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Ooplasmic segregation in the zebrafish zygote and early embryo: Pattern of ooplasmic movements and transport pathways

机译:斑马鱼合子和早期胚胎的卵质分离:卵质运动和运输途径的模式。

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摘要

Patterns of cytoplasmic movements and organization of transport pathways were examined in live or fixed zygotes and early zebrafish embryos using a variety of techniques. The zygote blastodisc grows by accumulation of ooplasm, transported to the animal pole from distinct sectors of ecto- and endoplasm at different speeds and developmental periods, using specific pathways or streamers. Slow transport (5 μm/min) occurs during the first interphase along short streamers, whereas fast transport (9.6–40 μm/min) takes place during the first cleavage division along axial and meridional streamers. Interconnections between streamers allow cargoes to change their speed and final destination. A similar sequence of events occurs during the following divisions. A complex network of microtubules and actin filaments in the endo- and ectoplasm appears to be involved in the transport of inclusions and mRNAs. Actin-dependent intermittent pulsations provoked high-speed back-and-forth movements of cytoplasm that may contribute to redistribution of organelles and maternal determinants. Developmental Dynamics 239:2172–2189, 2010. ? 2010 Wiley-Liss, Inc.
机译:使用各种技术,在活的或固定的受精卵和早期斑马鱼胚胎中检查了细胞质运动的模式和运输途径的组织。合子胚盘通过卵母质的积累而生长,并通过特定的途径或流光以不同的速度和发育时期从胞外和内质的不同部分转运至动物极。在第一个相间,沿短拖缆发生缓慢的运输(5μm/ min),而在沿轴向和经向拖缆的第一个分裂分裂期间发生快速的运输(9.6–40μm/ min)。拖缆之间的互连允许货物改变速度和最终目的地。在以下划分期间发生了类似的事件序列。内质和外质中微管和肌动蛋白丝的复杂网络似乎与内含物和mRNA的运输有关。肌动蛋白依赖性间歇性脉动引起细胞质的高速来回运动,这可能有助于细胞器和母体决定簇的重新分布。发展动态239:2172–2189,2010年。 2010 Wiley-Liss,Inc.

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