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The male gamete membrane protein DMP9/DAU2 is required for double fertilization in flowering plants

机译:雄性配子膜蛋白DMP9 / DAU2是开花植物中的双重施肥所必需的

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All flowering plants exhibit a unique type of sexual reproduction called 'double fertilization' in which each pollen tube-delivered sperm cell fuses with an egg and a central cell. Proteins that localize to the plasma membrane of gametes regulate one-to-one gamete pairing and fusion between male and female gametes for successful double fertilization. Here, we have identified a membrane protein from Lilium longiflorum generative cells using proteomic analysis and have found that the protein is an ortholog of Arabidopsis DUF679 DOMAIN MEMBRANE PROTEIN 9 (DMP9)/DUO1-ACTIVATED UNKNOWN 2 (DAU2). The flowering plant DMP9 proteins analyzed in this study were predicted to have four transmembrane domains and be specifically expressed in both generative and sperm cells. Knockdown of DMP9 resulted in aborted seeds due to single fertilization of the central cell. Detailed imaging of DMP9-knockdown sperm cells during in vivo and semi-in vitro double fertilization revealed that DMP9 is involved in gamete interaction that leads to correct double fertilization.
机译:所有开花植物都表现出独特的性繁殖类型,称为“双施肥”,其中每种花粉管输送的精子细胞融合用鸡蛋和中央细胞。定位于配子浆膜的血浆膜的蛋白质调节一对一的雄性配对和融合,用于成功双重施肥。在这里,我们使用蛋白质组学分析鉴定了来自百合生成细胞的膜蛋白,并发现蛋白质是拟南芥Duf679结构域蛋白质9(DMP9)/ Duo1激活的​​未知2(DAU2)的原子蛋白。预计在该研究中分析的开花植物DMP9蛋白质具有四个跨膜结构域,并在生成和精子细胞中具体表达。 DMP9的敲低导致中央细胞单施肥引起的中产阶级。在体内和半体外施肥期间DMP9敲低精子细胞的详细成像显示DMP9参与配子相互作用,导致正确双重施肥。

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