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玉米近亲繁殖衰退的表观遗传基础。

An epigenetic basis of inbreeding depression in maize.

作者信息

Han Tongwen, Wang Fang, Song Qingxin, Ye Wenxue, Liu Tieshan, Wang Liming, Chen Z Jeffrey

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, 1 Weigang Road, Nanjing 210095, China.

Maize Research Institute, Shandong Academy of Agricultural Sciences, Jinan 250100, China.

出版信息

Sci Adv. 2021 Aug 27;7(35). doi: 10.1126/sciadv.abg5442. Print 2021 Aug.

Abstract

Inbreeding depression is widespread across plant and animal kingdoms and may arise from the exposure of deleterious alleles and/or loss of overdominant alleles resulting from increased homozygosity, but these genetic models cannot fully explain the phenomenon. Here, we report epigenetic links to inbreeding depression in maize. Teosinte branched1/cycloidea/proliferating cell factor (TCP) transcription factors control plant development. During successive inbreeding among inbred lines, thousands of genomic regions across TCP-binding sites (TBS) are hypermethylated through the H3K9me2-mediated pathway. These hypermethylated regions are accompanied by decreased chromatin accessibility, increased levels of the repressive histone marks H3K27me2 and H3K27me3, and reduced binding affinity of maize TCP-proteins to TBS. Consequently, hundreds of TCP-target genes involved in mitochondrion, chloroplast, and ribosome functions are down-regulated, leading to reduced growth vigor. Conversely, random mating can reverse corresponding hypermethylation sites and TCP-target gene expression, restoring growth vigor. These results support a unique role of reversible epigenetic modifications in inbreeding depression.

摘要

近亲繁殖衰退在植物和动物界广泛存在,可能源于有害等位基因的暴露和/或由于纯合性增加导致的超显性等位基因的丧失,但这些遗传模型无法完全解释这一现象。在此,我们报告了玉米中近亲繁殖衰退的表观遗传联系。玉米分枝1/类周期蛋白/增殖细胞因子(TCP)转录因子控制植物发育。在自交系连续近亲繁殖过程中,TCP结合位点(TBS)上的数千个基因组区域通过H3K9me2介导的途径发生超甲基化。这些超甲基化区域伴随着染色质可及性降低、抑制性组蛋白标记H3K27me2和H3K27me3水平升高,以及玉米TCP蛋白与TBS的结合亲和力降低。因此,数百个参与线粒体、叶绿体和核糖体功能的TCP靶基因被下调,导致生长活力下降。相反,随机交配可以逆转相应的超甲基化位点和TCP靶基因表达,恢复生长活力。这些结果支持了可逆表观遗传修饰在近亲繁殖衰退中的独特作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/170f/8397266/4a7b642d516c/abg5442-F1.jpg

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