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Natural variation in embryo mechanics: gastrulation in Xenopus laevis is highly robust to variation in tissue stiffness

机译:胚胎力学的自然变化:非洲爪蟾的胃形成对组织硬度的变化非常有力

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摘要

How sensitive is morphogenesis to the mechanical properties of embryos? To estimate an upper bound on the sensitivity of early morphogenetic movements to tissue mechanical properties, we assessed natural variability in the apparent stiffness among gastrula-stage Xenopus laevis embryos. We adapted micro-aspiration methods to make repeated, non-destructive measurements of apparent tissue stiffness in whole embryos. Stiffness varied by close to a factor of 2 among embryos within a single clutch. Variation between clutches was of similar magnitude. On the other hand, the direction of change in stiffness over the course of gastrulation was the same in all embryos and in all clutches. Neither pH nor salinity – two environmental factors we predicted could affect variability in nature – affected tissue stiffness. Our results indicate that gastrulation in X. laevis is robust to at least two-fold variation in tissue stiffness.
机译:形态发生对胚胎的机械特性有多敏感?为了估计早期形态发生运动对组织机械特性的敏感性的上限,我们评估了胃形阶段非洲爪蟾胚胎表观硬度的自然变异性。我们采用了微抽吸方法,对整个胚胎的表观组织刚度进行了重复的,非破坏性的测量。单个离合器中的胚胎之间的刚度变化接近2倍。离合器之间的变化幅度相似。另一方面,在整个胚化过程中,刚度变化的方向在所有胚胎和所有离合器中都相同。 pH值和盐度(我们预测的两个环境因素都不会影响自然变异)不会影响组织的硬度。我们的结果表明,X。laevis中的胃形成对组织刚度的至少两倍变化具有鲁棒性。

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