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甘蓝型油菜六倍体与其双亲间选择性剪接分歧的全基因组分析。

Genome-wide analysis of alternative splicing divergences between Brassica hexaploid and its parents.

机构信息

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, China.

National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Planta. 2019 Aug;250(2):603-628. doi: 10.1007/s00425-019-03198-z. Epub 2019 May 28.

Abstract

Compared with its parents, Brassica hexaploid underwent significant AS changes, which may provide diversified gene expression regulation patterns and could enhance its adaptability during evolution Polyploidization is considered a significant evolution force that promotes species formation. Alternative splicing (AS) plays a crucial role in multiple biological processes during plant growth and development. To explore the effects of allopolyploidization on the AS patterns of genes, a genome-wide AS analysis was performed by RNA-seq in Brassica hexaploid and its parents. In total, we found 7913 (27540 AS events), 14447 (70179 AS events), and 13205 (60804 AS events) AS genes in Brassica rapa, Brassica carinata, and Brassica hexaploid, respectively. A total of 920 new AS genes were discovered in Brassica hexaploid. There were 56 differently spliced genes between Brassica hexaploid and its parents. In addition, most of the alternative 5' splice sites were located 4 bp upstream of the dominant 5' splice sites, and most of the alternative 3' splice sites were located 3 bp downstream of the dominant 3' splice sites in Brassica hexapliod, which was similar to B. carinata. Furthermore, we cloned and sequenced all amplicons from the RT-PCR products of GRP7/8, namely, Bol045859, Bol016025 and Bol02880. The three genes were found to produce AS transcripts in a new way. The AS patterns of genes were diverse between Brassica hexaploid and its parents, including the loss and gain of AS events. Allopolyploidization changed alternative splicing sites of pre-mRNAs in Brassica hexaploid, which brought about alterations in the sequences of transcripts. Our study provided novel insights into the AS patterns of genes in allopolyploid plants, which may provide a reference for the study of polyploidy adaptability.

摘要

与双亲相比,六倍体 Brassica 经历了显著的 AS 变化,这可能提供了多样化的基因表达调控模式,并增强了其在进化过程中的适应性。多倍化被认为是促进物种形成的重要进化力量。可变剪接 (AS) 在植物生长和发育的多个生物学过程中起着至关重要的作用。为了探讨异源多倍化对基因 AS 模式的影响,我们通过 RNA-seq 对六倍体 Brassica 及其双亲进行了全基因组 AS 分析。总共,我们在 Brassica rapa、Brassica carinata 和 Brassica hexaploid 中分别发现了 7913 个(27540 个 AS 事件)、14447 个(70179 个 AS 事件)和 13205 个(60804 个 AS 事件)AS 基因。在 Brassica hexaploid 中发现了 920 个新的 AS 基因。在 Brassica hexaploid 和其双亲之间有 56 个差异剪接基因。此外,在 Brassica hexapliod 中,大多数替代 5'剪接位点位于主导 5'剪接位点上游 4bp,大多数替代 3'剪接位点位于主导 3'剪接位点下游 3bp,这与 Brassica carinata 相似。此外,我们克隆并测序了从 RT-PCR 产物 GRP7/8 的所有扩增子,即 Bol045859、Bol016025 和 Bol02880。发现这三个基因以一种新的方式产生 AS 转录本。基因的 AS 模式在六倍体 Brassica 和其双亲之间是多样的,包括 AS 事件的丢失和获得。异源多倍化改变了 Brassica hexaploid 中前体 mRNA 的可变剪接位点,导致转录物序列发生改变。我们的研究为异源多倍体植物基因的 AS 模式提供了新的见解,这可能为多倍体适应性的研究提供参考。

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