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种子光诱导萌发过程中的可变剪接调控

Alternative Splicing Regulation During Light-Induced Germination of Seeds.

作者信息

Tognacca Rocío Soledad, Servi Lucas, Hernando Carlos Esteban, Saura-Sanchez Maite, Yanovsky Marcelo Javier, Petrillo Ezequiel, Botto Javier Francisco

机构信息

Consejo Nacional de Investigaciones Científicas y Técnicas, Instituto de Investigaciones Fisiológicas y Ecológicas Vinculadas a la Agricultura (IFEVA), Facultad de Agronomía, Universidad de Buenos Aires, Buenos Aires, Argentina.

Facultad de Ciencias Exactas y Naturales, Departamento de Fisiología, Biología Molecular y Celular and CONICET-UBA, Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE), Universidad de Buenos Aires (UBA), Buenos Aires, Argentina.

出版信息

Front Plant Sci. 2019 Sep 10;10:1076. doi: 10.3389/fpls.2019.01076. eCollection 2019.

Abstract

Seed dormancy and germination are relevant processes for a successful seedling establishment in the field. Light is one of the most important environmental factors involved in the relief of dormancy to promote seed germination. In seeds, phytochrome photoreceptors tightly regulate gene expression at different levels. The contribution of alternative splicing (AS) regulation in the photocontrol of seed germination is still unknown. The aim of this work is to study gene expression modulated by light during germination of seeds, with focus on AS changes. Hence, we evaluated transcriptome-wide changes in stratified seeds irradiated with a pulse of red (Rp) or far-red (FRp) by RNA sequencing (RNA-seq). Our results show that the Rp changes the expression of ∼20% of the transcriptome and modifies the AS pattern of 226 genes associated with mRNA processing, RNA splicing, and mRNA metabolic processes. We further confirmed these effects for some of the affected AS events. Interestingly, the reverse transcriptase-polymerase chain reaction (RT-PCR) analyses show that the Rp modulates the AS of splicing-related factors (, , , and ), a light-signaling component (), and a dormancy-related gene (). Furthermore, while the phytochrome B (phyB) is responsible for the AS pattern changes of and , the regulation of the other AS events is independent of this photoreceptor. We conclude that (i) Rp triggers AS changes in some splicing factors, light-signaling components, and dormancy/germination regulators; (ii) phyB modulates only some of these AS events; and (iii) AS events are regulated by R and FR light, but this regulation is not directly associated with the intensity of germination response. These data will help in boosting research in the splicing field and our understanding about the role of this mechanism during the photocontrol of seed germination.

摘要

种子休眠和萌发是田间成功建立幼苗的相关过程。光是参与解除休眠以促进种子萌发的最重要环境因素之一。在种子中,光敏色素光感受器在不同水平上严格调控基因表达。可变剪接(AS)调控在种子萌发的光控中的作用仍不清楚。这项工作的目的是研究种子萌发过程中受光调节的基因表达,重点是AS变化。因此,我们通过RNA测序(RNA-seq)评估了用红光脉冲(Rp)或远红光脉冲(FRp)照射的分层种子的全转录组变化。我们的结果表明,Rp改变了约20%的转录组表达,并改变了与mRNA加工、RNA剪接和mRNA代谢过程相关的226个基因的AS模式。我们进一步证实了其中一些受影响的AS事件的这些效应。有趣的是,逆转录聚合酶链反应(RT-PCR)分析表明,Rp调节剪接相关因子(、、、和)、一个光信号成分()和一个休眠相关基因()的AS。此外,虽然光敏色素B(phyB)负责和的AS模式变化,但其他AS事件的调控与该光感受器无关。我们得出结论:(i)Rp触发了一些剪接因子、光信号成分以及休眠/萌发调节因子的AS变化;(ii)phyB仅调节其中一些AS事件;(iii)AS事件受红光和远红光调节,但这种调节与萌发反应强度没有直接关联。这些数据将有助于推动剪接领域的研究以及我们对该机制在种子萌发光控过程中作用的理解。

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