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着丝粒特异性组蛋白CENH3的形态发生揭示了六倍体小麦在联会复合体形成和雄配子减数分裂过程中着丝粒的动态关联。

CENH3 morphogenesis reveals dynamic centromere associations during synaptonemal complex formation and the progression through male meiosis in hexaploid wheat.

作者信息

Sepsi Adél, Higgins James D, Heslop-Harrison John S Pat, Schwarzacher Trude

机构信息

Department of Genetics, University of Leicester, University Road, Leicester, LE1 7RH, UK.

出版信息

Plant J. 2017 Jan;89(2):235-249. doi: 10.1111/tpj.13379. Epub 2017 Jan 17.

Abstract

During meiosis, centromeres in some species undergo a series of associations, but the processes and progression to homologous pairing is still a matter of debate. Here, we aimed to correlate meiotic centromere dynamics and early telomere behaviour to the progression of synaptonemal complex (SC) construction in hexaploid wheat (2n = 42) by triple immunolabelling of CENH3 protein marking functional centromeres, and SC proteins ASY1 (unpaired lateral elements) and ZYP1 (central elements in synapsed chromosomes). We show that single or multiple centromere associations formed in meiotic interphase undergo a progressive polarization (clustering) at the nuclear periphery in early leptotene, leading to formation of the telomere bouquet. Critically, immunolabelling shows the dynamics of these presynaptic centromere associations and a structural reorganization of the centromeric chromatin coinciding with key events of synapsis initiation from the subtelomeric regions. As short stretches of subtelomeric synapsis emerged at early zygotene, centromere clusters lost their strong polarization, gradually resolving as individual centromeres indicated by more than 21 CENH3 foci associated with unpaired lateral elements. Only following this centromere depolarization were homologous chromosome arms connected, as observed by the alignment and fusion of interstitial ZYP1 loci elongating at zygotene so synapsis at centromeres is a continuation of the interstitial synapsis. Our results thus reveal that centromere associations are a component of the timing and progression of chromosome synapsis, and the gradual release of the individual centromeres from the clusters correlates with the elongation of interstitial synapsis between the corresponding homologues.

摘要

在减数分裂过程中,某些物种的着丝粒会经历一系列的关联,但向同源配对的过程和进展仍是一个有争议的问题。在这里,我们旨在通过对标记功能着丝粒的CENH3蛋白、联会复合体(SC)蛋白ASY1(未配对的侧生元件)和ZYP1(联会染色体中的中央元件)进行三重免疫标记,将六倍体小麦(2n = 42)减数分裂着丝粒动态和早期端粒行为与联会复合体构建的进程相关联。我们发现,在减数分裂间期形成的单个或多个着丝粒关联在细线期早期在核周边经历渐进性极化(聚集),导致端粒花束的形成。至关重要的是,免疫标记显示了这些突触前着丝粒关联的动态以及着丝粒染色质的结构重组,这与从亚端粒区域开始的联会起始的关键事件相吻合。在偶线期早期出现短片段的亚端粒联会时,着丝粒簇失去了强烈的极化,随着与未配对侧生元件相关的超过21个CENH3焦点所指示的单个着丝粒逐渐分解。只有在这种着丝粒去极化之后,同源染色体臂才会连接,这在偶线期延长的间质ZYP1位点的排列和融合中可以观察到,因此着丝粒处的联会是间质联会的延续。我们的结果因此揭示,着丝粒关联是染色体联会时间和进程中的一个组成部分,着丝粒从簇中逐渐释放与相应同源物之间间质联会的延长相关。

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