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在海洋虾类巨大扁虾早期发育过程中,细胞间关联引导有丝分裂纺锤体定向。

Cell-cell association directed mitotic spindle orientation in the early development of the marine shrimp Sicyonia ingentis.

作者信息

Wang S W, Griffin F J, Clark W H

机构信息

Bodega Marine Laboratory, University of California, Davis, Bodega Bay 94923, USA.

出版信息

Development. 1997 Feb;124(4):773-80. doi: 10.1242/dev.124.4.773.

Abstract

During early cleavages of Sicyonia ingentis embryos, mitotic spindle orientations differ between blastomeres and change in a predictable manner with each successive mitosis. From 2nd through 7th cleavages, spindles orient at a 90 degrees angle with respect to the spindle of the parent blastomere. Thus, spindle orientation is parallel to the cleavage plane that formed the blastomere. To determine if specific spindle orientations were intrinsic properties of individual blastomeres, we altered blastomere associations and asked how mitotic spindle orientation was affected in successive cleavages using laser scanning confocal microscopy. Linear embryos were constructed by dissociating 4-cell embryos and recombining the blastomeres in a linear array. The ensuing cleavage (3rd embryonic cleavage) of these linear embryos was parallel to the long axis of the embryo, resulting in four parallel pairs of blastomeres which lay in a common plane that was parallel to the substratum. The 4th cleavage produced a linear embryo with the 16 blastomeres arranged in four parallel quartets. Then, in preparation for 5th cleavage, spindles oriented at a 45 degrees angle (not parallel as in normal development) with respect to the previous cleavage plane. When 8-cell linear embryos were separated into linear half-embryos, subsequent spindle orientations were not like those observed for intact 8-cell linear embryos, but rather regressed to the orientation seen in 4-cell linear embryos. We suggest that the reorientation of mitotic spindles during early cleavage of S. ingentis is neither an intrinsic property nor age dependent, but rather is cell contact related. Further, these results in conjunction with observations of non-manipulated embryos suggest that spindle poles (centrosomes) avoid cytoplasmic regions adjacent to where there is cell-cell contact during early development.

摘要

在巨大扁虾胚胎的早期卵裂过程中,卵裂球之间有丝分裂纺锤体的方向不同,并且随着每次连续的有丝分裂以可预测的方式变化。从第二次到第七次卵裂,纺锤体相对于亲代卵裂球的纺锤体以90度角定向。因此,纺锤体方向与形成卵裂球的卵裂平面平行。为了确定特定的纺锤体方向是否是单个卵裂球的固有特性,我们改变了卵裂球的组合,并使用激光扫描共聚焦显微镜询问在连续卵裂中有丝分裂纺锤体方向是如何受到影响的。通过解离四细胞胚胎并将卵裂球以线性阵列重新组合来构建线性胚胎。这些线性胚胎随后的卵裂(第三次胚胎卵裂)与胚胎的长轴平行,产生了四对平行的卵裂球,它们位于与基质平行的共同平面中。第四次卵裂产生了一个线性胚胎,其中16个卵裂球排列成四个平行的四分体。然后,在准备进行第五次卵裂时,纺锤体相对于前一个卵裂平面以45度角定向(不像正常发育那样平行)。当八细胞线性胚胎被分离成线性半胚胎时,随后的纺锤体方向不像在完整的八细胞线性胚胎中观察到的那样,而是退回到在四细胞线性胚胎中看到的方向。我们认为,巨大扁虾早期卵裂过程中有丝分裂纺锤体的重新定向既不是固有特性也不依赖于年龄,而是与细胞接触有关。此外,这些结果与对未操作胚胎的观察结果相结合表明,纺锤极(中心体)在早期发育过程中会避开与细胞 - 细胞接触部位相邻的细胞质区域。

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