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秀丽隐杆线虫核型的操控揭示了减数分裂期间驱动成对染色体联会的多种因素。

Manipulation of Karyotype in Caenorhabditis elegans Reveals Multiple Inputs Driving Pairwise Chromosome Synapsis During Meiosis.

作者信息

Roelens Baptiste, Schvarzstein Mara, Villeneuve Anne M

机构信息

Departments of Developmental Biology and Genetics, Stanford University School of Medicine, Stanford, California 94305.

Department of Biology, Brooklyn College, City University of New York (CUNY), Brooklyn, New York 11210 Molecular, Cellular, and Developmental Biology Program, The Graduate Center, CUNY, New York, New York 10016

出版信息

Genetics. 2015 Dec;201(4):1363-79. doi: 10.1534/genetics.115.182279. Epub 2015 Oct 23.

Abstract

Meiotic chromosome segregation requires pairwise association between homologs, stabilized by the synaptonemal complex (SC). Here, we investigate factors contributing to pairwise synapsis by investigating meiosis in polyploid worms. We devised a strategy, based on transient inhibition of cohesin function, to generate polyploid derivatives of virtually any Caenorhabditis elegans strain. We exploited this strategy to investigate the contribution of recombination to pairwise synapsis in tetraploid and triploid worms. In otherwise wild-type polyploids, chromosomes first sort into homolog groups, then multipartner interactions mature into exclusive pairwise associations. Pairwise synapsis associations still form in recombination-deficient tetraploids, confirming a propensity for synapsis to occur in a strictly pairwise manner. However, the transition from multipartner to pairwise association was perturbed in recombination-deficient triploids, implying a role for recombination in promoting this transition when three partners compete for synapsis. To evaluate the basis of synapsis partner preference, we generated polyploid worms heterozygous for normal sequence and rearranged chromosomes sharing the same pairing center (PC). Tetraploid worms had no detectable preference for identical partners, indicating that PC-adjacent homology drives partner choice in this context. In contrast, triploid worms exhibited a clear preference for identical partners, indicating that homology outside the PC region can influence partner choice. Together, our findings, suggest a two-phase model for C. elegans synapsis: an early phase, in which initial synapsis interactions are driven primarily by recombination-independent assessment of homology near PCs and by a propensity for pairwise SC assembly, and a later phase in which mature synaptic interactions are promoted by recombination.

摘要

减数分裂染色体分离需要同源染色体之间的两两配对,并由联会复合体(SC)稳定。在此,我们通过研究多倍体蠕虫的减数分裂来探究促成两两配对联会的因素。我们设计了一种基于瞬时抑制黏连蛋白功能的策略,以产生几乎任何秀丽隐杆线虫品系的多倍体衍生物。我们利用这一策略来研究四倍体和三倍体蠕虫中重组对两两配对联会的作用。在其他方面为野生型的多倍体中,染色体首先分类成同源组,然后多伙伴相互作用成熟为排他性的两两配对。在重组缺陷的四倍体中仍会形成两两配对联会,证实了联会以严格两两方式发生的倾向。然而,在重组缺陷的三倍体中,从多伙伴到两两配对的转变受到干扰,这意味着当三个伙伴竞争联会时,重组在促进这种转变中发挥作用。为了评估联会伙伴偏好的基础,我们产生了正常序列杂合且具有共享相同配对中心(PC)的重排染色体的多倍体蠕虫。四倍体蠕虫对相同伙伴没有可检测到的偏好,表明在这种情况下,与PC相邻的同源性驱动伙伴选择。相比之下,三倍体蠕虫对相同伙伴表现出明显偏好,表明PC区域外的同源性可以影响伙伴选择。总之,我们的研究结果表明秀丽隐杆线虫联会存在一个两阶段模型:早期阶段,初始联会相互作用主要由PC附近同源性的重组非依赖性评估以及两两SC组装倾向驱动;后期阶段,成熟的突触相互作用由重组促进。

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Evidence that masking of synapsis imperfections counterbalances quality control to promote efficient meiosis.
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