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两栖类胚胎原肠胚形成的研究:非洲爪蟾胚胎原肠胚形成过程中的细胞运动。

Studies on the gastrulation of amphibian embryos: Cell movement during gastrulation inXenopus laevis embryos.

作者信息

Nakatzuji Norio

机构信息

Department of Zoology, Faculty of Science, University of Kyoto, Sakyo-ku, 606, Kyoto, Japan.

出版信息

Wilehm Roux Arch Dev Biol. 1975 Mar;178(1):1-14. doi: 10.1007/BF00848358.

Abstract

In order to investigate the movement of cells during gastrulation inXenopus laevis embryos, mid-sagittal 1 μm Epon sections were made from the embryos, the stages of which were characterised numerically. Montage photographs were prepared from these sections. Cells in the section were classified into four groups according to sizes of the yolk platelets contained, and the distribution of cells belonging to each group was indicated in the montage photographs. Using such photographs, mean velocities were calculated for the movement of each cell group and the elongation of the archenteron. During the initial period of gastrulation, the groove of the archenteron deepened slowly (ca. 1 μm/min). When the blastopore became semi-circular, cells of the presumptive foregut endoderm, prechordal plate and mesoderm began to move toward the animal pole along the inner surface of the blastocoelic wall at the rate of about 6 μm/min. The archenteron elongated parallel to the inner surface of the blastocoelic wall at the rate of 9 μm/min. In the ventral part, the elongation of the archenteron and movement of the cell groups were slower than in the dorsal part. Cells taking part in the movement were loosely packed and were seen to form pseudopodia.

摘要

为了研究非洲爪蟾胚胎原肠胚形成过程中细胞的运动,制作了胚胎的矢状面1μm厚的环氧树脂切片,胚胎发育阶段用数字表示。从这些切片制备了拼接照片。根据所含卵黄小板的大小将切片中的细胞分为四组,并在拼接照片中显示每组细胞的分布。利用这些照片,计算了每个细胞组的运动速度和原肠的伸长速度。在原肠胚形成的初期,原肠沟缓慢加深(约1μm/分钟)。当胚孔变成半圆形时,预定前肠内胚层、脊索前板和中胚层的细胞开始以约6μm/分钟的速度沿着囊胚腔壁的内表面向动物极移动。原肠沿着囊胚腔壁的内表面以9μm/分钟的速度伸长。在腹侧部分,原肠的伸长和细胞组的运动比背侧部分慢。参与运动的细胞排列松散,可见形成伪足。

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