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Segment and cell type lineage restrictions during pharyngeal arch development in the zebrafish embryo

生物 神经嵴 菱形 解剖 斑马鱼 命运图 颅神经嵴 神经上皮细胞 电池类型 细胞生物学 外胚层 形态发生 近轴中胚层 鳃弓 中胚层 胚胎干细胞 胚胎 干细胞 祖细胞 胚胎发生 细胞 遗传学 神经干细胞 Hox基因 基因 转录因子
作者
Thomas F. Schilling,Charles B. Kimmel
出处
期刊:Development [The Company of Biologists]
卷期号:120 (3): 483-494 被引量:489
标识
DOI:10.1242/dev.120.3.483
摘要

ABSTRACT In zebrafish, the segmental series of pharyngeal arches is formed predominantly by two migratory cell types, neural crest and paraxial mesoderm, which arise in the early embryo. Neural crest cells migrate ventrally out of the neuroepithelium and into the arches to form cartilage, neurons, glia and pigment cells. Surrounding mesoderm generates muscles and endothelia. We labeled individual pharyngeal precursor cells with fluorescent dyes and found that their clonal progeny were confined to single segments and generated single cell types. When a neural crest or mesodermal cell was marked before migration into the pharynx, its progeny dispersed but generally remained confined to a single arch primordium. Such segmental restrictions arose first in the most rostral arches, mandibular and hyoid, and progressed caudally. The phenotypes of progeny generated by single cells were examined in the mandibular arch. Clones derived from premigratory neural crest cells generally did not contribute to more than one cell type. Further, the progenitors of some cell types were spatially separated in the premigratory crest. In particular, neurogenic crest cells were situated further laterally than cells that generate cartilage and connective tissues, while pigment and glial cell progenitors were more evenly distributed. Based on these results we suggest that arch precursors may be specified as to their eventual fates before the major morphogenetic movements that form the arch primordia. Further, cell movements are restricted during segmentation establishing a group of arch precursors as a unit of developmental patterning, as in the fashion of vertebrate rhombomeres or segmental lineage compartments in Drosophila.
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