微管蛋白折叠辅助因子B (ZmTFCB)基因的表观遗传突变抑制玉米籽粒发育。

Yingmei Guo, Yan Chen, Jie Zhang, Jiankun Li, Kaijian Fan, Rongrong Chen, Yunjun Liu, Jun Zheng, Junjie Fu, Riliang Gu, Guoying Wang, Yu Cui, Xuemei Du, Jianhua Wang
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摘要

表观等位基因是一种非由DNA序列变化引起的可遗传表观遗传变异,可以拓宽遗传和表型多样性,有利于作物育种,但在玉米中发现的与农业性状相关的表观等位基因很少。在这里,我们从玉米中克隆了一个小的核突变体smk-wl10,该突变体编码微管蛋白折叠辅助因子B (ZmTFCB)蛋白。在smk-wl10突变体中,ZmTFCB基因的表达减少,阻碍了胚、胚乳和胚乳转移层的发育。ZmTFCB的过表达可以弥补smk-wl10的缺陷表型。smk-wl10与野生型(WT)之间未发现ZmTFCB的核苷酸序列差异。相反,我们在smk-wl10中检测到与WT相比,ZmTFCB上游序列的核苷酸CHG(其中H是A, C或T核苷酸)序列背景高甲基化,并且组蛋白H3K9me2甲基化水平升高,这可能与ZmTFCB的转录减弱有关。此外,酵母双杂交和双分子荧光互补实验发现ZmTFCB与其同源物ZmTFCE之间存在强相互作用。因此,我们的工作鉴定了玉米ZmTFCB基因的一个新的表观等位基因,这可能代表了玉米重要性状(如玉米籽粒发育)表观遗传调控的一种常见现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic Mutation in a Tubulin-Folding Cofactor B (ZmTFCB) Gene Arrests Kernel Development in Maize.

Epialleles, the heritable epigenetic variants that are not caused by changes in DNA sequences, can broaden genetic and phenotypic diversity and benefit to crop breeding, but very few epialleles related to agricultural traits have been identified in maize. Here, we cloned a small kernel mutant, smk-wl10, from maize, which encoded a tubulin-folding cofactor B (ZmTFCB) protein. Expression of the ZmTFCB gene decreased in the smk-wl10 mutant, which arrested embryo, endosperm and basal endosperm transfer layer developments. Overexpression of ZmTFCB could complement the defective phenotype of smk-wl10. No nucleotide sequence variation in ZmTFCB could be found between smk-wl10 and wild type (WT). Instead, we detected hypermethylation of nucleotide CHG (where H is A, C or T nucleotide) sequence contexts and increased level of histone H3K9me2 methylation in the upstream sequence of ZmTFCB in smk-wl10 compared with WT, which might respond to the attenuating transcription of ZmTFCB. In addition, yeast two-hybrid and bimolecular fluorescence complementation assays identified a strong interaction between ZmTFCB and its homolog ZmTFCE. Thus, our work identifies a novel epiallele of the maize ZmTFCB gene, which might represent a common phenomenon in the epigenetic regulation of important traits such as kernel development in maize.

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