Laboratory of Genetics, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Department of Botany, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Heredity (Edinb). 2019 Oct;123(4):442-457. doi: 10.1038/s41437-019-0252-9. Epub 2019 Jul 31.
Despite being linked to the fundamental processes of chromosome segregation and offspring diversification, meiotic recombination rates vary within and between species. Recent years have seen progress in quantifying recombination rate evolution across multiple temporal and genomic scales. Nevertheless, the level of variation in recombination rate within wild populations-a key determinant of evolution in this trait-remains poorly documented on the genomic scale. To address this notable gap, we used immunofluorescent cytology to quantify genome-wide recombination rates in males from a wild population of the white-footed mouse, Peromyscus leucopus. For comparison, we measured recombination rates in a second population of male P. leucopus raised in the laboratory and in male deer mice from the subspecies Peromyscus maniculatus bairdii. Although we found differences between individuals in the genome-wide recombination rate, levels of variation were low-within populations, between populations, and between species. Quantification of synaptonemal complex length and crossover positions along chromosome 1 using a novel automated approach also revealed conservation in broad-scale crossover patterning, including strong crossover interference. We propose stabilizing selection targeting recombination or correlated processes as the explanation for these patterns.
尽管减数分裂重组与染色体分离和后代多样化的基本过程有关,但在物种内和物种间,重组率存在差异。近年来,在多个时间和基因组尺度上量化重组率演化方面取得了进展。然而,在野生种群中,重组率的变化程度(这一性状进化的关键决定因素)在基因组尺度上仍记录不佳。为了解决这一明显的差距,我们使用免疫荧光细胞学技术,对白足鼠(Peromyscus leucopus)的一个野生种群中的雄性个体进行了全基因组重组率的定量测量。为了进行比较,我们还测量了实验室饲养的另一个白足鼠种群以及 Peromyscus maniculatus bairdii 亚种的雄性鹿鼠的重组率。尽管我们发现了个体间全基因组重组率的差异,但变化水平很低——无论是在种群内、种群间还是物种间。利用一种新的自动化方法对染色体 1 上的联会复合体长度和交叉位置进行定量,也揭示了广泛的交叉模式具有保守性,包括强烈的交叉干扰。我们提出了针对重组或相关过程的稳定选择作为这些模式的解释。