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拟南芥中前体 mRNA 加工介导的胚珠身份。

Ovule identity mediated by pre-mRNA processing in Arabidopsis.

机构信息

Área de Genética, Universidad Miguel Hernández, Campus de Sant Joan d'Alacant, Sant Joan d'Alacant, Alicante, Spain.

Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, Elche, Alicante, Spain.

出版信息

PLoS Genet. 2018 Jan 12;14(1):e1007182. doi: 10.1371/journal.pgen.1007182. eCollection 2018 Jan.

Abstract

Ovules are fundamental for plant reproduction and crop yield as they are the precursors of seeds. Therefore, ovule specification is a critical developmental program. In Arabidopsis thaliana, ovule identity is redundantly conferred by the homeotic D-class genes SHATTERPROOF1 (SHP1), SHP2 and SEEDSTICK (STK), phylogenetically related to the MADS-domain regulatory gene AGAMOUS (AG), essential in floral organ specification. Previous studies have shown that the HUA-PEP activity, comprised of a suite of RNA-binding protein (RBP) encoding genes, regulates AG pre-mRNA processing and thus flower patterning and organ identity. Here, we report that the HUA-PEP activity additionally governs ovule morphogenesis. Accordingly, in severe hua-pep backgrounds ovules transform into flower organ-like structures. These homeotic transformations are most likely due to the dramatic reduction in SHP1, SHP2 and STK activity. Our molecular and genome-wide profiling strategies revealed the accumulation of prematurely terminated transcripts of D-class genes in hua-pep mutants and reduced amounts of their respective functional messengers, which points to pre-mRNA processing misregulation as the origin of the ovule developmental defects in such backgrounds. RNA processing and transcription are coordinated by the RNA polymerase II (RNAPII) carboxyl-terminal domain (CTD). Our results show that HUA-PEP activity members can interact with the CTD regulator C-TERMINAL DOMAIN PHOSPHATASE-LIKE1 (CPL1), supporting a co-transcriptional mode of action for the HUA-PEP activity. Our findings expand the portfolio of reproductive developmental programs in which HUA-PEP activity participates, and further substantiates the importance of RNA regulatory mechanisms (pre-mRNA co-transcriptional regulation) for correct gene expression during plant morphogenesis.

摘要

胚珠是植物繁殖和作物产量的基础,因为它们是种子的前体。因此,胚珠的特化是一个关键的发育程序。在拟南芥中,胚珠的身份是由同源异型 D 类基因 SHATTERPROOF1 (SHP1)、SHP2 和 SEEDSTICK (STK) 冗余赋予的,这些基因与花器官特化所必需的 MADS 结构域调控基因 AGAMOUS (AG) 具有系统发育关系。以前的研究表明,HUA-PEP 活性由一套 RNA 结合蛋白 (RBP) 编码基因组成,调节 AG 前体 mRNA 的加工,从而调节花的模式和器官的身份。在这里,我们报告 HUA-PEP 活性还控制着胚珠的形态发生。因此,在严重的 hua-pep 背景下,胚珠转变为花器官样结构。这些同源异型转化很可能是由于 SHP1、SHP2 和 STK 活性的显著降低所致。我们的分子和全基因组分析策略揭示了 hua-pep 突变体中 D 类基因的过早终止转录本的积累,以及它们各自功能信使的减少,这表明 pre-mRNA 加工调控失常是这种背景下胚珠发育缺陷的起源。RNA 加工和转录由 RNA 聚合酶 II (RNAPII) 羧基末端结构域 (CTD) 协调。我们的结果表明,HUA-PEP 活性成员可以与 CTD 调节剂 C-TERMINAL DOMAIN PHOSPHATASE-LIKE1 (CPL1) 相互作用,支持 HUA-PEP 活性的共转录作用模式。我们的发现扩展了 HUA-PEP 活性参与的生殖发育程序的组合,并进一步证实了 RNA 调控机制(pre-mRNA 共转录调控)对于植物形态发生过程中正确基因表达的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b246/5785034/92c5894e8be0/pgen.1007182.g001.jpg

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