Larson Wesley A, McKinney Garrett J, Seeb James E, Seeb Lisa W
From the School of Aquatic and Fishery Sciences, University of Washington, 1122 NE Boat Street, Box 355020, Seattle WA 98195-5020 (Larson, McKinney, JE Seeb, and LW Seeb); WA Larson is now at the College of Natural Resources, University of Wisconsin-Stevens Point, 800 Reserve Street, Stevens Point, WI 54481.
J Hered. 2016 Nov;107(6):559-66. doi: 10.1093/jhered/esw043. Epub 2016 Jul 14.
Loci that can be used to screen for sex in salmon can provide important information for study of both wild and cultured populations. Here, we tested for associations between sex and genotypes at thousands of loci available from a genotyping-by-sequencing (GBS) dataset to discover sex-associated loci in sockeye salmon (Oncorhynchus nerka). We discovered 7 sex-associated loci, developed high-throughput assays for 2 loci, and tested the utility of these 2 assays in 8 collections of sockeye salmon sampled throughout North America. We also screened an existing assay based on the master sex-determining gene in salmon (sdY) in these collections. The ability of GBS-derived loci to assign fish to their phenotypic sex varied substantially among collections suggesting that recombination between the loci that we discovered and the sex-determining gene has occurred. Assignment accuracy to phenotypic sex was much higher with the sdY assay but was still less than 100%. Alignment of sequences from GBS-derived loci to draft genomes for 2 salmonids provided strong evidence that many of these loci are found on chromosomes orthologous to the known sex chromosome in sockeye salmon. Our study is the first to describe the approximate location of the sex-determining region in sockeye salmon and indicates that sdY is also the master sex-determining gene in this species. However, discordances between sdY genotypes and phenotypic sex and the variable performance of GBS-derived loci warrant more research.
可用于筛选鲑鱼性别的基因座能够为野生和养殖种群的研究提供重要信息。在此,我们针对通过简化基因组测序(GBS)数据集获得的数千个基因座,测试了性别与基因型之间的关联,以发现红大麻哈鱼(Oncorhynchus nerka)中与性别相关的基因座。我们发现了7个与性别相关的基因座,针对其中2个基因座开发了高通量检测方法,并在从北美各地采集的8组红大麻哈鱼样本中测试了这2种检测方法的实用性。我们还在这些样本中筛选了一种基于鲑鱼主要性别决定基因(sdY)的现有检测方法。基于GBS获得的基因座将鱼分配到其表型性别的能力在不同样本组中差异很大,这表明我们发现的基因座与性别决定基因之间发生了重组。使用sdY检测方法对表型性别的分配准确率要高得多,但仍低于100%。将GBS衍生基因座的序列与两种鲑科鱼类的基因组草图进行比对,有力地证明了其中许多基因座位于与红大麻哈鱼已知性染色体同源的染色体上。我们的研究首次描述了红大麻哈鱼性别决定区域的大致位置,并表明sdY也是该物种的主要性别决定基因。然而,sdY基因型与表型性别之间的不一致以及GBS衍生基因座的可变性能值得进一步研究。