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细长的微绒毛在卵周隙内同心地支撑海胆胚胎直至孵化。

Elongated microvilli support the sea urchin embryo concentrically within the perivitelline space until hatching.

作者信息

Spiegel Evelyn, Howard Louisa, Spiegel Melvin

机构信息

Department of Biological Sciences, Dartmouth College, 03755, Hanover, NH, USA.

Marine Biological Laboratory, 02543, Woods Hole, MA, USA.

出版信息

Rouxs Arch Dev Biol. 1989 Jun;198(2):85-91. doi: 10.1007/BF02447743.

Abstract

The early sea urchin embryo is supported in a concentric position within the perivitelline space by elongated microvilli which are attached to the fertilization envelope by extracellular matrix fibers. This "attachment complex," of microvillus tip: extracellular matrix fibers: fertilization envelope, was revealed by two methods: the use of pronase or calcium-free sea water to dissolve the extracellular matrix fibers, thus causing the eggs to lose their concentric location, and the visualization of the "attachment complex" using video-enhanced differential interference contrast microscopy and transmission electron microscope images. The presence of the "attachment complex" helps in understanding two types of early developmental events: (1) the apparently continual change in microvillus length during cleavage stages which retains the embryos in their concentric position and (2) the hatching process.

摘要

早期海胆胚胎通过细长的微绒毛在卵周隙内保持同心位置,这些微绒毛通过细胞外基质纤维附着在受精膜上。这种由微绒毛尖端、细胞外基质纤维和受精膜组成的“附着复合体”通过两种方法得以揭示:一是使用链霉蛋白酶或无钙海水溶解细胞外基质纤维,从而使卵失去其同心位置;二是利用视频增强微分干涉对比显微镜和透射电子显微镜图像对“附着复合体”进行可视化观察。“附着复合体”的存在有助于理解两种早期发育事件:(1)在卵裂阶段微绒毛长度明显持续变化,使胚胎保持在同心位置;(2)孵化过程。

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