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两栖类卵子的亚细胞成分:重力研究提供的见解

Subcellular components of the amphibian egg: insights provided by gravitational studies.

作者信息

Neff A W, Ritzenthaler J D, Rosenbaum J F

机构信息

Medical Sciences Program, Indiana University School of Medicine, Bloomington 47405.

出版信息

Adv Space Res. 1989;9(11):177-86. doi: 10.1016/0273-1177(89)90072-0.

Abstract

Most cytoplasmic regions of fertilized amphibian eggs move with respect to the gravity vector in experimentally gravity oriented eggs. The pattern and extent of this movement varies among different batches of eggs. This variation in apparent cytoplasmic viscosity (or, conversely, cytoplasmic mobility) can be correlated with variations in subsequent morphogenesis of experimental, gravitationally manipulated eggs. Therefore, the proper interpretation of gravity experiments with amphibian eggs requires that one understand the subcellular basis for this variation on cytoplasmic mobility. Variation in the packing of the major cytoplasmic organelle, the yolk platelets, or the organization and amount of cytoskeletal components may explain the variation in cytoplasmic mobility. Evidence is presented that the variation in yolk volume density (fraction of total cytoplasmic volume occupied by yolk platelets) does not account for the variation in cytoplasmic mobility in Xenopus laevis eggs. Experimental evidence from cold-shocked inverted eggs indicates that microtubules may be involved in determining cytoplasmic mobility. However, quantitative evidence that the microtubule levels and state of the microtubules (polymerized vs. non-polymerized) in the whole Xenopus laevis egg does not correlate directly with cytoplasmic mobility is presented. The apparent conflict these data represent regarding the role of the cytoskeleton in determining cytoplasmic mobility is discussed.

摘要

在经过实验性重力定向的蛙卵中,大多数受精卵的细胞质区域会相对于重力矢量移动。这种移动的模式和程度在不同批次的卵之间有所不同。这种明显的细胞质粘度变化(或者相反,细胞质流动性变化)可能与实验性重力操纵卵的后续形态发生变化相关。因此,要正确解释蛙卵重力实验,就需要了解细胞质流动性这种变化的亚细胞基础。主要细胞质细胞器——卵黄小板的堆积变化,或者细胞骨架成分的组织和数量变化,可能解释了细胞质流动性的变化。有证据表明,非洲爪蟾卵中卵黄体积密度(卵黄小板占总细胞质体积的比例)的变化并不能解释细胞质流动性的变化。来自冷休克倒置卵的实验证据表明,微管可能参与了细胞质流动性的决定。然而,文中给出了定量证据,表明整个非洲爪蟾卵中的微管水平和微管状态(聚合态与非聚合态)与细胞质流动性并无直接关联。文中讨论了这些数据在细胞骨架决定细胞质流动性作用方面所呈现出的明显矛盾。

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