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基因体甲基化调控基因表达并介导天然拟南芥种群中的表型多样性。

Gene body methylation regulates gene expression and mediates phenotypic diversity in natural Arabidopsis populations.

作者信息

Shahzad Zaigham, Hollwey Elizabeth, Moore Jonathan D, Choi Jaemyung, Cassin-Ross Gaëlle, Rouached Hatem, Robinson Matthew R, Zilberman Daniel

机构信息

Department of Cell and Developmental Biology, John Innes Centre, Norwich, UK.

Department of Life Sciences, Syed Babar Ali School of Science and Engineering, Lahore University of Management Sciences, Lahore, Pakistan.

出版信息

Nat Plants. 2025 Sep 12. doi: 10.1038/s41477-025-02108-4.

Abstract

Genetic variation is generally regarded as a prerequisite for evolution. In principle, epigenetic information inherited independently of DNA sequence can also enable evolution, but whether this occurs in natural populations is unknown. Here we show that single-nucleotide and epigenetic gene body DNA methylation (gbM) polymorphisms explain comparable amounts of expression variance in Arabidopsis thaliana populations. We genetically demonstrate that gbM regulates transcription, and we identify and genetically validate many associations between gbM polymorphism and the variation of complex traits: fitness under heat and drought, flowering time and accumulation of diverse minerals. Epigenome-wide association studies pinpoint trait-relevant genes with greater precision than genetic association analyses, probably due to reduced linkage disequilibrium between gbM variants. Finally, we identify numerous associations between gbM epialleles and diverse environmental conditions in native habitats, suggesting that gbM facilitates adaptation. Overall, our results indicate that epigenetic methylation variation fundamentally shapes phenotypic diversity in a natural population.

摘要

遗传变异通常被视为进化的先决条件。原则上,独立于DNA序列遗传的表观遗传信息也能够推动进化,但这种情况是否发生在自然种群中尚不清楚。在此,我们表明单核苷酸和表观遗传基因体DNA甲基化(gbM)多态性在拟南芥种群中解释了相当数量的表达变异。我们通过遗传学证明gbM调控转录,并鉴定和通过遗传学验证了许多gbM多态性与复杂性状变异之间的关联:高温和干旱条件下的适应性、开花时间以及多种矿物质的积累。全表观基因组关联研究比遗传关联分析更精确地定位了与性状相关的基因,这可能是由于gbM变体之间的连锁不平衡减少所致。最后,我们在原生栖息地中鉴定出gbM表观等位基因与多种环境条件之间的众多关联,表明gbM促进了适应性。总体而言,我们的结果表明表观遗传甲基化变异从根本上塑造了自然种群中的表型多样性。

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