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雄性小鼠青春期减数分裂前期发育的形态学和时间序列

Morphological and temporal sequence of meiotic prophase development at puberty in the male mouse.

作者信息

Goetz P, Chandley A C, Speed R M

出版信息

J Cell Sci. 1984 Jan;65:249-63. doi: 10.1242/jcs.65.1.249.

Abstract

The correct sequence of meiotic prophase development in the male mouse has been established by the use of pubertal males. The first wave of spermatogenesis at this time provides a unique opportunity to study progressive meiotic development in a direct way. Air-dried and micro-spread analyses have been carried out. Temporal and morphological progression at this time is entirely consistent with that occurring in the later waves of meiosis of the adult male. Morphological detail shows delayed pairing of the X and Y chromosomes relative to the autosomes. The longest XY synaptonemal complex is seen in early pachytene cells, occupying up to 72% of the length of the Y and 22% of the length of the X axis. By late pachytene, end-to-end pairing in the XY bivalent is established, the autosomal axes remaining fully paired. Desynapsis of the autosomes commences at early diplotene. A 'diffuse' diplotene stage in the male, comparable to the dictyate stage of the female, could not be found. Marked lengthening of the XY and autosomal axes did, however, occur through the diplotene stage.

摘要

通过使用青春期雄性小鼠,已确定了雄性小鼠减数分裂前期发育的正确顺序。此时的第一波精子发生提供了一个独特的机会,可以直接研究减数分裂的渐进发育。已进行了空气干燥和微铺展分析。此时的时间和形态进展与成年雄性减数分裂后期波的情况完全一致。形态学细节显示,相对于常染色体,X和Y染色体的配对延迟。在粗线期早期细胞中可见最长的XY联会复合体,占据Y轴长度的72%和X轴长度的22%。到粗线期后期,XY二价体中形成了端对端配对,常染色体轴仍完全配对。常染色体的去联会在双线期早期开始。未发现雄性中与雌性双线期相当的“弥漫性”双线期阶段。然而,在双线期阶段,XY和常染色体轴确实明显延长。

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