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对拟南芥HUA - PEP基因活性的剖析表明,胚珠命运的决定需要限制花的A功能。

Dissection of the Arabidopsis HUA-PEP gene activity reveals that ovule fate specification requires restriction of the floral A-function.

作者信息

Rodríguez-Cazorla Encarnación, Ripoll Juan-José, Ortuño-Miquel Samanta, Martínez-Laborda Antonio, Vera Antonio

机构信息

Area de Genética, Universidad Miguel Hernández, Campus de Sant Joan, Alicante, 03550, Spain.

Division of Biological Sciences, Section of Cell and Developmental Biology, University of California San Diego, La Jolla, CA, 92093, USA.

出版信息

New Phytol. 2020 Aug;227(4):1222-1234. doi: 10.1111/nph.16589. Epub 2020 May 8.

Abstract

Ovules are essential for sexual plant reproduction and seed formation, and are fundamental for agriculture. However, our understanding of the molecular mechanisms governing ovule development is far from complete. In Arabidopsis, ovule identity is determined by homeotic MADS-domain proteins that define the floral C- (AG) and D- (SHP1/SHP2, STK) functions. Pre-mRNA processing of these genes is critical and mediated by HUA-PEP activity, composed of genes encoding RNA-binding proteins. In strong hua-pep mutants, functional transcripts for C- and D-function genes are reduced, resulting in homeotic transformation of ovules. Thus, hua-pep mutants provide an unique sensitized background to study ovule morphogenesis when C- and D-functions are simultaneously compromised. We found that hua-pep ovules are morphologically sepaloid and show ectopic expression of the homeotic class-A gene AP1. Inactivation of AP1 or AP2 (A-function genes) in hua-pep mutants reduced homeotic conversions, rescuing ovule identity while promoting carpelloid traits in transformed ovules. Interestingly, increased AG dosage led to similar results. Our findings strongly suggest that HUA-PEP activity is required for correct C and D floral functions, which in turn prevents ectopic expression of class-A genes in ovules for their proper morphogenesis, evoking the classic A-C antagonism of the ABC model for floral organ development.

摘要

胚珠对于植物有性繁殖和种子形成至关重要,对农业也具有根本性意义。然而,我们对胚珠发育调控分子机制的理解还远未完善。在拟南芥中,胚珠特性由同源异型MADS结构域蛋白决定,这些蛋白定义了花的C功能(AG)和D功能(SHP1/SHP2、STK)。这些基因的前体mRNA加工至关重要,由编码RNA结合蛋白的基因组成的HUA-PEP活性介导。在强hua-pep突变体中,C功能和D功能基因的功能性转录本减少,导致胚珠的同源异型转化。因此,当C功能和D功能同时受损时,hua-pep突变体为研究胚珠形态发生提供了一个独特的敏感背景。我们发现hua-pep胚珠在形态上呈萼片状,并显示出同源异型A类基因AP1的异位表达。在hua-pep突变体中使AP1或AP2(A功能基因)失活可减少同源异型转化,挽救胚珠特性,同时促进转化胚珠中的心皮状性状。有趣的是,增加AG剂量也产生了类似结果。我们的研究结果强烈表明,HUA-PEP活性对于正确的花C功能和D功能是必需的,这反过来又可防止胚珠中A类基因的异位表达以实现其正常形态发生,这唤起了花器官发育ABC模型中经典的A-C拮抗作用。

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