Limborg Morten T, Larson Wesley A, Seeb Lisa W, Seeb James E
School of Aquatic and Fishery Sciences, University of Washington, Seattle, WA, USA.
Mol Ecol. 2017 Sep;26(17):4509-4522. doi: 10.1111/mec.14201. Epub 2017 Jul 5.
A whole-genome duplication (WGD) doubles the entire genomic content of a species and is thought to have catalysed adaptive radiation in some polyploid-origin lineages. However, little is known about general consequences of a WGD because gene duplicates (i.e., paralogs) are commonly filtered in genomic studies; such filtering may remove substantial portions of the genome in data sets from polyploid-origin species. We demonstrate a new method that enables genome-wide scans for signatures of selection at both nonduplicated and duplicated loci by taking locus-specific copy number into account. We apply this method to RAD sequence data from different ecotypes of a polyploid-origin salmonid (Oncorhynchus nerka) and reveal signatures of divergent selection that would have been missed if duplicated loci were filtered. We also find conserved signatures of elevated divergence at pairs of homeologous chromosomes with residual tetrasomic inheritance, suggesting that joint evolution of some nondiverged gene duplicates may affect the adaptive potential of these genes. These findings illustrate that including duplicated loci in genomic analyses enables novel insights into the evolutionary consequences of WGDs and local segmental gene duplications.
全基因组复制(WGD)使一个物种的整个基因组内容翻倍,并且被认为在一些多倍体起源的谱系中催化了适应性辐射。然而,对于WGD的一般后果知之甚少,因为基因复制体(即旁系同源基因)在基因组研究中通常被过滤掉;这种过滤可能会从多倍体起源物种的数据集中去除基因组的很大一部分。我们展示了一种新方法,该方法通过考虑基因座特异性拷贝数,能够在全基因组范围内扫描非复制和复制基因座上的选择特征。我们将此方法应用于多倍体起源的鲑科鱼类(红大马哈鱼)不同生态型的RAD序列数据,并揭示了如果过滤掉复制基因座就会错过的趋异选择特征。我们还在具有残余四体遗传的同源染色体对中发现了保守的高分化特征,这表明一些未分化的基因复制体的共同进化可能会影响这些基因的适应潜力。这些发现表明,在基因组分析中纳入复制基因座能够对WGD和局部片段基因复制的进化后果有新的见解。