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Chapter 12 Coordination of Embryogenesis by the Centrosome in Drosophila melanogaster

机译:第12章中央组织在果蝇黑素礁体中的胚胎发生协调

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The first 3 h of Drosophila melanogaster embryo development are exemplified by rapid nuclear divisions within a large syncytium, transforming the zygote to the cellular blastoderm after 13 successive cleavage divisions. As the syncytial embryo develops, it relies on centrosomes and cytoskeletal dynamics to transport nuclei, maintain uniform nuclear distribution throughout cleavage cycles, ensure generation of germ cells, and coordinate cellularization. For the sake of this review, we classify six early embryo stages that rely on processes coordinated by the centrosome and its regulation of the cytoskeleton. The first stage features migration of one of the female pronuclei toward the male pronucleus following maturation of the first embryonic centrosomes. Two subsequent stages distribute the nuclei first axially and then radially in the embryo. The remaining three stages involve centrosome-actin dynamics that control cortical plasma membrane morphogenesis. In this review, we highlight the dynamics of the centrosome and its role in controlling the six stages that culminate in the cellularization of the blastoderm embryo.
机译:果蝇的前3小时是果蝇胚胎发育的综合发展典先征在于大型合胞内的快速核电片,在连续13个裂解分裂后将对细胞胚泡转化为细胞胚泡。随着Syncytial Embryo的发展,它依赖于用于运输核的CentroSomes和细胞骨骼动力学,在整个切割循环中保持均匀的核分布,确保生殖细胞和坐标细胞化。为此审查,我们分类了六个早期胚胎阶段,依赖于由中心体协调的过程及其对细胞骨架的调节。在第一个胚胎中心的成熟后,第一阶段朝向雄性原核的迁移到雄性原核。两个后续阶段首先将核轴向分布,然后在胚胎中径向分布。其余三个阶段涉及控制皮质血浆膜形态发生的Centroosome-Actin动态。在这篇综述中,我们突出了中心体组的动态及其在控制血对于胚乳胚胎细胞化中的六个阶段的作用。

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