Chick midgut morphogenesis.

Tyler R Huycke, Clifford J Tabin
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引用次数: 21

Abstract

The gastrointestinal tract is an essential system of organs required for nutrient absorption. As a simple tube early in development, the primitive gut is patterned along its anterior-posterior axis into discrete compartments with unique morphologies relevant to their functions in the digestive process. These morphologies are acquired gradually through development as the gut is patterned by tissue interactions, both molecular and mechanical in nature, involving all three germ layers. With a focus on midgut morphogenesis, we review work in the chick embryo demonstrating how these molecular signals and mechanical forces sculpt the developing gut tube into its mature form. In particular, we highlight two mechanisms by which the midgut increases its absorptive surface area: looping and villification. Additionally, we review the differentiation and patterning of the intestinal mesoderm into the layers of smooth muscle that mechanically drive peristalsis and the villification process itself. Where relevant, we discuss the mechanisms of chick midgut morphogenesis in the context of experimental data from other model systems.

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鸡中肠形态发生。
胃肠道是营养吸收所必需的重要器官系统。作为发育早期的一个简单的管,原始肠道沿着其前后轴排列成离散的室室,具有独特的形态,与其在消化过程中的功能相关。这些形态是在发育过程中逐渐获得的,因为肠道是由组织相互作用形成的,包括分子和机械性质的相互作用,涉及所有三个胚层。以中肠形态发生为重点,我们回顾了在鸡胚胎中的工作,展示了这些分子信号和机械力如何将发育中的肠管塑造成成熟的形式。我们特别强调了中肠增加吸收表面积的两种机制:环化和绒毛化。此外,我们回顾了肠中胚层向平滑肌层的分化和模式,平滑肌层机械地驱动肠蠕动和绒毛化过程本身。在相关的情况下,我们在其他模型系统的实验数据的背景下讨论了鸡中肠形态发生的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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