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着丝粒近端减数分裂交叉在 中受到高度重复异染色质和靠近着丝粒的双重抑制。

Centromere-Proximal Meiotic Crossovers in Are Suppressed by Both Highly Repetitive Heterochromatin and Proximity to the Centromere.

机构信息

Curriculum in Genetics and Molecular Biology, University of North Carolina, Chapel Hill, North Carolina 27599.

Environment, Ecology and Energy Program, University of North Carolina, Chapel Hill, North Carolina 27599.

出版信息

Genetics. 2019 Sep;213(1):113-125. doi: 10.1534/genetics.119.302509. Epub 2019 Jul 25.

Abstract

Crossovers are essential in meiosis of most organisms to ensure the proper segregation of chromosomes, but improper placement of crossovers can result in nondisjunction and aneuploidy in progeny. In particular, crossovers near the centromere can cause nondisjunction. Centromere-proximal crossovers are suppressed by what is termed the centromere effect, but the mechanism is unknown. Here, we investigate contributions to centromere-proximal crossover suppression in We mapped a large number of centromere-proximal crossovers, and find that crossovers are essentially absent from the highly repetitive (HR)-heterochromatin surrounding the centromere but occur at a low frequency within the less-repetitive (LR)-heterochromatic region and adjacent euchromatin. Previous research suggested that flies that lack the Bloom syndrome helicase (Blm) lose meiotic crossover patterning, including the centromere effect. Mapping of centromere-proximal crossovers in mutants reveals that the suppression within the HR-heterochromatin is intact, but the distance-dependent centromere effect is lost. We conclude that centromere-proximal crossovers are suppressed by two separable mechanisms: an HR-heterochromatin effect that completely suppresses crossovers in the HR-heterochromatin, and the centromere effect, which suppresses crossovers with a dissipating effect with distance from the centromere.

摘要

交叉是大多数生物减数分裂中必不可少的,以确保染色体的正确分离,但交叉的不当放置会导致后代的非分离和非整倍体。特别是,靠近着丝粒的交叉会导致非分离。着丝粒近端的交叉被称为着丝粒效应所抑制,但机制尚不清楚。在这里,我们研究了着丝粒近端交叉抑制在中的作用。我们绘制了大量着丝粒近端的交叉,发现交叉基本上不存在于高度重复(HR)-着丝粒周围的异染色质中,但在低重复(LR)-异染色质区域和相邻常染色质中以低频率发生。先前的研究表明,缺乏 Bloom 综合征解旋酶(Blm)的果蝇会失去减数分裂交叉模式,包括着丝粒效应。在 突变体中着丝粒近端交叉的定位揭示了 HR-异染色质内的抑制是完整的,但距离依赖性的着丝粒效应已经丧失。我们得出结论,着丝粒近端的交叉受到两种可分离的机制的抑制:一种是 HR-异染色质效应,它完全抑制 HR-异染色质中的交叉,另一种是着丝粒效应,它抑制随着与着丝粒距离的增加而逐渐减弱的交叉。

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