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Regionalized tissue fluidization is required for epithelial gap closure during insect gastrulation

机译:在昆虫腐化期间,在虫胶间隙闭合需要区域化的组织流化

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Many animal embryos pull and close an epithelial sheet around the ellipsoidal egg surface during a gastrulation process known as epiboly. The ovoidal geometry dictates that the epithelial sheet first expands and subsequently compacts. Moreover, the spreading epithelium is mechanically stressed and this stress needs to be released. Here we show that during extraembryonic tissue (serosa) epiboly in the insect Tribolium castaneum, the non-proliferative serosa becomes regionalized into a solid-like dorsal region with larger non-rearranging cells, and a more fluid-like ventral region surrounding the leading edge with smaller cells undergoing intercalations. Our results suggest that a heterogeneous actomyosin cable contributes to the fluidization of the leading edge by driving sequential eviction and intercalation of individual cells away from the serosa margin. Since this developmental solution utilized during epiboly resembles the mechanism of wound healing, we propose actomyosin cable-driven local tissue fluidization as a conserved morphogenetic module for closure of epithelial gaps. The mechanics of embryonic tissue spreading over spherical eggs is not fully understood. Here, the authors show that during gastrulation in the red flour beetle, extraembryonic tissue epiboly is facilitated by local actomyosin-mediated fluidization of the tissue at the leading edge.
机译:许多动物胚胎在燃烧过程中围绕椭圆形卵表面覆盖并闭上壳体卵表面,称为钝化剂。卵形几何形状决定了上皮片首先膨胀并随后压缩。此外,将扩散上皮机械强调,并且需要释放这种应力。在这里,我们认为,在昆虫呋喃氨基葡萄球菌中的特征组织(血清酸)中聚合物中,非增殖性血清体变成了具有较大的非重排细胞的固体背部区域,以及围绕前缘的更流体状的腹部区域。具有较小的细胞正在进行嵌入。我们的研究结果表明,通过驱动序列驱动和移植来自浆状体余量的单个细胞的闭合来促进外均相的肌动素电缆。由于在替身期间使用的这种发育解决方案类似于伤口愈合的机制,因此我们提出了Actomyosin电缆驱动的局部组织流化作为保守的形态发生模块,用于闭合上皮间隙。不完全理解球形卵胚胎组织的机制。在这里,作者表明,在红面粉甲虫中的腐殖过程中,通过局部Actomyosin介导的组织在前缘的局部肌动素介导的流化促进了超结晶组织切除。

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