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减数分裂时不成对的染色体:配子发生功能不全的原因还是结果?

Unpaired chromosomes at meiosis: cause or effect of gametogenic insufficiency?

作者信息

Mittwoch U, Mahadevaiah S K

机构信息

Department of Anatomy, Queen Mary and Westfield College, London, UK.

出版信息

Cytogenet Cell Genet. 1992;59(4):274-9. doi: 10.1159/000133268.

Abstract

Pairing failure at meiosis has been postulated as a cause of gametogenic arrest in both heterozygous translocation carriers and males whose spermatocytes exhibit univalent X and Y chromosomes. The present investigation is a survey of pachytene translocation configurations, at the electron microscopic level, in six stocks of mice, comprising a total of 464 spermatocytes and 343 oocytes. Univalence of the X and Y chromosomes was studied in the same stocks, as well as in three additional homozygous translocation stocks. Fully paired as well as asynaptic configurations were found in all translocation stocks, and the proportions of each configuration differed considerably between spermatocytes and oocytes of mice carrying the same translocation. In both spermatocytes and oocytes, other pairing anomalies were more frequent in cells with asynapsed than with fully synapsed configurations, and spermatocytes with univalent sex chromosomes had a higher proportion of autosomal anomalies than did spermatocytes with XY bivalents. It is concluded that pairing failure at meiosis is primarily a symptom, rather than a cause, of gametogenic arrest, and that chromosome rearrangements, even if they appear to be balanced, may affect the rate of atresia by interfering with the normal rate of meiotic progression. Once pairing failure is established, it could secondarily increase the probability of gametogenic failure.

摘要

减数分裂时的配对失败被假定为杂合易位携带者以及精母细胞呈现X和Y染色体单价的男性配子发生停滞的一个原因。本研究是在电子显微镜水平上对六组小鼠粗线期易位构型的调查,共包括464个精母细胞和343个卵母细胞。在相同的组以及另外三组纯合易位组中研究了X和Y染色体的单价情况。在所有易位组中均发现了完全配对以及不联会的构型,并且携带相同易位的小鼠的精母细胞和卵母细胞中每种构型的比例差异很大。在精母细胞和卵母细胞中,与完全联会构型的细胞相比,不联会细胞中其他配对异常更为常见,并且具有单价性染色体的精母细胞比具有XY二价体的精母细胞具有更高比例的常染色体异常。得出的结论是,减数分裂时的配对失败主要是配子发生停滞的一个症状而非原因,并且染色体重排,即使它们看似平衡,也可能通过干扰减数分裂正常进程的速率而影响闭锁率。一旦确立配对失败,其可能继而增加配子发生失败的概率。

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