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首页> 外文期刊>Development >Actomyosin contraction of the posterior hemisphere is required for inversion of the Volvox embryo.
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Actomyosin contraction of the posterior hemisphere is required for inversion of the Volvox embryo.

机译:Volvox胚胎的倒置需要后半球的肌动球蛋白收缩。

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摘要

During inversion of a Volvox embryo, a series of cell shape changes causes the multicellular sheet to bend outward, and propagation of the bend from the anterior to the posterior pole eventually results in an inside-out spherical sheet of cells. We use fluorescent and electron microscopy to study the behavior of the cytoskeleton in cells undergoing shape changes. Microtubules are aligned parallel to the cell's long axis and become elongated in the bend. Myosin and actin filaments are arrayed perinuclearly before inversion. In inversion, actin and myosin are located in a subnuclear position throughout the uninverted region but this localization is gradually lost towards the bend. Actomyosin inhibitors cause enlargement of the embryo. The bend propagation is inhibited halfway and, as a consequence, the posterior hemisphere remains uninverted. The arrested posterior hemisphere will resume and complete inversion even in the presence of an actomyosin inhibitor if the anterior hemisphere is removed microsurgically. We conclude that the principal role of actomyosin in inversion is to cause a compaction of the posterior hemisphere; unless the equatorial diameter of the embryo is reduced in this manner, it is too large to pass through the opening defined by the already-inverted anterior hemisphere.
机译:在Volvox胚胎倒置过程中,一系列细胞形状变化导致多细胞片向外弯曲,并且弯曲从前极到后极的传播最终导致细胞内向外球形。我们使用荧光和电子显微镜研究细胞骨架在形状变化过程中的行为。微管平行于细胞的长轴排列,并在弯曲处变长。转化前,肌球蛋白和肌动蛋白丝排列在核周。在反演中,肌动蛋白和肌球蛋白位于整个非反演区域的亚核位置,但是这种定位在弯曲处逐渐消失。肌动球蛋白抑制剂引起胚胎增大。弯曲传播被中途抑制,结果,后半球保持不倒转。如果通过手术切除前半球,即使在存在放线菌素抑制剂的情况下,被逮捕的后半球也将恢复并完成内翻。我们得出结论,肌动球蛋白在反演中的主要作用是引起后半球的压实。除非以这种方式减小胚胎的赤道直径,否则它太大而无法穿过已经倒置的前半球所限定的开口。

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