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Apical constriction: a cell shape change that can drive morphogenesis.

机译:根尖收缩:可驱动形态发生的细胞形状变化。

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Biologists have long recognized that dramatic bending of a cell sheet may be driven by even modest shrinking of the apical sides of cells. Cell shape changes and tissue movements like these are at the core of many of the morphogenetic movements that shape animal form during development, driving processes such as gastrulation, tube formation, and neurulation. The mechanisms of such cell shape changes must integrate developmental patterning information in order to spatially and temporally control force production-issues that touch on fundamental aspects of both cell and developmental biology and on birth defects research. How does developmental patterning regulate force-producing mechanisms, and what roles do such mechanisms play in development? Work on apical constriction from multiple systems including Drosophila, Caenorhabditis elegans, sea urchin, Xenopus, chick, and mouse has begun to illuminate these issues. Here, we review this effort to explore the diversity of mechanisms of apical constriction, the diversity of roles that apical constriction plays in development, and the common themes that emerge from comparing systems.
机译:长期以来,生物学家已经认识到,细胞片的剧烈弯曲可能是由细胞顶端的适度收缩引起的。细胞形态变化和组织运动是许多形态发育运动的核心,这些运动在发育,驱动过程(例如胃泌尿,管形成和神经形成)过程中塑造动物的形态。这种细胞形状变化的机制必须整合发育模式信息,以便在空间和时间上控制力产生问题,这些问题涉及细胞和发育生物学的基本方面以及先天缺陷研究。发展模式如何调节产生力的机制,这些机制在发展中起什么作用?来自果蝇,秀丽隐杆线虫,海胆,爪蟾,小鸡和小鼠等多个系统的根尖收缩工作已开始阐明这些问题。在这里,我们回顾这项工作,以探索根尖收缩机制的多样性,根尖收缩在发展中所扮演角色的多样性以及比较系统中出现的共同主题。

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