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鸟类原肠胚形成过程中组织流动和胚胎形态的调控

Control of tissue flows and embryo geometry in avian gastrulation.

作者信息

Serrano Nájera Guillermo, Plum Alex M, Steventon Ben, Weijer Cornelis J, Serra Mattia

机构信息

Department of Genetics, University of Cambridge, Cambridge, UK.

Department of Physics, University of California, San Diego, CA, USA.

出版信息

Nat Commun. 2025 Jun 4;16(1):5174. doi: 10.1038/s41467-025-60249-8.

Abstract

Embryonic tissues undergo coordinated flows during avian gastrulation to establish the body plan. Here, we elucidate how the interplay between embryonic and extraembryonic tissues affects the chick embryo's size and shape. These two distinct geometric changes are each associated with dynamic curves across which trajectories separate (kinematic repellers). Through physical modeling and experimental manipulations of both embryonic and extraembryonic tissues, we selectively eliminate either or both repellers in model and experiments, revealing their mechanistic origins. We find that embryo size is affected by the competition between extraembryonic epiboly and embryonic myosin-driven contraction-which persists when mesoderm induction is blocked. Instead, the characteristic shape change from circular to pear-shaped arises from myosin-driven cell intercalations in the mesendoderm, irrespective of epiboly. These findings elucidate modular mechanisms controlling avian gastrulation flows and provide a mechanistic basis for the independent control of embryo size and shape during development.

摘要

在鸟类原肠胚形成过程中,胚胎组织经历协调流动以建立身体结构。在此,我们阐明胚胎组织和胚外组织之间的相互作用如何影响鸡胚的大小和形状。这两种不同的几何变化分别与动态曲线相关,沿着这些曲线轨迹分离(运动排斥物)。通过对胚胎组织和胚外组织进行物理建模和实验操作,我们在模型和实验中选择性地消除一个或两个排斥物,揭示它们的机制起源。我们发现胚胎大小受胚外外包和胚胎肌球蛋白驱动的收缩之间的竞争影响——当中胚层诱导被阻断时这种竞争依然存在。相反,从圆形到梨形的特征性形状变化源于中内胚层中肌球蛋白驱动的细胞插入,与外包无关。这些发现阐明了控制鸟类原肠胚形成流动的模块化机制,并为发育过程中胚胎大小和形状的独立控制提供了机制基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c2e/12137940/7b7e31dbe94b/41467_2025_60249_Fig1_HTML.jpg

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