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沙钱(Scaphechinus mirabilis)原肠胚形成的细胞胚胎学研究。

A cyto-embryological study of gastrulation in the sand dollar, Scaphechinus mirabilis.

作者信息

Kominami Tetsuya, Masui Mizuko

机构信息

Department of Biology, Faculty of Science, Ehime University, Matsuyama 790, Japan.

出版信息

Dev Growth Differ. 1996 Apr;38(2):129-139. doi: 10.1046/j.1440-169X.1996.t01-1-00002.x.

Abstract

Processes of gastrulation in the sand dollar Scaphechinus mirabilis were compared with those in the sea urchin Hemicentrotus pulcherrimus, which seemed to show a typical pattern of gastrulation. Measurement of the archenteron length clearly demonstrated that invagination processes in H. pulcherrimus are divided into two phases, the primary and secondary invagination. On the other hand, invagination in S. mirabilis was revealed to continue at a constant rate. To see the movement of cells during gastrulation, embryos were labeled with Nile blue. In H. pulcherrimus embryos, labeled cells were observed along the full length of the archenteron, if the embryos had been labeled before and during the primary invagination. Labeled cells were never observed in the embryos stained after the primary invagination. In contrast, labeled cells were always discerned at the basal part of the archenteron in S. mirabilis, even if the embryos were stained after invagination had undergone considerable progress. The number of cells in the archenteron of S. mirabilis embryos increased with the advancement of gastrulation, while the numbers were almost constant in H. pulcherrimus. These results suggest that the cellular basis of gastrulation in S. mirabilis is quite different from that in well-known species of sea urchins.

摘要

将饼海胆(Scaphechinus mirabilis)的原肠胚形成过程与海胆(Hemicentrotus pulcherrimus)的原肠胚形成过程进行了比较,后者似乎呈现出典型的原肠胚形成模式。对原肠长度的测量清楚地表明,海胆的内陷过程分为两个阶段,即初级内陷和次级内陷。另一方面,发现饼海胆的内陷以恒定速率持续进行。为了观察原肠胚形成过程中细胞的运动,用尼罗蓝对胚胎进行了标记。在海胆胚胎中,如果在初级内陷之前和期间对胚胎进行标记,沿着原肠的全长都能观察到标记细胞。在初级内陷之后染色的胚胎中从未观察到标记细胞。相比之下,即使在饼海胆的内陷已经有了相当大的进展之后对胚胎进行染色,在原肠的基部总能辨别出标记细胞。随着原肠胚形成的推进,饼海胆胚胎原肠中的细胞数量增加,而海胆中的细胞数量几乎保持不变。这些结果表明,饼海胆原肠胚形成的细胞基础与著名的海胆物种有很大不同。

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