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斑马鱼原肠胚形成过程中的细胞运动和细胞命运

Cell movements and cell fate during zebrafish gastrulation.

作者信息

Ho R K

机构信息

Institute of Neuroscience, University of Oregon, Eugene, OR 97403.

出版信息

Dev Suppl. 1992:65-73.

PMID:1299369
Abstract

The early lineages of the zebrafish are indeterminate and a single cell labeled before the late blastula period will contribute progeny to a variety of tissues. Therefore, early cell lineages in the zebrafish do not establish future cell fates and early blastomeres must necessarily remain pluripotent. Eventually, after a period of random cell mixing, individual cells do become tissue restricted according to their later position within the blastoderm. The elucidation of a fate map for the zebrafish gastrula (Kimmel et al., 1990), has made it possible to study the processes by which cellular identity is conferred and maintained in the zebrafish. In this chapter, I describe single cell transplantation experiments designed to test for the irreversible restriction or 'commitment' of embryonic blastomeres in the zebrafish embryo. These experiments support the hypothesis that cell fate in the vertebrate embryo is determined by cell position. Work on the spadetail mutation will also be reviewed; this mutation causes a subset of mesodermal precursors to mismigrate during gastrulation thereby leading to a change in their eventual cell identity.

摘要

斑马鱼的早期谱系是不确定的,在囊胚晚期之前标记的单个细胞将为多种组织贡献后代。因此,斑马鱼的早期细胞谱系不会确立未来的细胞命运,早期的卵裂球必然保持多能性。最终,经过一段时间的随机细胞混合后,单个细胞会根据它们在胚盘内的后期位置而受到组织限制。斑马鱼原肠胚命运图谱的阐明(Kimmel等人,1990年),使得研究斑马鱼中细胞身份被赋予和维持的过程成为可能。在本章中,我描述了单细胞移植实验,旨在测试斑马鱼胚胎中胚胎卵裂球的不可逆限制或“定型”。这些实验支持了脊椎动物胚胎中的细胞命运由细胞位置决定的假说。还将回顾对spadetail突变的研究;这种突变会导致一部分中胚层前体细胞在原肠胚形成过程中迁移错误,从而导致它们最终的细胞身份发生变化。

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