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回转器旋转对两栖类受精卵模式形成的影响。

Influence of clinostat rotation on fertilized amphibian egg pattern specification.

作者信息

Neff A W, Smith R C, Chung H M, Malacinski G M

机构信息

Medical Sciences Program, Indiana University, Bloomington 47405, USA.

出版信息

Physiologist. 1984;27(6 Suppl):S139-40.

Abstract

Pattern specification in fertile Xenopus eggs rotated on horizontal clinostats was monitored with respect to primary embryonic axis formation, subsequent morphogenesis, and compartmentalization of the cytoplasm. At the speeds of 1 to 24 rpm (which are believed to simulate microgravity) a large percentage of eggs developed normal axial structures. Eggs clinostated at 12 rpm showed a randomization of dorsal/ventral polarity. The cytoplasmic compartments showed some clinostat effects but no abnormal mixing, disruption or dislocation of compartments. It is predicted that Xenopus eggs fertilized and allowed to develop in space will retain normal cytoplasmic density compartments, establish primary axes and undergo normal morphogenesis in space. Their dorsal/ventral polarity may not, however be determined by the sperm entrance site (as is the case for 1g eggs).

摘要

关于原肠胚轴形成、后续形态发生以及细胞质区室化,对在水平回转器上旋转的非洲爪蟾可育卵中的模式规范进行了监测。在1至24转/分钟的速度下(据信这模拟了微重力),很大比例的卵发育出正常的轴结构。以12转/分钟进行回转处理的卵显示出背/腹极性的随机化。细胞质区室表现出一些回转器效应,但没有区室的异常混合、破坏或错位。预计在太空中受精并发育的非洲爪蟾卵将保留正常的细胞质密度区室,建立原肠胚轴并在太空中经历正常的形态发生。然而,它们的背/腹极性可能不由精子进入位点决定(与1g重力条件下的卵情况相同)。

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