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High-resolution genetic linkage mapping, high-temperature tolerance and growth-related quantitative trait locus (QTL) identification in Marsupenaeus japonicus

机译:Mar鱼的高分辨率遗传连锁作图,高温耐受性和与生长相关的数量性状基因座(QTL)鉴定

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The Kuruma prawn, Marsupenaeus japonicus, is one of the most promising marine invertebrates in the industry in Asia, Europe and Australia. However, the increasing global temperatures result in considerable economic losses in M. japonicus farming. In the present study, to select genetically improved animals for the sustainable development of the Kuruma prawn industry, a high-resolution genetic linkage map and quantitative trait locus (QTL) identification were performed using the RAD technology. The maternal map contained 5849 SNP markers and spanned 3127.23 cM, with an average marker interval of 0.535 cM. Instead, the paternal map contained 3927 SNP markers and spanned 3326.19 cM, with an average marker interval of 0.847 cM. The consensus map contained 9289 SNP markers and spanned 3610.90 cM, with an average marker interval of 0.388 cM and coverage of 99.06 % of the genome. The markers were grouped into 41 linkage groups in the maps. Significantly, negative correlation was detected between high-temperature tolerance (UTT) and body weight (BW). The QTL mapping revealed 129 significant QTL loci for UTT and four significant QTL loci for BW at the genome-wide significance threshold. Among these QTLs, 129 overlapped with linked SNPs, and the remaining four were located in regions between contiguous SNPs. They explained the total phenotypic variance ranging from 8.9 to 12.4 %. Because of a significantly negative correlation between growth and high-temperature tolerance, we demonstrate that this high-resolution linkage map and QTLs would be useful for further marker-assisted selection in the genetic improvement of M. japonicus.
机译:Kuruma对虾Marsupenaeus japonicus是亚洲,欧洲和澳大利亚业界最有前途的海洋无脊椎动物之一。但是,全球气温的升高导致日本松藻的养殖造成可观的经济损失。在本研究中,为了选择遗传改良的动物以实现Kuruma对虾产业的可持续发展,使用RAD技术进行了高分辨率遗传连锁图谱和定量性状基因座(QTL)鉴定。母体图包含5849个SNP标记,跨度为3127.23 cM,平均标记间隔为0.535 cM。相反,父系图谱包含3927个SNP标记,跨度为3326.19 cM,平均标记间隔为0.847 cM。共有图谱包含9289个SNP标记,跨度3610.90 cM,平均标记间隔为0.388 cM,覆盖率达99.06%。这些标记在地图中分为41个链接组。显着地,在高温耐受性(UTT)和体重(BW)之间检测到负相关。 QTL作图揭示了在全基因组显着性阈值下,UTT的129个显着的QTL基因座和BW的4个显着的QTL基因座。在这些QTL中,有129个与链接的SNP重叠,其余四个位于连续SNP之间的区域。他们解释了总表型变异范围为8.9%至12.4%。由于生长和高温耐受性之间存在显着的负相关性,因此我们证明了这种高分辨率连锁图谱和QTLs可用于进一步鉴定日本血吸虫的遗传标记辅助选择。

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