Origin and organization of the zebrafish fate map

生物 胚层 外代谢 原肠化 囊胚 命运图 胚胎发生中的极性 斑马鱼 细胞生物学 胚胎 细胞命运测定 形态发生 胚芽层 胚胎干细胞 解剖 胚胎发生 囊胚腔 遗传学 祖细胞 干细胞 基因 诱导多能干细胞 转录因子
作者
Charles B. Kimmel,Rachel M. Warga,Thomas F. Schilling
出处
期刊:Development [The Company of Biologists]
卷期号:108 (4): 581-594 被引量:700
标识
DOI:10.1242/dev.108.4.581
摘要

Abstract We have analyzed lineages of cells labeled by intracellular injection of tracer dye during early zebrafish development to learn when cells become allocated to particular fates during development, and how the fate map is organized. The earliest lineage restriction was described previously, and segregates the yolk cell from the blastoderm in the midblastula. After one or two more cell divisions, the lineages of epithelial enveloping layer (EVL) cells become restricted to generate exclusively periderm. Following an additional division in the late blastula, deep layer (DEL) cells generate clones that are restricted to single deep embryonic tissues. The appearance of both the EVL and DEL restrictions could be causally linked to blastoderm morphogenesis during epiboly. A fate map emerges as the DEL cell lineages become restricted in the late blastula. It is similar in organization to that of an amphibian embryo. DEL cells located near the animal pole of the early gastrula give rise to ectodermal fates (including the definitive epidermis). Cells located near the blastoderm margin give rise to mesodermal and endodermal fates. Dorsal cells in the gastrula form dorsal and anterior structures in the embryo, and ventral cells in the gastrula form dorsal, ventral and posterior structures. The exact locations of progenitors of single cell types and of local regions of the embryo cannot be mapped at the stages we examined, because of variable cell rearrangements during gastrulation.

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