SKIP通过拟南芥选择性剪接调控ABA信号。

Qi Zhang, Wei Zhang, Jianbo Wei, Zhaoxu Gao, Jianing Guan, Zhibo Cui, Xiaoxue Wang
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引用次数: 2

摘要

脱落酸(ABA)在植物发育和对非生物胁迫的响应中起着关键作用。大量的ABA信号的转录和翻译后调控机制是已知的;然而,人们对选择性剪接的调控作用知之甚少。在这项工作中,我们发现剪接因子SKIP正调控ABA信号。SKIP与ABA信号相关基因PYL7、PYL8、ABI1、HAB1和ABI5的pre-mRNA结合,调控其剪接。几种PYL受体、PP2C磷酸酶和ABF转录因子的前体mRNA选择性剪接被skip-1突变破坏。skip-1中异常的选择性剪接抑制了ABA阳性调节因子(包括pyl和abf)的表达,并激活了ABA阴性调节因子(如pp2c)的表达,从而导致skip-1的ABA低敏表型。我们还发现,aba介导的全基因组选择性剪接和差异基因表达被skip-1突变改变。差异剪接事件的数量增加了skip-1;然而,与ABA相关的差异表达基因数量因skip-1而减少。我们的研究结果揭示了剪接因子如何调节ABA信号和ABA介导的全基因组选择性剪接的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SKIP Regulates ABA Signaling through Alternative Splicing in Arabidopsis.

Abscisic acid (ABA) plays key roles in plant development and responses to abiotic stresses. A wide number of transcriptional and posttranslational regulatory mechanisms of ABA signaling are known; however, less is known about the regulatory roles of alternative splicing. In this work, we found that SKIP, a splicing factor, positively regulates ABA signaling. SKIP binds to the pre-mRNA of ABA signaling-related genes, such as PYL7, PYL8, ABI1, HAB1 and ABI5, to regulate their splicing. The precursor mRNA alternative splicing of several PYL receptors, PP2C phosphatases and ABF transcriptional factors is disrupted by the skip-1 mutation. The abnormal alternative splicing in skip-1 represses the expression of ABA-positive regulators, including PYLs and ABFs, and activates the expression of ABA-negative regulators, such as PP2Cs, which confers ABA hyposensitive phenotype of skip-1. We also found that ABA-mediated genome-wide alternative splicing and differential gene expression are changed by the skip-1 mutation. The number of the differential splicing events is increased by skip-1; however, the number of differential expressed genes in response to ABA is reduced by skip-1. Our results reveal a principle on how a splicing factor regulates ABA signaling and ABA-mediated genome-wide alternative splicing.

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