表观遗传修饰为异源多倍体甘蓝型油菜转座因子的基因捕获提供了新的机会

IF 8.7 1区 农林科学 Q1 Agricultural and Biological Sciences
Yafang Xiao, Mengdi Li, Jianbo Wang
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引用次数: 0

摘要

多倍体在植物中广泛存在,是进化和生物多样性的重要驱动力。异源多倍体激活转座因子(te)并引起基因组休克。植物基因组可以通过改变TEs的表观遗传修饰来调控基因表达,但TEs捕获基因的机制仍有待探索。Helitron TEs使用“剥离-粘贴”机制来实现基因捕获。在甘蓝型油菜中鉴定出3156个Helitron TEs捕获事件和326个供体基因。TEs捕获的供体基因与其外显子的数量、长度和位置有关。携带供体基因片段的基因捕获te均匀分布在基因组上,其中一半以上参与了假基因的构建,成为多倍体进化的后备力量。基因片段复制增强了信息存储,为基因突变和新基因的形成提供了机会。同时,靶向TEs的siRNA可能由于siRNA串扰作用于供体基因,基因甲基化水平升高,表达水平降低。基因组在牺牲供体基因表达和沉默te之间寻求平衡,使te隐藏在基因组中。此外,表观遗传修饰可能暂时放松对异源多倍体过程中基因捕获的控制。本研究对甘蓝型油菜的基因捕获事件进行了鉴定和表征,分析了DNA甲基化和siRNA对基因捕获事件的影响,探讨了TEs表观遗传修饰对甘蓝型油菜异源多倍体过程中基因表达的调控机制,有助于理解甘蓝型油菜异源多倍体的形成和进化机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic modification brings new opportunities for gene capture by transposable elements in allopolyploid Brassica napus
Polyploids are widespread in plants and are important drivers for evolution and biodiversity. Allopolyploidy activates transposable elements (TEs) and causes genomic shock. Plant genomes can regulate gene expression by changing the epigenetic modification of TEs, but the mechanism for TEs to capture genes remains to be explored. Helitron TEs used the “peel-and-paste” mechanism to achieve gene capture. We identified 3,156 capture events and 326 donor genes of Helitron TEs in Brassica napus (AnAnCnCn). The donor genes captured by TEs were related to the number, length and location of their exons. The gene-capturing TEs carrying donor gene fragments were evenly distributed on the genome, and more than half of them were involved in the construction of pseudogenes, becoming the reserve force for polyploid evolution. Gene fragment copies enhanced information storage, providing opportunities for gene mutation and the formation of new genes. Simultaneously, the siRNAs targeting TEs may act on the donor genes due to siRNA crosstalk, and the gene methylation levels increased and the expression levels decreased. The genome sought a balance between sacrificing donor gene expression and silencing TEs, allowing TEs to hide in the genome. In addition, epigenetic modifications may temporarily relax the control of gene capture during allopolyploidization. Our study identified and characterized gene capture events in B. napus, analyzed the effects of DNA methylation and siRNA on gene capture events, and explored the regulation mechanism of gene expression by TEs epigenetic modification during allopolyploidization, which will contribute to understanding the formation and evolution mechanism of allopolyploidy.
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来源期刊
Horticulture Research
Horticulture Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
11.20
自引率
6.90%
发文量
367
审稿时长
20 weeks
期刊介绍: Horticulture Research, an open access journal affiliated with Nanjing Agricultural University, has achieved the prestigious ranking of number one in the Horticulture category of the Journal Citation Reports ™ from Clarivate, 2022. As a leading publication in the field, the journal is dedicated to disseminating original research articles, comprehensive reviews, insightful perspectives, thought-provoking comments, and valuable correspondence articles and letters to the editor. Its scope encompasses all vital aspects of horticultural plants and disciplines, such as biotechnology, breeding, cellular and molecular biology, evolution, genetics, inter-species interactions, physiology, and the origination and domestication of crops.
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