a Département des sciences de l'environnement, Université du Québec à Trois-Rivières, Trois-Rivières, QC G9A 5H7, Canada; GRIL - Groupe de recherche interuniversitaire en limnologie et en environnement aquatique.
b Department of Biological Sciences, Université de Montréal, Montréal, QC H3C 3J7, Canada; GRIL - Groupe de recherche interuniversitaire en limnologie et en environnement aquatique.
Genome. 2018 Jan;61(1):1-6. doi: 10.1139/gen-2017-0061. Epub 2017 Sep 26.
The ribosomal intergenic spacer (IGS), responsible for the rate of transcription of rRNA genes, is associated with the growth and fecundity of individuals. A previous study of IGS length variants in a yellow perch (Perca flavescens) population revealed the presence of two predominant alleles differing by 1 kb due to variation in the number of repeat units. This study aims to assess whether length variation of IGS is the result of selection in natural populations. Length variation of IGS and 11 neutral microsatellite loci were assessed in geographically distant yellow perch populations. Most populations displayed the very same IGS alleles; they did not differ in frequencies among populations and the F was not significantly different from zero. In contrast, diversity at microsatellite loci was high and differed among populations (F = 0.18). Selection test based on F identified IGS as a significant outlier from neutral expectations for population differentiation. Heterozygote excess was also detected in one specific cohort, suggesting temporal variation in the selection regime. While the exact mechanism remains to be specified, together the results of this study support the contention that balancing selection is acting to maintain two distinct IGS alleles in natural fish populations.
核糖体基因间间隔区(IGS)负责 rRNA 基因的转录速率,与个体的生长和繁殖力有关。先前对黄鲈(Perca flavescens)种群 IGS 长度变异的研究表明,由于重复单元数量的变化,存在两种主要等位基因,相差 1 kb。本研究旨在评估 IGS 的长度变异是否是自然种群选择的结果。在地理上相距较远的黄鲈种群中评估了 IGS 长度变异和 11 个中性微卫星位点。大多数种群表现出相同的 IGS 等位基因;它们在种群间的频率没有差异,F 值也不显著不同于零。相比之下,微卫星位点的多样性很高,且在种群间存在差异(F = 0.18)。基于 F 的选择测试表明,IGS 与群体分化的中性预期显著不同。在一个特定的队列中也检测到杂合子过剩,表明选择机制随时间而变化。虽然确切的机制仍有待确定,但本研究的结果支持平衡选择作用于维持自然鱼类种群中两种不同的 IGS 等位基因的观点。