Laboratory of Genome Biology, Institute of Molecular Biology and Biotechnology, Adam Mickiewicz University, Poznań, Poland.
Department of Biology, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Nat Commun. 2023 Jan 3;14(1):33. doi: 10.1038/s41467-022-35722-3.
In hybrid organisms, genetically divergent homologous chromosomes pair and recombine during meiosis; however, the effect of specific types of polymorphisms on crossover is poorly understood. Here, to analyze this in Arabidopsis, we develop the seed-typing method that enables the massively parallel fine-mapping of crossovers by sequencing. We show that structural variants, observed in one of the generated intervals, do not change crossover frequency unless they are located directly within crossover hotspots. Both natural and Cas9-induced deletions result in lower hotspot activity but are not compensated by increases in immediately adjacent hotspots. To examine the effect of single nucleotide polymorphisms on crossover formation, we analyze hotspot activity in mismatch detection-deficient msh2 mutants. Surprisingly, polymorphic hotspots show reduced activity in msh2. In lines where only the hotspot-containing interval is heterozygous, crossover numbers increase above those in the inbred (homozygous). We conclude that MSH2 shapes crossover distribution by stimulating hotspot activity at polymorphic regions.
在杂种生物中,遗传上不同的同源染色体在减数分裂过程中配对并重组;然而,特定类型的多态性对交叉的影响还知之甚少。在这里,为了在拟南芥中分析这一点,我们开发了种子分型方法,通过测序实现了交叉的大规模平行精细映射。我们表明,在一个生成的间隔中观察到的结构变体不会改变交叉频率,除非它们直接位于交叉热点内。自然和 Cas9 诱导的缺失都会导致热点活性降低,但不会被紧邻的热点活性增加所补偿。为了研究单核苷酸多态性对交叉形成的影响,我们分析了错配检测缺陷 msh2 突变体中的热点活性。令人惊讶的是,多态性热点在 msh2 中的活性降低。在只有含有热点的间隔杂合的系中,交叉数增加超过了纯合的(纯合的)。我们得出结论,MSH2 通过刺激多态区域的热点活性来塑造交叉分布。