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二倍体拟南芥 Arenosa 的雌雄重组景观。

Male and female recombination landscapes of diploid Arabidopsis arenosa.

机构信息

Department of Biology, Plant Evolutionary Genetics, Institute of Plant Molecular Biology, ETH Zürich, Zürich 8092, Switzerland.

出版信息

Genetics. 2022 Mar 3;220(3). doi: 10.1093/genetics/iyab236.

Abstract

The number and placement of meiotic crossover events during meiosis have important implications for the fidelity of chromosome segregation as well as patterns of inheritance. Despite the functional importance of recombination, recombination landscapes vary widely among and within species, and this can have a strong impact on evolutionary processes. A good knowledge of recombination landscapes is important for model systems in evolutionary and ecological genetics, since it can improve interpretation of genomic patterns of differentiation and genome evolution, and provides an important starting point for understanding the causes and consequences of recombination rate variation. Arabidopsis arenosa is a powerful evolutionary genetic model for studying the molecular basis of adaptation and recombination rate evolution. Here, we generate genetic maps for 2 diploid A. arenosa individuals from distinct genetic lineages where we have prior knowledge that meiotic genes show evidence of selection. We complement the genetic maps with cytological approaches to map and quantify recombination rates, and test the idea that these populations might have distinct patterns of recombination. We explore how recombination differs at the level of populations, individuals, sexes and genomic regions. We show that the positioning of crossovers along a chromosome correlates with their number, presumably a consequence of crossover interference, and discuss how this effect can cause differences in recombination landscape among sexes or species. We identify several instances of female segregation distortion. We found that averaged genome-wide recombination rate is lower and sex differences subtler in A. arenosa than in Arabidopsis thaliana.

摘要

减数分裂过程中交叉事件的数量和位置对染色体分离的保真度以及遗传模式都有重要影响。尽管重组具有重要的功能,但在不同物种和同一物种内部,重组景观差异很大,这对进化过程有很强的影响。了解重组景观对于进化和生态遗传学中的模型系统非常重要,因为它可以改善对基因组分化和基因组进化模式的解释,并为理解重组率变化的原因和后果提供重要的起点。Arabidopsis arenosa 是研究适应和重组率进化的分子基础的强大进化遗传模型。在这里,我们为来自不同遗传谱系的 2 个二倍体 A. arenosa 个体生成遗传图谱,我们之前的知识表明,减数分裂基因显示出选择的证据。我们用细胞学方法补充遗传图谱,以绘制和量化重组率,并测试这些种群可能具有不同重组模式的想法。我们探讨了重组在种群、个体、性别和基因组区域水平上的差异。我们表明,交叉在染色体上的定位与其数量相关,这可能是交叉干扰的结果,并讨论了这种效应如何导致性别或物种之间的重组景观差异。我们确定了几个雌性分离失真的实例。我们发现,与 Arabidopsis thaliana 相比,A. arenosa 的平均全基因组重组率更低,性别差异更微妙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d44/8893250/27ac6d14afd1/iyab236f1.jpg

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