Control of female gamete formation by a small RNA pathway in Arabidopsis

生物 配子 胚珠 Piwi相互作用RNA 遗传学 卵细胞 拟南芥 体细胞 配子发生 阿尔戈瑙特 细胞生物学 减数分裂 RNA干扰 核糖核酸 基因 突变体 细胞 胚胎 精子 胚胎发生
作者
Vianey Olmedo-Monfil,Noé Durán-Figueroa,Mario Arteaga-Vázquez,Edgar Demesa-Arévalo,Daphné Autran,Daniel Grimanelli,R. Keith Slotkin,Robert A. Martienssen,Jean‐Philippe Vielle‐Calzada
出处
期刊:Nature [Springer Nature]
卷期号:464 (7288): 628-632 被引量:508
标识
DOI:10.1038/nature08828
摘要

In the ovules of most sexual flowering plants female gametogenesis is initiated from a single surviving gametic cell, the functional megaspore, formed after meiosis of the somatically derived megaspore mother cell (MMC). Because some mutants and certain sexual species exhibit more than one MMC, and many others are able to form gametes without meiosis (by apomixis), it has been suggested that somatic cells in the ovule are competent to respond to a local signal likely to have an important function in determination. Here we show that the Arabidopsis protein ARGONAUTE 9 (AGO9) controls female gamete formation by restricting the specification of gametophyte precursors in a dosage-dependent, non-cell-autonomous manner. Mutations in AGO9 lead to the differentiation of multiple gametic cells that are able to initiate gametogenesis. The AGO9 protein is not expressed in the gamete lineage; instead, it is expressed in cytoplasmic foci of somatic companion cells. Mutations in SUPPRESSOR OF GENE SILENCING 3 and RNA-DEPENDENT RNA POLYMERASE 6 exhibit an identical defect to ago9 mutants, indicating that the movement of small RNA (sRNAs) silencing out of somatic companion cells is necessary for controlling the specification of gametic cells. AGO9 preferentially interacts with 24-nucleotide sRNAs derived from transposable elements (TEs), and its activity is necessary to silence TEs in female gametes and their accessory cells. Our results show that AGO9-dependent sRNA silencing is crucial to specify cell fate in the Arabidopsis ovule, and that epigenetic reprogramming in companion cells is necessary for sRNA-dependent silencing in plant gametes.

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