The miRNA822 loaded by ARGONAUTE9 modulates the monosporic female gametogenesis in Arabidopsis thaliana.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-06-01 Epub Date: 2023-11-29 DOI:10.1007/s00497-023-00487-2
Andrea Tovar-Aguilar, Daniel Grimanelli, Gerardo Acosta-García, Jean-Philippe Vielle-Calzada, Jesús Agustín Badillo-Corona, Noé Durán-Figueroa
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Abstract

Key message: The miR822 together with of AGO9 protein, modulates monosporic development in Arabidopsis thaliana through the regulation of target genes encoding Cysteine/Histidine-Rich C1 domain proteins, revealing a new role of miRNAs in the control of megaspore formation in flowering plants. In the ovule of flowering plants, the establishment of the haploid generation occurs when a somatic cell differentiates into a megaspore mother cell (MMC) and initiates meiosis. As most flowering plants, Arabidopsis thaliana (Arabidopsis) undergoes a monosporic type of gametogenesis as three meiotically derived cells degenerate, and a single one-the functional megaspore (FM), divides mitotically to form the female gametophyte. The genetic basis and molecular mechanisms that control monosporic gametophyte development remain largely unknown. Here, we show that Arabidopsis plants carrying loss-of-function mutations in the miR822, give rise to extranumerary surviving megaspores that acquire a FM identity and divides without giving rise to differentiated female gametophytes. The overexpression of three miR822 putative target genes encoding cysteine/histidine-rich C1 (DC1) domain proteins, At5g02350, At5g02330 and At2g13900 results in defects equivalent to those found in mutant mir822 plants. The three miR822 targets genes are overexpressed in ago9 mutant ovules, suggesting that miR822 acts through an AGO9-dependent pathway to negatively regulate DC1 domain proteins and restricts the survival of meiotically derived cells to a single megaspore. Our results identify a mechanism mediated by the AGO9-miR822 complex that modulates monosporic female gametogenesis in Arabidopsis thaliana.

Abstract Image

ARGONAUTE9负载miRNA822调控拟南芥单孢子雌性配子发生。
关键信息:miR822与AGO9蛋白共同调控拟南芥单孢子发育,通过调控编码半胱氨酸/组氨酸富集C1结构域蛋白的靶基因,揭示了mirna在开花植物大孢子形成调控中的新作用。在开花植物的胚珠中,当体细胞分化为大孢子母细胞(MMC)并开始减数分裂时,单倍体世代的建立就发生了。与大多数开花植物一样,拟南芥(拟南芥)经历单孢子型配子体发生,即三个减数分裂衍生的细胞退化,一个单一的功能大孢子(FM)有丝分裂形成雌性配子体。控制单孢子配子体发育的遗传基础和分子机制在很大程度上仍然未知。在这里,我们发现携带miR822功能缺失突变的拟南芥植株会产生子囊外存活的大孢子,这些大孢子获得FM身份并在不产生分化的雌性配子体的情况下进行分裂。编码半胱氨酸/组氨酸丰富的C1 (DC1)结构域蛋白At5g02350、At5g02330和At2g13900的三个miR822假定靶基因的过表达导致了与miR822突变株相当的缺陷。这三个miR822靶基因在ago9突变胚珠中过表达,表明miR822通过ago9依赖途径负调控DC1结构域蛋白,并将减数分裂衍生细胞的存活限制在单个大孢子中。我们的研究结果确定了AGO9-miR822复合物介导拟南芥单孢子雌性配子体发生的机制。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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