Greater topoclimatic control of above‐ versus below‐ground communities.

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Title: Greater topoclimatic control of above‐ versus below‐ground communities.
Authors: Mod, Heidi K.1,2 (AUTHOR) heidi.mod@helsinki.fi, Scherrer, Daniel1,3 (AUTHOR), Di Cola, Valeria1 (AUTHOR), Broennimann, Olivier1,4 (AUTHOR), Blandenier, Quentin5,6 (AUTHOR), Breiner, Frank T.1 (AUTHOR), Buri, Aline4 (AUTHOR), Goudet, Jérôme1,7 (AUTHOR), Guex, Nicolas8,9 (AUTHOR), Lara, Enrique6 (AUTHOR), Mitchell, Edward A. D.5,10 (AUTHOR), Niculita‐Hirzel, Hélène11 (AUTHOR), Pagni, Marco9 (AUTHOR), Pellissier, Loïc3,12 (AUTHOR), Pinto‐Figueroa, Eric13 (AUTHOR), Sanders, Ian R.1 (AUTHOR), Schmidt, Benedikt R.14,15 (AUTHOR), Seppey, Christophe V. W.16 (AUTHOR), Singer, David5,17 (AUTHOR), Ursenbacher, Sylvain14,18 (AUTHOR)
Source: Global Change Biology. Dec2020, Vol. 26 Issue 12, p6715-6728. 14p.
Subjects: Species distribution, Climate change, Plant performance, Plant-soil relationships, Soil microbial ecology, Geochemistry
Abstract: Assessing the degree to which climate explains the spatial distributions of different taxonomic and functional groups is essential for anticipating the effects of climate change on ecosystems. Most effort so far has focused on above‐ground organisms, which offer only a partial view on the response of biodiversity to environmental gradients. Here including both above‐ and below‐ground organisms, we quantified the degree of topoclimatic control on the occurrence patterns of >1,500 taxa and phylotypes along a c. 3,000 m elevation gradient, by fitting species distribution models. Higher model performances for animals and plants than for soil microbes (fungi, bacteria and protists) suggest that the direct influence of topoclimate is stronger on above‐ground species than on below‐ground microorganisms. Accordingly, direct climate change effects are predicted to be stronger for above‐ground than for below‐ground taxa, whereas factors expressing local soil microclimate and geochemistry are likely more important to explain and forecast the occurrence patterns of soil microbiota. Detailed mapping and future scenarios of soil microclimate and microhabitats, together with comparative studies of interacting and ecologically dependent above‐ and below‐ground biota, are thus needed to understand and realistically forecast the future distribution of ecosystems. [ABSTRACT FROM AUTHOR]
Copyright of Global Change Biology is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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  Data: Greater topoclimatic control of above‐ versus below‐ground communities.
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  Data: Assessing the degree to which climate explains the spatial distributions of different taxonomic and functional groups is essential for anticipating the effects of climate change on ecosystems. Most effort so far has focused on above‐ground organisms, which offer only a partial view on the response of biodiversity to environmental gradients. Here including both above‐ and below‐ground organisms, we quantified the degree of topoclimatic control on the occurrence patterns of >1,500 taxa and phylotypes along a c. 3,000 m elevation gradient, by fitting species distribution models. Higher model performances for animals and plants than for soil microbes (fungi, bacteria and protists) suggest that the direct influence of topoclimate is stronger on above‐ground species than on below‐ground microorganisms. Accordingly, direct climate change effects are predicted to be stronger for above‐ground than for below‐ground taxa, whereas factors expressing local soil microclimate and geochemistry are likely more important to explain and forecast the occurrence patterns of soil microbiota. Detailed mapping and future scenarios of soil microclimate and microhabitats, together with comparative studies of interacting and ecologically dependent above‐ and below‐ground biota, are thus needed to understand and realistically forecast the future distribution of ecosystems. [ABSTRACT FROM AUTHOR]
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  Data: <i>Copyright of Global Change Biology is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract.</i> (Copyright applies to all Abstracts.)
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        Value: 10.1111/gcb.15330
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        Text: English
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      – SubjectFull: Species distribution
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      – SubjectFull: Climate change
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      – SubjectFull: Plant performance
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      – SubjectFull: Soil microbial ecology
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      – SubjectFull: Geochemistry
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