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Control of plant germline proliferation by SCF~(FBL17) degradation of cell cycle inhibitors

机译:SCF〜(FBL17)降解细胞周期抑制剂对植物种系增殖的控制

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Flowering plants possess a unique reproductive strategy, involving double fertilization by twin sperm cells1. Unlike animal germ lines, the male germ cell lineage in plants only forms after meiosis and involves asymmetric division of haploid microspores, to produce a large, non-germline vegetative cell and a germ cell that undergoes one further division to produce the twin sperm cells2. Although this switch in cell cycle control is critical for sperm cell production and delivery, the underlying molecular mechanisms are unknown. Here we identify a novel F-box protein of Arabidopsis thaliana, designated FBL17 (F-box-like 17), that enables this switch by targeting the degradation of cyclin-dependent kinase A;l inhibitors specifically in male germ cells. We show that FBL17 is transiently expressed in the male germ line after asymmetric division and forms an SKPl-Cullinl-F-box protein (SCF) E3 ubiquitin ligase complex (SCF~(FBL17)) that targets the cyclin-dependent kinase inhibitors KRP6 and KRP7 for proteasome-dependent degradation. Accordingly, the loss of FBL17 function leads to the stabilization of KRP6 and inhibition of germ cell cycle progression. Our results identify SCF~(FBL17) as an essential male germ cell proliferation complex that promotes twin sperm cell production and double fertilization in flowering plants.
机译:开花植物具有独特的繁殖策略,涉及双精子细胞双受精1。与动物生殖系不同,植物中的雄性生殖细胞谱系仅在减数分裂后形成,并涉及单倍体小孢子的不对称分裂,以产生大的非生殖系营养细胞,而生殖细胞经过进一步分裂后产生双生精子细胞2。尽管细胞周期控制中的这种转换对于精子细胞的产生和传递至关重要,但潜在的分子机制尚不清楚。在这里,我们确定了拟南芥的一种新的F-box蛋白,称为FBL17(F-box-like 17),该蛋白通过靶向雄性生殖细胞中细胞周期蛋白依赖性激酶A; 1抑制剂的降解而实现了这一转换。我们显示,FBL17在雄性种系不对称分裂后瞬时表达,并形成靶向细胞周期蛋白依赖性激酶抑制剂KRP6和KF1-Cullinl-F-box蛋白(SCF)E3泛素连接酶复合物(SCF〜(FBL17))。 KRP7用于蛋白酶体依赖性降解。因此,FBL17功能的丧失导致KRP6的稳定和生殖细胞周期进程的抑制。我们的研究结果确定SCF〜(FBL17)是一种必需的雄性生殖细胞增殖复合物,可促进开花植物中双精子细胞的产生和双重受精。

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