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Surface Microdeformations and Regulation of Cell Movements in Xenopus Development

机译:爪蟾发育中的表面微变形和细胞运动的调控

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摘要

The velocities and directions of movements of individual outer ectodermal cells of Xenopus embryos in the course of normal development from the blastula to the early tail-bud stage, as well as after mechanical relaxation in the early gastrula, were measured. An alternation of the periods of directed movements of large cell masses and local cell wanderings was detected. In both cases, the trajectories of individual cells consisted primarily of orthogonal segments. Cell movements were measured on two scales. At a small-scale consideration (time intervals of the order of several hours and distances of the order of tens of microns), fairly slight linear stretching and compressive deformations were detected, which looked like gentle smooth gradients along which the upward morphogenetic movements of cells were directed. At a large-scale consideration (time intervals of the order of tens of minutes and distances of the order of microns), quasi-periodic fluctuations of velocities of individual cells partly correlated in time were found. The differences between these velocities generated microdeformations, which reached several tens of percent and developed within time intervals not more than 10 min. Measurements of relative magnitudes of mechanical forces influencing the cell walls suggests that microdeformations generate local stretching and compressive deformations modulating smoother tension gradients.
机译:在从囊胚到尾巴早期阶段正常发育的过程中,以及在早期胃下机械松弛后,测量了非洲爪蟾胚胎的单个外胚层外胚层细胞的速度和运动方向。检测到大细胞团定向运动和局部细胞游荡的周期交替。在这两种情况下,单个细胞的轨迹主要由正交片段组成。细胞运动在两个尺度上测量。在小规模的考虑(几小时量级的时间间隔和几十微米量级的距离)下,检测到相当轻微的线性拉伸和压缩变形,看起来像是缓和的平滑梯度,沿着该梯度存在着细胞的向上形态发生运动被指挥。在大规模考虑下(数十分钟量级的时间间隔和微米量级的距离),发现了时间上部分相关的单个细胞速度的准周期波动。这些速度之间的差异产生了微变形,微变形达到百分之几十并且在不超过10分钟的时间间隔内发展。测量影响细胞壁的机械力的相对大小表明,微变形会产生局部拉伸和压缩变形,从而调制更平滑的张力梯度。

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