., alpine, arctic) species that may have responded uniquely to past climatic events have received less attention. In particular, we have no a priori...

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Published in:Evolution
Main Authors: Kurt E. Galbreath, David J. Hafner, Kelly R. Zamudio
Format: Text
Language:English
Published: The Society for the Study of Evolution 2009
Subjects:
Online Access:https://doi.org/10.1111/j.1558-5646.2009.00803.x
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spelling ftbioone:10.1111/j.1558-5646.2009.00803.x 2024-06-02T08:02:21+00:00 When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps) Kurt E. Galbreath David J. Hafner Kelly R. Zamudio Kurt E. Galbreath David J. Hafner Kelly R. Zamudio world 2009-11-01 text/HTML https://doi.org/10.1111/j.1558-5646.2009.00803.x en eng The Society for the Study of Evolution doi:10.1111/j.1558-5646.2009.00803.x All rights reserved. https://doi.org/10.1111/j.1558-5646.2009.00803.x Text 2009 ftbioone https://doi.org/10.1111/j.1558-5646.2009.00803.x 2024-05-07T00:59:41Z The genetic consequences of climate-driven range fluctuation during the Pleistocene have been well studied for temperate species, but cold-adapted (e.g., alpine, arctic) species that may have responded uniquely to past climatic events have received less attention. In particular, we have no a priori expectation for long-term evolutionary consequences of elevation shifts into and out of sky islands by species adapted to alpine habitats. Here, we examined the influence of elevation shifts on genetic differentiation and historical demography in an alpine specialist, the American pika (Ochotona princeps). Pika populations are divided into five genetic lineages that evolved in association with separate mountain systems, rather than lineages that reflect individual sky islands. This suggests a role for glacial-period elevation shifts in promoting gene flow among high-elevation populations and maintaining regional cohesion of genetic lineages. We detected a signature of recent demographic decline in all lineages, consistent with the expectation that Holocene climate warming has driven range retraction in southern lineages, but unexpected for northern populations that presumably represent postglacial expansion. An ecological niche model of past and future pika distributions highlights the influence of climate on species range and indicates that the distribution of genetic diversity may change dramatically with continued climate warming. Text Arctic BioOne Online Journals Arctic Evolution 63 11 2848 2863
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description The genetic consequences of climate-driven range fluctuation during the Pleistocene have been well studied for temperate species, but cold-adapted (e.g., alpine, arctic) species that may have responded uniquely to past climatic events have received less attention. In particular, we have no a priori expectation for long-term evolutionary consequences of elevation shifts into and out of sky islands by species adapted to alpine habitats. Here, we examined the influence of elevation shifts on genetic differentiation and historical demography in an alpine specialist, the American pika (Ochotona princeps). Pika populations are divided into five genetic lineages that evolved in association with separate mountain systems, rather than lineages that reflect individual sky islands. This suggests a role for glacial-period elevation shifts in promoting gene flow among high-elevation populations and maintaining regional cohesion of genetic lineages. We detected a signature of recent demographic decline in all lineages, consistent with the expectation that Holocene climate warming has driven range retraction in southern lineages, but unexpected for northern populations that presumably represent postglacial expansion. An ecological niche model of past and future pika distributions highlights the influence of climate on species range and indicates that the distribution of genetic diversity may change dramatically with continued climate warming.
author2 Kurt E. Galbreath
David J. Hafner
Kelly R. Zamudio
format Text
author Kurt E. Galbreath
David J. Hafner
Kelly R. Zamudio
spellingShingle Kurt E. Galbreath
David J. Hafner
Kelly R. Zamudio
When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
author_facet Kurt E. Galbreath
David J. Hafner
Kelly R. Zamudio
author_sort Kurt E. Galbreath
title When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
title_short When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
title_full When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
title_fullStr When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
title_full_unstemmed When Cold is Better: Climate-Driven Elevation Shifts Yield Complex Patterns of Diversification and Demography in an Alpine Specialist (American Pika, Ochotona princeps)
title_sort when cold is better: climate-driven elevation shifts yield complex patterns of diversification and demography in an alpine specialist (american pika, ochotona princeps)
publisher The Society for the Study of Evolution
publishDate 2009
url https://doi.org/10.1111/j.1558-5646.2009.00803.x
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