首页> 美国卫生研究院文献>Genes Development >The EXCESS MICROSPOROCYTES1 gene encodes a putative leucine-rich repeat receptor protein kinase that controls somatic and reproductive cell fates in the Arabidopsis anther
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The EXCESS MICROSPOROCYTES1 gene encodes a putative leucine-rich repeat receptor protein kinase that controls somatic and reproductive cell fates in the Arabidopsis anther

机译:EXCESS MICROSPOROCYTES1基因编码一个假定的富含亮氨酸的重复受体蛋白激酶该激酶控制拟南芥花药中的体细胞和生殖细胞命运

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摘要

Cell differentiation is essential for the development of multicellular organisms. In flowering plants, the haploid male gametophytes (pollen grains) are generated in the anther from reproductive cells called microsporocytes. Several types of somatic cells ensure successful pollen development, and thus reproduction. However, it is not clear what genes regulate the differentiation of these diverse, highly specialized cells in the anther. We report here the isolation and characterization of a novel Arabidopsis thaliana male sterile mutant, excess microsporocytes1 (ems1), that produces excess microsporocytes, lacks tapetal cells, and abnormally maintains middle layer cells. Although the meiotic nuclear division in the ems1 mutant is normal, the microsporocytes do not undergo cytokinesis, resulting in failed microsporogenesis and male sterility. The EMS1 gene encodes a putative leucine-rich repeat receptor protein kinase (LRR-RPK), and its expression is associated with the differentiation of the microsporocytes and tapetal cells, suggesting that EMS1 mediates signals that control the fate of reproductive cells and their contiguous somatic cells.
机译:细胞分化对于多细胞生物的发展至关重要。在开花植物中,花药中的单倍体雄配子体(花粉粒)由称为微孢子细胞的生殖细胞产生。几种类型的体细胞确保成功的花粉发育,从而繁殖。然而,尚不清楚什么基因调控花药中这些多样的高度专业化细胞的分化。我们在这里报告的分离和特征的新型拟南芥雄性不育突变体,多余的微孢子细胞1(ems1),产生多余的微孢子细胞,缺乏绒毛细胞,并异常维护中层细胞。尽管ems1突变体中的减数分裂核分裂是正常的,但微孢子细胞不会进行胞质分裂,导致微孢子发生失败和雄性不育。 EMS1基因编码一种假定的富含亮氨酸的重复受体蛋白激酶(LRR-RPK),其表达与微孢子细胞和绒毡层细胞的分化有关,这表明EMS1介导了控制生殖细胞及其连续体命运的信号。细胞。

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