首页> 外文期刊>International Journal of Molecular Sciences >Integrative Transcriptome, Genome and Quantitative Trait Loci Resources Identify Single Nucleotide Polymorphisms in Candidate Genes for Growth Traits in Turbot
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Integrative Transcriptome, Genome and Quantitative Trait Loci Resources Identify Single Nucleotide Polymorphisms in Candidate Genes for Growth Traits in Turbot

机译:整合转录组,基因组和数量性状位点资源确定候选基因中的单个核苷酸多态性为菱Turbo的生长性状。

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Growth traits represent a main goal in aquaculture breeding programs and may be related to adaptive variation in wild fisheries. Integrating quantitative trait loci (QTL) mapping and next generation sequencing can greatly help to identify variation in candidate genes, which can result in marker-assisted selection and better genetic structure information. Turbot is a commercially important flatfish in Europe and China, with available genomic information on QTLs and genome mapping. Muscle and liver RNA-seq from 18 individuals was carried out to obtain gene sequences and markers functionally related to growth, resulting in a total of 20,447 genes and 85,344 single nucleotide polymorphisms (SNPs). Many growth-related genes and SNPs were identified and placed in the turbot genome and genetic map to explore their co-localization with growth-QTL markers. Forty-five SNPs on growth-related genes were selected based on QTL co-localization and relevant function for growth traits. Forty-three SNPs were technically feasible and validated in a wild Atlantic population, where 91% were polymorphic. The integration of functional and structural genomic resources in turbot provides a practical approach for QTL mining in this species. Validated SNPs represent a useful set of growth-related gene markers for future association, functional and population studies in this flatfish species.
机译:生长性状代表了水产养殖育种计划的主要目标,可能与野生渔业的适应性变化有关。整合数量性状基因座(QTL)定位和下一代测序可以极大地帮助鉴定候选基因的变异,从而可以进行标记辅助选择和更好的遗传结构信息。 Turbot是在欧洲和中国具有重要商业意义的比目鱼,具有有关QTL和基因组作图的可用基因组信息。进行了来自18个个体的肌肉和肝脏RNA-seq,以获得与生长功能相关的基因序列和标记,从而产生了总计20,447个基因和85,344个单核苷酸多态性(SNP)。鉴定了许多与生长相关的基因和SNP,并将其置于大菱t基因组和遗传图谱中,以探索它们与生长QTL标记的共定位。基于QTL共定位和生长性状的相关功能,选择了与生长相关的基因的45个SNP。 43个SNP在技术上是可行的,并在野生大西洋种群中进行了验证,其中91%是多态的。菱turbo中功能和结构基因组资源的整合为该物种的QTL挖掘提供了一种实用的方法。经过验证的SNP代表了一组与生长相关的基因标记,可用于该比目鱼物种的未来关联,功能和种群研究。

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