生物
DNA甲基化
甲基化
转座因子
RNA导向的DNA甲基化
遗传学
表观遗传学
基因
差异甲基化区
表观遗传学
组蛋白
基因组
DNA
甲基化DNA免疫沉淀
拟南芥
拟南芥
组蛋白甲基化
基因表达调控
体育锻炼的表观遗传学
基因组DNA
基因表达
照明菌甲基化试验
CpG站点
佛得角
作者
Johan Zicola,Emmanuel Tergemina,Ahmed F. Elfarargi,Mehmet Göktay,Célia Neto,Robert J. Schmitz,Angela M. Hancock
标识
DOI:10.1038/s41477-026-02352-2
摘要
DNA methylation is important to maintain genome stability, but alterations in genome-wide methylation patterns can produce widespread genomic effects, with the potential to facilitate rapid adaptation. Here we investigate DNA methylation evolution in Arabidopsis thaliana during its colonization of the drought-prone Cape Verde Islands (CVI). We identified three high-impact changes in genes linking histone modification to DNA methylation that underlie variation in DNA methylation within CVI. We show that gene body methylation is reduced in CVI relative to the Moroccan outgroup due to a 2.7-kb deletion between two VARIANT IN METHYLATIONgenes (VIM2and VIM4), causing aberrant expression of the VIM2/4 homologues. Disruptions of CHROMOMETHYLASE 2 (CMT2) and a newly identified DNA methylation modulator, F-BOX PROTEIN 5 (FBX5), which we validated using CRISPR mutant analysis, contribute to DNA methylation of transposable elements within CVI. Overall, our results reveal rapid methylome evolution driven largely by high-impact variants in three genes.
科研通智能强力驱动
Strongly Powered by AbleSci AI