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种异型性染色体的姐妹染色单体分裂及其向有丝分裂的传递。

The Sister Chromatid Division of the Heteromorphic Sex Chromosomes in Species and Their Transmissibility towards the Mitosis.

机构信息

Department of Plant Developmental Genetics, Institute of Biophysics of the Czech Academy of Sciences, Kralovopolska 135, 612 00 Brno, Czech Republic.

出版信息

Int J Mol Sci. 2022 Feb 22;23(5):2422. doi: 10.3390/ijms23052422.

Abstract

Young sex chromosomes possess unique and ongoing dynamics that allow us to understand processes that have an impact on their evolution and divergence. The genus includes species with evolutionarily young sex chromosomes, and two species of section , namely (24, XY) and (24, XY), are well-established models of sex chromosome evolution, Y chromosome degeneration, and sex determination. In both species, the X and Y chromosomes are strongly heteromorphic and differ in the genomic composition compared to the autosomes. It is generally accepted that for proper cell division, the longest chromosomal arm must not exceed half of the average length of the spindle axis at telophase. Yet, it is not clear what are the dynamics between males and females during mitosis and how the cell compensates for the presence of the large Y chromosome in one sex. Using hydroxyurea cell synchronization and 2D/3D microscopy, we determined the position of the sex chromosomes during the mitotic cell cycle and determined the upper limit for the expansion of sex chromosome non-recombining region. Using 3D specimen preparations, we found that the velocity of the large chromosomes is compensated by the distant positioning from the central interpolar axis, confirming previous mathematical modulations.

摘要

年轻的性染色体具有独特且持续的动态变化,这使我们能够了解对其进化和分化有影响的过程。属包括具有进化年轻性染色体的物种,而节中的两个物种,即(24,XY)和(24,XX),是性染色体进化、Y 染色体退化和性别决定的成熟模型。在这两个物种中,X 和 Y 染色体具有强烈的异型性,与常染色体相比,基因组组成存在差异。人们普遍认为,为了实现正常的细胞分裂,最长的染色体臂不能超过末期纺锤体轴平均长度的一半。然而,目前尚不清楚在有丝分裂过程中雄性和雌性之间的动态变化是什么,以及细胞如何补偿一个性别中存在的大 Y 染色体。我们使用羟基脲细胞同步化和 2D/3D 显微镜,确定了性染色体在有丝分裂细胞周期中的位置,并确定了非重组区域扩展的上限。使用 3D 标本制备,我们发现大染色体的速度通过与中央极间轴的远距离定位得到补偿,这证实了之前的数学调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fd9/8910698/3a37b02aea24/ijms-23-02422-g001.jpg

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