Cardiovascular development in the zebrafish I. Myocardial fate map and heart tube formation

生物 原肠化 囊胚 心脏发育 解剖 体节 胚胎心脏 心室 斑马鱼 中庭(建筑) 胚胎 命运图 内科学 细胞生物学 胚胎干细胞 胚胎发生 祖细胞 干细胞 遗传学 医学 基因 心房颤动
作者
Didier Y. R. Stainier,Robert K. Lee,Mark C. Fishman
出处
期刊:Development [The Company of Biologists]
卷期号:119 (1): 31-40 被引量:379
标识
DOI:10.1242/dev.119.1.31
摘要

ABSTRACT We have analyzed the origin of cardiac progenitors in the zebrafish embryo by injection of single blastomeres with a lineage tracer dye, and examined the formation of the zebrafish heart tube by serial sectioning of immunostained embryos. At the 512-cell stage (early blastula), most cardiac progenitors lie in a marginal zone that extends from 90° longitude (midway between the future dorsal and ventral axis) through 180° longitude (the future ventral axis) to 270° longitude. By focusing on myocardial progenitors located at 90° (and 270°) longitude, we found that a single cell injected in the early blastula can contribute progeny to both the atrium and ventricle. A cell injected in the midblastula contributes progeny to either the atrium or ventricle, but not both. This analysis suggests that, at least for these myocardial progenitors, the atrial and ventricular lineages separate in the midblastula. Precardiac cells involute early during gastrulation and turn towards the animal pole with other early involuting cells. These cardiogenic cells reach the embryonic axis around the 8-somite stage, and there they coalesce to form a pair of myocardial tubular primordia on either side of the midline. By the 21-somite stage, the tropomyosin-immunoreactive myocardial tubes have moved closer to each other, and a distinct group of cells, the endocardial progenitor cells, sits medially between them. The myocardial tubes then fuse to enclose the endocardial cells and form the definitive heart tube. By 22 hours postfertilization (26-somite stage), the heart tube is clearly beating. The regionalization of cardiac myosin heavy chain expression distinguishes the cardiac chambers at this stage, although they are not morpho-logically delineated until 36 hours. This work shows that cardiogenic regions can be identified in the early blastula, and that chamber restriction seems to arise in the midblastula. Additionally, it provides the basis for embryological perturbation at the single cell level, as well as for the genetic analysis of heart tube formation in the zebrafish.

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