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鸭嘴兽连锁反应:鸭嘴兽中多条性染色体链的定向且有序减数分裂配对

Platypus chain reaction: directional and ordered meiotic pairing of the multiple sex chromosome chain in Ornithorhynchus anatinus.

作者信息

Daish Tasman, Casey Aaron, Grützner Frank

机构信息

Discipline of Genetics, School of Molecular and Biomedical Science, The University of Adelaide, North Terrace, Adelaide, SA 5005, Australia.

出版信息

Reprod Fertil Dev. 2009;21(8):976-84. doi: 10.1071/RD09085.

Abstract

Monotremes are phylogenetically and phenotypically unique animals with an unusually complex sex chromosome system that is composed of ten chromosomes in platypus and nine in echidna. These chromosomes are alternately linked (X1Y1, X2Y2, ...) at meiosis via pseudoautosomal regions and segregate to form spermatozoa containing either X or Y chromosomes. The physical and epigenetic mechanisms involved in pairing and assembly of the complex sex chromosome chain in early meiotic prophase I are completely unknown. We have analysed the pairing dynamics of specific sex chromosome pseudoautosomal regions in platypus spermatocytes during prophase of meiosis I. Our data show a highly coordinated pairing process that begins at the terminal Y5 chromosome and completes with the union of sex chromosomes X1Y1. The consistency of this ordered assembly of the chain is remarkable and raises questions about the mechanisms and factors that regulate the differential pairing of sex chromosomes and how this relates to potential meiotic silencing mechanisms and alternate segregation.

摘要

单孔目动物在系统发育和表型上都是独特的动物,具有异常复杂的性染色体系统,鸭嘴兽的性染色体系统由十条染色体组成,针鼹的由九条组成。这些染色体在减数分裂时通过假常染色体区域交替连接(X1Y1、X2Y2等),并分离形成含有X或Y染色体的精子。在减数分裂前期I早期,参与复杂性染色体链配对和组装的物理和表观遗传机制完全未知。我们分析了鸭嘴兽精母细胞在减数分裂I前期特定性染色体假常染色体区域的配对动态。我们的数据显示了一个高度协调的配对过程,该过程从末端的Y5染色体开始,以性染色体X1Y1的结合完成。这种链的有序组装的一致性非常显著,并引发了关于调节性染色体差异配对的机制和因素以及这与潜在减数分裂沉默机制和交替分离如何相关的问题。

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