Journal Article
A replicated climate change field experiment reveals rapid evolutionary response in an ecologically important soil invertebrate
Thomas Bataillon; Nicolas Galtier; Aurelien Bernard; Nicolai Cryer; Nicolas Faivre; Sylvain Santoni; Dany Severac; Teis N. Mikkelsen; Klaus S. Larsen; Claus Beier; Jesper G. Sørensen; Martin Holmstrup; Bodil K. Ehlers
Global Change Biology · Vol. 22, Issue 7 · pp. 2370-2379 · 2016
Abstract
Whether species can respond evolutionarily to current climate change is crucial for the persistence of many species. Yet, very few studies have examined genetic responses to climate change in manipulated experiments carried out in natural field conditions. We examined the evolutionary response to climate change in a common annelid worm using a controlled replicated experiment where climatic conditions were manipulated in a natural setting. Analyzing the transcribed genome of 15 local populations, we found that about 12% of the genetic polymorphisms exhibit differences in allele frequencies associated to changes in soil temperature and soil moisture. This shows an evolutionary response to realistic climate change happening over short‐time scale, and calls for incorporating evolution into models predicting future response of species to climate change. It also shows that designed climate change experiments coupled with genome sequencing offer great potential to test for the occurrence (or lack) of an evolutionary response.
Bibliographic Information
| Journal | Global Change Biology |
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| Publisher | Wiley |
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| Publication Date | 2016-07-01 |
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| Publication Year | 2016 |
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| Volume | 22 |
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| Issue | 7 |
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| Pages | 2370-2379 |
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| Document Type | Journal Article |
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| Print ISSN | 1354-1013 |
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| eISSN | 1365-2486 |
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| DOI | 10.1111/gcb.13293 |
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| Subject | Conservation Science |
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