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广泛分布的草原植物在不同冬季温度下的性状变异、多样性模式及沿纬度分布的选择特征。

Trait variation in response to varying winter temperatures, diversity patterns and signatures of selection along the latitudinal distribution of the widespread grassland plant .

作者信息

Michalski Stefan G, Malyshev Andrey V, Kreyling Juergen

机构信息

Department of Community Ecology (BZF) Helmholtz Centre for Environmental Research UFZ Halle Germany.

Institute for Botany and Landscape Ecology Ernst Moritz Arndt University Greifswald Greifswald Germany.

出版信息

Ecol Evol. 2017 Apr 9;7(9):3268-3280. doi: 10.1002/ece3.2936. eCollection 2017 May.

Abstract

Across Europe, genetic diversity can be expected to decline toward the North because of stochastic and selective effects which may imply diminished phenotypic variation and less potential for future genetic adaptations to environmental change. Understanding such latitudinal patterns can aid provenance selection for breeding or assisted migration approaches. In an experiment simulating different winter temperatures, we assessed quantitative trait variation, genetic diversity, and differentiation for natural populations of the grass originating from a large latitudinal gradient. In general, populations from the North grew smaller and had a lower flowering probability. Toward the North, the absolute plastic response to the different winter conditions as well as heritability for biomass production significantly declined. Genetic differentiation in plant height and probability of flowering were very strong and significantly higher than under neutral expectations derived from SNP data, suggesting adaptive differentiation. Differentiation in biomass production did not exceed but mirrored patterns for neutral genetic differentiation, suggesting that migration-related processes caused the observed clinal trait variation. Our results demonstrate that genetic diversity and trait differentiation patterns for .  along a latitudinal gradient are likely shaped by both local selection and genetic drift.

摘要

在欧洲,由于随机效应和选择效应,预计遗传多样性会朝着北方下降,这可能意味着表型变异减少以及未来对环境变化进行遗传适应的潜力降低。了解这种纬度模式有助于为育种或辅助迁移方法进行种源选择。在一项模拟不同冬季温度的实验中,我们评估了来自大纬度梯度的该草种自然种群的数量性状变异、遗传多样性和分化情况。总体而言,北方的种群生长得较小且开花概率较低。朝着北方,对不同冬季条件的绝对可塑性反应以及生物量生产的遗传力显著下降。株高和开花概率的遗传分化非常强烈,且显著高于根据单核苷酸多态性(SNP)数据得出的中性预期,表明存在适应性分化。生物量生产的分化没有超过但反映了中性遗传分化的模式,这表明与迁移相关的过程导致了观察到的渐变性状变异。我们的结果表明,沿着纬度梯度,该草种的遗传多样性和性状分化模式可能是由局部选择和遗传漂变共同塑造的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ef4/5415536/0a772dfc58bd/ECE3-7-3268-g001.jpg

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