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[黑腹果蝇三倍体雌性的染色体行为之谜]

[Puzzling chromosome behavior in triploid females of Drosophila melanogaster].

作者信息

Chubykin V L

机构信息

Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow, 119991 Russia.

出版信息

Genetika. 2003 Aug;39(8):1046-52.

Abstract

Based on a particular formation of the chromocenter and trivalents in triploid Drosophila females, as well as on asynapsis in pericentromeric regions (which is a result of trivalent competition), an explanation for the increased frequency of crossing over and nonrandom segregation of the X chromosomes and autosomes in the first meiotic division is suggested. It is proposed that a delay in pairing of the pericentromeric heterochromatic chromosome regions combined into a single chromocenter leads to the following: (1) formation of the heteroduplex structures (X structures) takes more time and, consequently, their number and the frequency of crossing over in the paired chromosome regions increases; (2) in nonhomologous chromosomes, the chromocentral connections, which normally degrade in prometaphase, are retained to fulfill a function of coorientation during the first meiotic division.

摘要

基于三倍体雌性果蝇中染色中心和三价体的特定形成,以及着丝粒周围区域的异源联会(这是三价体竞争的结果),本文提出了对第一次减数分裂中X染色体和常染色体交换频率增加以及非随机分离现象的一种解释。研究认为,合并成单个染色中心的着丝粒周围异染色质染色体区域配对延迟会导致以下情况:(1)异源双链结构(X结构)的形成需要更长时间,因此,其数量以及配对染色体区域中的交换频率会增加;(2)在非同源染色体中,通常在有丝分裂前期降解的染色中心连接得以保留,以在第一次减数分裂期间发挥共定向功能。

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