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Large, long range tensile forces drive convergence during Xenopus blastopore closure and body axis elongation

机译:大型长距离拉力在非洲爪蟾孢子囊闭合和体轴伸长过程中驱动会聚

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摘要

Indirect evidence suggests that blastopore closure during gastrulation of anamniotes, including amphibians such as Xenopus laevis, depends on circumblastoporal convergence forces generated by the marginal zone (MZ), but direct evidence is lacking. We show that explanted MZs generate tensile convergence forces up to 1.5 μN during gastrulation and over 4 μN thereafter. These forces are generated by convergent thickening (CT) until the midgastrula and increasingly by convergent extension (CE) thereafter. Explants from ventralized embryos, which lack tissues expressing CE but close their blastopores, produce up to 2 μN of tensile force, showing that CT alone generates forces sufficient to close the blastopore. Uniaxial tensile stress relaxation assays show stiffening of mesodermal and ectodermal tissues around the onset of neurulation, potentially enhancing long-range transmission of convergence forces. These results illuminate the mechanobiology of early vertebrate morphogenic mechanisms, aid interpretation of phenotypes, and give insight into the evolution of blastopore closure mechanisms.
机译:间接证据表明,在包括两栖动物(如非洲爪蟾)在内的羊膜动物的胃化过程中,囊胚孔的闭合取决于边缘区(MZ)产生的成胚周融合力,但缺乏直接的证据。我们显示外植的MZs在气化过程中产生高达1.5μN的拉伸会聚力,此后超过4μN。这些力是通过会聚增厚(CT)直至胃中部而产生的,此后会逐渐通过会聚扩展(CE)产生。腹侧胚胎的外植体缺乏表达CE的组织,但封闭了它们的胚孔,可产生高达2μN的拉力,表明CT本身产生的力足以闭合胚孔。单轴拉伸应力松弛试验显示,在神经开始发作时中胚层和外胚层组织变硬,可能会增强会聚力的远距离传递。这些结果阐明了早期脊椎动物形态发生机制的力学生物学特性,有助于表型的解释,并提供了对胚孔封闭机制演变的见解。

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