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海胆胚胎中初级间充质细胞的迁移:定向线索的分布

Primary mesenchyme cell migration in the sea urchin embryo: distribution of directional cues.

作者信息

Malinda K M, Ettensohn C A

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213.

出版信息

Dev Biol. 1994 Aug;164(2):562-78. doi: 10.1006/dbio.1994.1224.

Abstract

The directional migration of the primary mesenchyme cells (PMCs) of the sea urchin embryo is a critical step in the process of gastrulation. Although interactions between the migrating cells and the blastocoel environment are necessary for guiding the PMCs to their subequatorial target site, the nature of these interactions and the localization of guidance cues involved in directing the cells are not yet known. Previous studies have suggested that PMC migration is the result of random exploration and selective trapping at the target site by a pattern of adhesiveness in the ectoderm or basal lamina. To better characterize the distribution of guidance cues in the blastocoel we used a combination of time-lapse microscopy, microsurgery, and fluorescence photoablation to study the behavior of the migrating cells. By using fluorescence time-lapse microscopy, and a two-dimensional random-walk analysis of cell trajectories, we demonstrated that fluorescently labeled PMCs injected near the animal pole move in a directed fashion over a relatively long distance to reach the target site. This suggests that guidance cues are distributed globally throughout the embryo and are not restricted to the immediate ring area. To further test this hypothesis we investigated the migratory behavior of PMCs that were prevented from interacting directly with the target site. First, we examined the behavior of PMCs injected into animal embryo fragments lacking the target site. We found that PMCs move to the vegetal-most area of such embryo fragments, regardless of their size. Second, we studied the effects of photoablating a stripe of ectoderm between PMCs injected at the animal pole region (APR) and the target site. PMCs were found to accumulate along the ablated stripe and were unable to cross it for up to 6 hr after ablation. We also examined the migratory behavior of endogenous PMCs in embryos treated with lithium, a vegetalizing agent which shifts the position of the PMC ring toward the animal pole. We found that PMCs accumulated along an ablated stripe of ectoderm positioned below the shifted target site, suggesting that endogenous PMCs follow a set of directional cues to the target site which may be similar to those used by PMCs injected into the APR. As a whole, these results suggest that migrating PMCs follow a set of directional cues that are widely distributed throughout the blastocoel and that may be arranged in a gradient.

摘要

海胆胚胎初级间充质细胞(PMC)的定向迁移是原肠胚形成过程中的关键步骤。尽管迁移细胞与囊胚腔环境之间的相互作用对于引导PMC到达其赤道下目标位点是必要的,但这些相互作用的性质以及参与引导细胞的导向线索的定位尚不清楚。先前的研究表明,PMC迁移是随机探索以及外胚层或基膜中粘附模式在目标位点选择性捕获的结果。为了更好地表征囊胚腔中导向线索的分布,我们结合了延时显微镜、显微手术和荧光光消融技术来研究迁移细胞的行为。通过使用荧光延时显微镜以及对细胞轨迹进行二维随机游走分析,我们证明了在动物极附近注射的荧光标记PMC以定向方式移动较长距离以到达目标位点。这表明导向线索在整个胚胎中全局分布,并不局限于紧邻的环形区域。为了进一步验证这一假设,我们研究了被阻止与目标位点直接相互作用的PMC的迁移行为。首先,我们检查了注射到缺乏目标位点的动物胚胎片段中的PMC的行为。我们发现,无论胚胎片段大小如何,PMC都会移动到此类胚胎片段的最植物极区域。其次,我们研究了光消融动物极区域(APR)注射的PMC与目标位点之间的一条外胚层条带的影响。发现PMC沿着消融条带聚集,并且在消融后长达6小时内无法穿过它。我们还检查了用锂处理的胚胎中内源性PMC的迁移行为,锂是一种使植物化的试剂,它会使PMC环的位置向动物极移动。我们发现,PMC沿着位于移位目标位点下方的外胚层消融条带聚集,这表明内源性PMC遵循一组导向线索到达目标位点,这些线索可能与注射到APR中的PMC所使用的线索相似。总体而言,这些结果表明,迁移的PMC遵循一组广泛分布在整个囊胚腔中且可能呈梯度排列的导向线索。

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