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人工激活兔卵的超微结构分析。

Ultrastructural analysis of artificially activated rabbit eggs.

作者信息

Longo F J

出版信息

J Exp Zool. 1975 Apr;192(1):87-111. doi: 10.1002/jez.1401920111.

Abstract

Ultrastructural investigations have been carried out on parthenogenetic rabbit eggs in an effort to elucidate events occurring during artificial activation and their similarity to processes of fertilization and embryogenesis. Rabbit eggs were artificially activated by culturing at 10 degrees C for 24 hours followed by incubation at 37 degrees C for 2 to 24 hours. Examination of eggs immediately after incubation at 10 degrees C for 24 hours indicates that activation is initiated when the chromosomes coalesce to form a reticulum which is either surrounded completely by two parallel membranes or incompletely by cisternae of smooth endoplasmic reticulum. Aggregation of the chromosomes occurs as a result of a reduction in the number of microtubules making up the meiotic spindle. When cold treated ova are subsequently incubated at 37 degrees C a nucleus is formed which moves central where it may participate in the cleavage of the egg. Formation of a second polar body and release of the contents of the cortical granules as reported for inseminated eggs was not found to be a part of activation of the egg by cold treatment. Approximately 95% of the ova cultured at 10 degrees C for 24 hours followed by 37 degrees C for 12 hours were activated, i.e., they possessed a nucleus or they had cleaved. Many of the activated eggs cultured for short periods at 37 degrees C were structurally similar to fertilized ova, with further incubation fragmented eggs and abnormal multicellular stages predominated.

摘要

已对孤雌生殖的兔卵进行了超微结构研究,以阐明人工激活过程中发生的事件及其与受精和胚胎发生过程的相似性。兔卵通过在10℃培养24小时,然后在37℃孵育2至24小时进行人工激活。在10℃培养24小时后立即检查卵,结果表明,当染色体合并形成网状结构时激活开始,该网状结构要么被两个平行膜完全包围,要么被光滑内质网的潴泡不完全包围。染色体的聚集是由于构成减数分裂纺锤体的微管数量减少所致。当冷处理的卵子随后在37℃孵育时,会形成一个细胞核,该细胞核移至中央,可能参与卵子的分裂。对于受精的卵子所报道的第二极体的形成和皮质颗粒内容物的释放,并未发现是冷处理激活卵子的一部分。约95%在10℃培养24小时然后在37℃培养12小时的卵子被激活,即它们具有一个细胞核或已经分裂。许多在37℃短期培养的激活卵子在结构上与受精卵相似,进一步孵育后,破碎的卵子和异常的多细胞阶段占主导。

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