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Insights into variation in meiosis from 31,228 human sperm genomes

机译:从31,228人精子基因组中洞察分裂的变异

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摘要

Meiosis, although essential for reproduction, is also variable and error-prone: rates of chromosome crossover vary among gametes, between the sexes, and among humans of the same sex, and chromosome missegregation leads to abnormal chromosome numbers (aneuploidy)(1-8). To study diverse meiotic outcomes and how they covary across chromosomes, gametes and humans, we developed Sperm-seq, a way of simultaneously analysing the genomes of thousands of individual sperm. Here we analyse the genomes of 31,228 human gametes from 20 sperm donors, identifying 813,122 crossovers and 787 aneuploid chromosomes. Sperm donors had aneuploidy rates ranging from 0.01 to 0.05 aneuploidies per gamete; crossovers partially protected chromosomes from nondisjunction at the meiosis I cell division. Some chromosomes and donors underwent more-frequent nondisjunction during meiosis I, and others showed more meiosis II segregation failures. Sperm genomes also manifested manygenomic anomalies that could not be explained by simple nondisjunction. Diverse recombination phenotypes-from crossover rates to crossover location and separation, a measure of crossover interference-covaried strongly across individuals and cells. Our results can be incorporated with earlier observations into a unified model in which a core mechanism, the variable physical compaction of meiotic chromosomes, generates interindividual and cell-to-cell variation in diverse meiotic phenotypes.
机译:减数分裂,虽然生殖至关重要,但也是可变的,易变量:染色体交叉率在配子之间变化,性别和同性的人类之间,以及染色体的错误解导致异常染色体数(非整倍性)(1-8 )。为了研究不同的减数分裂成果以及如何在染色体,配子和人体上进行科学,我们开发了精子 - SEQ,一种同时分析成千上万个单独精子的基因组的方式。在这里,我们分析了来自20个精子供体的31,228个人配子的基因组,鉴定了813,122个横梁和787个非霉素染色体。精子供体具有每个配子的0.01至0.05非运动的速率范围;在MeIosis I细胞分裂的非歧视结合中分布部分保护的染色体。一些染色体和捐赠者在减数分裂中接受了更频繁的非频率结,而其他染色体也展现出更多的减数分裂II分离失败。精子基因组也表现出许多概要的异常,这不能通过简单的非歧视来解释。不同的重组表型 - 从交叉速率到交叉位置和分离,在个体和细胞中强烈地强烈地进行交叉干扰的量度。我们的结果可以将早期的观察结果结合到统一模型中,其中核心机制,减数分裂染色体的可变物理压实,产生不同的减数分裂表型以不同的减少表型产生的细胞对细胞变异。

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  • 来源
    《Nature》 |2020年第7815期|259-264|共6页
  • 作者单位

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

    Harvard Med Sch Dept Genet Boston MA 02115 USA|Broad Inst MIT & Harvard Program Med & Populat Genet Cambridge MA 02142 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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