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Construction of a high-density genetic linkage map and mapping of quantitative trait loci for growth-related traits in silver carp (Hypophthalmichthys molitrix)

机译:在银鲤鱼中的生长相关性状的高密度遗传联系地图和定量性状基因座的构建(次疗中的骨丘米质)

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High-density genetic map and quantitative trait loci (QTL) mapping are powerful tools for identifying genomic regions that may be responsible for such polygenic trait as growth. A high-density genetic linkage map was constructed by sequencing 198 individuals in a Fsub1/sub family of silver carp (Hypophthalmichthys molitrix) in this study. This genetic map spans a length of 2,721.07?cM with 3,134 SNPs distributed on 24 linkage groups (LGs). Comparative genomic mapping presented a high level of syntenic relationship between silver carp and zebrafish. We detected one major and nineteen suggestive QTL for 4 growth-related traits (body length, body height, head length and body weight) at 6, 12 and 18 months post hatch (mph), explaining 10.2~19.5% of phenotypic variation. All six QTL for growth traits of 12 mph generally overlapped with QTL for 6 mph, while the majority of QTL for 18 mph were identified on two additional LGs, which may reveal a different genetic modulation during early and late muscle growth stages. Four potential candidate genes were identified from the QTL regions by homology searching of marker sequences against zebrafish genome. Hepcidin, a potential candidate gene identified from a QTL interval on LG16, was significantly associated with growth traits in the analyses of both phenotype-SNP association and mRNA expression between small-size and large-size groups of silver carp. These results provide a basis for elucidating the genetic mechanisms for growth and body formation in silver carp, a world aquaculture fish.
机译:高密度遗传图谱和定量性状基因座(QTL)映射是识别可能负责这种多种基因特征作为生长的基因组区域的强大工具。在本研究中,通过在F 1 / sub> Silver Carp(次疗疗法)家族中的198个个体中来构建高密度遗传联系地图。该遗传图横跨2,721.07Ω厘米的长度为2,721.07厘米,在24个连杆组(LGs)上分布了3,134个SNP。比较基因组映射呈现了银鲤鱼和斑马鱼之间的高水平的同义关系。我们在孵化后6,12和18个月内检测到一个主要和十九个暗示QTL,在6,12和18个月内(MPH),术后10.2〜19.5%的表型变异。所有六个QTL对于12英里/小时的12英里/小时的生长性状,通常用QTL重叠6英里/小时,而在两种额外的LG上鉴定了18英里/小时的大多数QTL,这可能在早期和晚期肌肉生长阶段揭示不同的遗传调制。通过对斑马鱼基因组的标记序列的同源搜索,从QTL区域鉴定了四种潜在的候选基因。 Hepcidin,从LG16上鉴定的潜在候选基因鉴定在LG16上,与生长性质显着相关,所述生长性状与细胞型-SNP关联和小尺寸和大型银鲤之间mRNA表达的分析。这些结果为阐明了世界水产养殖鱼类中银鲤鱼生长和体内形成的遗传机制提供了依据。

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