Department of Biosciences, University of Exeter, Exeter, United Kingdom.
Ann N Y Acad Sci. 2020 Sep;1476(1):23-42. doi: 10.1111/nyas.14177. Epub 2019 Jun 26.
Convergent evolution, where independent lineages evolve similar phenotypes in response to similar challenges, can provide valuable insight into how selection operates and the limitations it encounters. However, it has only recently become possible to explore how convergent evolution is reflected at the genomic level. The overlapping outlier approach (OOA), where genome scans of multiple independent lineages are used to find outliers that overlap and therefore identify convergently evolving loci, is becoming popular. Here, we present a quantitative analysis of 34 studies that used this approach across many sampling designs, taxa, and sampling intensities. We found that OOA studies with increased biological sampling power within replicates have increased likelihood of finding overlapping, "convergent" signals of adaptation between them. When identifying convergent loci as overlapping outliers, it is tempting to assume that any false-positive outliers derived from individual scans will fail to overlap across replicates, but this cannot be guaranteed. We highlight how population demographics and genomic context can contribute toward both true convergence and false positives in OOA studies. We finish with an exploration of emerging methods that couple genome scans with phenotype and environmental measures, leveraging added information from genome data to more directly test hypotheses of the likelihood of convergent evolution.
趋同进化,即独立谱系在应对相似挑战时进化出相似的表型,可以为我们深入了解选择如何运作以及它所面临的限制提供有价值的见解。然而,直到最近才有可能探索趋同进化在基因组水平上是如何体现的。重叠异常值方法(OOA),即在多个独立谱系的基因组扫描中寻找重叠的异常值,从而识别趋同进化的基因座,这种方法正变得越来越流行。在这里,我们对使用这种方法的 34 项研究进行了定量分析,这些研究涉及许多采样设计、类群和采样强度。我们发现,在重复实验中增加生物采样能力的 OOA 研究,更有可能在它们之间找到适应性的重叠“趋同”信号。在将趋同基因座识别为重叠的异常值时,人们可能会假设任何来自单个扫描的假阳性异常值都不会在重复实验中重叠,但这并不能保证。我们强调了种群动态和基因组背景如何有助于 OOA 研究中的真实趋同和假阳性。最后,我们探讨了新兴的方法,这些方法将基因组扫描与表型和环境测量相结合,利用基因组数据中的附加信息,更直接地检验趋同进化的可能性的假设。