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气候驱动根际微生物组变异以及地理上相距遥远的拟南芥种群之间的趋异选择。

Climate drives rhizosphere microbiome variation and divergent selection between geographically distant Arabidopsis populations.

作者信息

Durán Paloma, Ellis Thomas James, Thiergart Thorsten, Ågren Jon, Hacquard Stéphane

机构信息

Max Planck Institute for Plant Breeding Research, 50829, Cologne, Germany.

Cluster of Excellence on Plant Sciences (CEPLAS), Max Planck Institute for Plant Breeding Research, 50829, Cologne, Germany.

出版信息

New Phytol. 2022 Oct;236(2):608-621. doi: 10.1111/nph.18357. Epub 2022 Jul 26.

DOI:10.1111/nph.18357
PMID:35794837
Abstract

Disentangling the contribution of climatic and edaphic factors to microbiome variation and local adaptation in plants requires an experimental approach to uncouple their effects and test for causality. We used microbial inocula, soil matrices and plant genotypes derived from two natural Arabidopsis thaliana populations in northern and southern Europe in an experiment conducted in climatic chambers mimicking seasonal changes in temperature, day length and light intensity of the home sites of the two genotypes. The southern A. thaliana genotype outperformed the northern genotype in the southern climate chamber, whereas the opposite was true in the northern climate chamber. Recipient soil matrix, but not microbial composition, affected plant fitness, and effects did not differ between genotypes. Differences between chambers significantly affected rhizosphere microbiome assembly, although these effects were small in comparison with the shifts induced by physicochemical differences between soil matrices. The results suggest that differences in seasonal changes in temperature, day length and light intensity between northern and southern Europe have strongly influenced adaptive differentiation between the two A. thaliana populations, whereas effects of differences in soil factors have been weak. By contrast, below-ground differences in soil characteristics were more important than differences in climate for rhizosphere microbiome differentiation.

摘要

厘清气候和土壤因素对植物微生物组变异及局部适应性的贡献,需要一种实验方法来分离它们的影响并检验因果关系。我们在模拟两种基因型原生地温度、日长和光照强度季节性变化的气候室中进行了一项实验,使用了源自欧洲北部和南部两个天然拟南芥种群的微生物接种物、土壤基质和植物基因型。在南部气候室中,南方的拟南芥基因型表现优于北方基因型,而在北方气候室中情况则相反。受体土壤基质而非微生物组成影响了植物适应性,且不同基因型之间的影响并无差异。气候室之间的差异显著影响了根际微生物组的组装,不过与土壤基质间物理化学差异所引发的变化相比,这些影响较小。结果表明,北欧和南欧在温度、日长和光照强度季节性变化上的差异,强烈影响了两个拟南芥种群之间的适应性分化,而土壤因素差异的影响较弱。相比之下,土壤特性的地下差异对根际微生物组分化而言比气候差异更为重要。

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