Institut Cavanilles de Biodiversitat i Biologia Evolutiva, Universitat de València, Valencia, Spain.
Department of Biological and Marine Sciences, University of Hull, Hull, United Kingdom.
Sci Rep. 2019 Dec 23;9(1):19646. doi: 10.1038/s41598-019-56100-y.
Elucidating the genetic basis of phenotypic variation in response to different environments is key to understanding how populations evolve. Facultatively sexual rotifers can develop adaptive responses to fluctuating environments. In a previous evolution experiment, diapause-related traits changed rapidly in response to two selective regimes (predictable vs unpredictable) in laboratory populations of the rotifer Brachionus plicatilis. Here, we investigate the genomic basis of adaptation to environmental unpredictability in these experimental populations. We identified and genotyped genome-wide polymorphisms in 169 clones from both selective regimes after seven cycles of selection using genotyping by sequencing (GBS). Additionally, we used GBS data from the 270 field clones from which the laboratory populations were established. This GBS dataset was used to identify candidate SNPs under selection. A total of 76 SNPs showed divergent selection, three of which are candidates for being under selection in the particular unpredictable fluctuation pattern studied. Most of the remaining SNPs showed strong signals of adaptation to laboratory conditions. Furthermore, a genotype-phenotype association approach revealed five SNPs associated with two key life-history traits in the adaptation to unpredictability. Our results contribute to elucidating the genomic basis for adaptation to unpredictable environments and lay the groundwork for future evolution studies in rotifers.
阐明表型变异对不同环境的遗传基础是理解种群如何进化的关键。兼性有性轮虫可以对波动的环境做出适应性反应。在以前的进化实验中,轮虫褶皱臂尾轮虫的实验室种群对两个选择条件(可预测与不可预测)迅速产生了与休眠相关的特征变化。在这里,我们研究了这些实验种群对环境不可预测性适应的基因组基础。我们使用测序(GBS)对 169 个克隆进行了全基因组多态性鉴定和基因分型,这些克隆来自于 7 个选择周期后的两个选择条件。此外,我们还使用了从建立实验室种群的 270 个野外克隆的 GBS 数据。该 GBS 数据集用于鉴定受选择的候选 SNP。共有 76 个 SNP 表现出分歧选择,其中 3 个 SNP 可能是在所研究的特定不可预测波动模式下受选择的候选 SNP。其余大多数 SNP 表现出对实验室条件的强烈适应信号。此外,基因型-表型关联方法揭示了与适应不可预测性相关的两个关键生活史特征的五个 SNP。我们的研究结果有助于阐明对不可预测环境适应的基因组基础,并为轮虫未来的进化研究奠定基础。