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减数分裂重组热点——比较视角

Meiotic recombination hotspots - a comparative view.

作者信息

Choi Kyuha, Henderson Ian R

机构信息

Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge, CB2 3EA, UK.

出版信息

Plant J. 2015 Jul;83(1):52-61. doi: 10.1111/tpj.12870. Epub 2015 May 20.

Abstract

During meiosis homologous chromosomes pair and undergo reciprocal genetic exchange, termed crossover. Meiotic recombination has a profound effect on patterns of genetic variation and is an important tool during crop breeding. Crossovers initiate from programmed DNA double-stranded breaks that are processed to form single-stranded DNA, which can invade a homologous chromosome. Strand invasion events mature into double Holliday junctions that can be resolved as crossovers. Extensive variation in the frequency of meiotic recombination occurs along chromosomes and is typically focused in narrow hotspots, observed both at the level of DNA breaks and final crossovers. We review methodologies to profile hotspots at different steps of the meiotic recombination pathway that have been used in different eukaryote species. We then discuss what these studies have revealed concerning specification of hotspot locations and activity and the contributions of both genetic and epigenetic factors. Understanding hotspots is important for interpreting patterns of genetic variation in populations and how eukaryotic genomes evolve. In addition, manipulation of hotspots will allow us to accelerate crop breeding, where meiotic recombination distributions can be limiting.

摘要

在减数分裂过程中,同源染色体配对并进行相互的基因交换,即交叉互换。减数分裂重组对遗传变异模式有深远影响,是作物育种过程中的重要工具。交叉互换起始于程序性DNA双链断裂,这些断裂经过处理形成单链DNA,单链DNA可侵入同源染色体。链侵入事件成熟为双Holliday连接体,可作为交叉互换进行解析。减数分裂重组频率在染色体上存在广泛变异,通常集中在狭窄的热点区域,这在DNA断裂和最终交叉互换水平上均有观察到。我们综述了在不同真核生物物种中用于描绘减数分裂重组途径不同步骤热点区域的方法。然后我们讨论这些研究揭示了关于热点区域位置和活性的确定以及遗传和表观遗传因素的贡献。了解热点区域对于解释群体中的遗传变异模式以及真核生物基因组如何进化很重要。此外,对热点区域的操控将使我们能够加速作物育种,因为减数分裂重组分布可能会产生限制。

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