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充分利用群体基因组数据来理解染色体倒位对适应和物种形成的重要性。

Making the most of population genomic data to understand the importance of chromosomal inversions for adaptation and speciation.

机构信息

Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Québec City, QC, Canada.

出版信息

Mol Ecol. 2020 Jul;29(14):2513-2516. doi: 10.1111/mec.15500. Epub 2020 Jun 27.

Abstract

Chromosomal inversions are increasingly found to differentiate locally adapted populations. This adaptive role is predictable because reduced recombination protects allelic combinations from gene flow. However, we are far from understanding how frequently inversions contribute to local adaptation and how widespread this phenomenon is across species. In a "From the Cover" article in this issue of Molecular Ecology, Huang, Andrew, Owens, Ostevik, and Rieseberg (2020) provide an important step towards this goal not only by finding adaptive inversions in a sunflower ecotype, but also by reversing the approach used to investigate the link between adaptation and inversions. Most studies compare two phenotypes and uncover divergence at a few regions, of which some can subsequently be identified as inversions. In contrast, Huang et al first catalogue putative inversions and then test genotype-environment associations, which allows them to ask systematically whether inversions may be adaptive and in which ecological contexts. They achieve that by revisiting a previous reduced-representation sequencing (RAD-sequencing) data set, demonstrating the suitability of this method to detect inversions in species with limited genomic resources. As such, Huang et al pave the way for a better understanding of the evolutionary role of structural genomic variation and highlight that accounting for inversions in population genomics is now possible, and much needed, in a wider range of organisms.

摘要

染色体倒位越来越多地被发现可以区分局部适应的种群。这种适应性作用是可以预测的,因为减少重组可以保护等位基因组合免受基因流的影响。然而,我们远未了解倒位在多大程度上有助于局部适应,以及这种现象在物种间有多普遍。在本期《分子生态学》的一篇“封面文章”中,Huang、Andrew、Owens、Ostevik 和 Rieseberg(2020 年)不仅在一种向日葵生态型中发现了适应性倒位,而且还扭转了研究适应与倒位之间联系的方法,朝着这一目标迈出了重要的一步。大多数研究比较两种表型,并在少数几个区域发现了分歧,其中一些随后可以被鉴定为倒位。相比之下,Huang 等人首先对可能的倒位进行编目,然后测试基因型-环境关联,这使他们能够系统地询问倒位是否可能具有适应性,以及在哪些生态环境中具有适应性。他们通过重新审视之前的简化代表性测序(RAD-seq)数据集来实现这一目标,证明了该方法在基因组资源有限的物种中检测倒位的适用性。因此,Huang 等人为更好地理解结构基因组变异的进化作用铺平了道路,并强调在更广泛的生物范围内,考虑种群基因组中的倒位现在是可能的,也是非常需要的。

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