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大鼠精母细胞中联会复合体的侧元件交叉连接及其与交叉的关系。

Lateral element cross connections of the synaptonemal complex and their relationship to chiasmata in rat spermatocytes.

作者信息

Moens P B

出版信息

Can J Genet Cytol. 1978 Dec;20(4):567-79. doi: 10.1139/g78-066.

Abstract

Observations are presented in support of the hypothesis that at meiotic prophase a reciprocal crossover is accompanied by a crossover of the lateral elements of the synaptonemal complex, SC (Moens, 1974). Rat spermatocyte nuclei in developmental stage VII (Clermont, 1972) of the seminiferous epithelium cycle, but not pachytene nuclei in stages I to VI, were found to have SC modifications in the form of a cross connection between the lateral elements. In structure these crossover elements, CO elements, resemble the lateral element. It is found in a variety of positions, usually more or less perpendicular to the SC but also slanted or parallel along the central element or detached from the SC. Reconstructions of entire nuclei indicate an average of one such CO element per SC and a nonrandom distribution of CO elements among the SCs. Because the crossing-over of lateral elements produces a 180 degree twist or removes a 180 degree twist, the pattern of SC coiling was examined. Coiling starts in early pachytene prior to CO element formation. At stage VII one nucleus had a total of 78 coils, all counter clockwise, and another nucleus had 97 such 180 degree coils. It is noted that if SC coils are associated with the process of crossing-over, then the regulation of crossover distribution such as chiasma position interference has an explanation in the structure and behavior of the SC.

摘要

本文提出的观察结果支持以下假说

在减数分裂前期,相互交换伴随着联会复合体(SC)侧生元件的交换(Moens,1974)。发现在生精上皮周期发育阶段VII(Clermont,1972)的大鼠精母细胞核中存在SC修饰,其形式为侧生元件之间的交叉连接,但在阶段I至VI的粗线期细胞核中未发现。这些交换元件(CO元件)在结构上类似于侧生元件。它出现在各种位置,通常或多或少垂直于SC,但也可能沿着中央元件倾斜或平行,或者与SC分离。对整个细胞核的重建表明每个SC平均有一个这样的CO元件,并且CO元件在SCs之间呈非随机分布。由于侧生元件的交换会产生180度扭转或消除180度扭转,因此对SC的卷曲模式进行了研究。卷曲在粗线期早期CO元件形成之前开始。在阶段VII,一个细胞核共有78个卷曲,全部为逆时针方向,另一个细胞核有97个这样的180度卷曲。值得注意的是,如果SC卷曲与交换过程相关,那么诸如交叉位置干扰等交换分布的调节在SC的结构和行为中有了解释。

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