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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Genome-wide SNP identification for the construction of a high-resolution genetic map of Japanese flounder (Paralichthys olivaceus): applications to QTL mapping of Vibrio anguillarum disease resistance and comparative genomic analysis
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Genome-wide SNP identification for the construction of a high-resolution genetic map of Japanese flounder (Paralichthys olivaceus): applications to QTL mapping of Vibrio anguillarum disease resistance and comparative genomic analysis

机译:全基因组SNP鉴定,用于构建日本比目鱼(Paralichthys olivaceus)高分辨率遗传图谱:在鳗弧菌抗病性QTL定位中的应用和比较基因组分析

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摘要

High-resolution genetic maps are essential for fine mapping of complex traits, genome assembly, and comparative genomic analysis. Single-nucleotide polymorphisms (SNPs) are the primary molecular markers used for genetic map construction. In this study, we identified 13,362 SNPs evenly distributed across the Japanese flounder (Paralichthys olivaceus) genome. Of these SNPs, 12,712 high-confidence SNPs were subjected to high-throughput genotyping and assigned to 24 consensus linkage groups (LGs). The total length of the genetic linkage map was 3,497.29 cM with an average distance of 0.47 cM between loci, thereby representing the densest genetic map currently reported for Japanese flounder. Nine positive quantitative trait loci (QTLs) forming two main clusters for Vibrio anguillarum disease resistance were detected. All QTLs could explain 5.1-8.38% of the total phenotypic variation. Synteny analysis of the QTL regions on the genome assembly revealed 12 immune-related genes, among them 4 genes strongly associated with V. anguillarum disease resistance. In addition, 246 genome assembly scaffolds with an average size of 21.79 Mb were anchored onto the LGs; these scaffolds, comprising 522.99 Mb, represented 95.78% of assembled genomic sequences. The mapped assembly scaffolds in Japanese flounder were used for genome synteny analyses against zebrafish (Danio rerio) and medaka (Oryzias latipes). Flounder and medaka were found to possess almost one-to-one synteny, whereas flounder and zebrafish exhibited a multi-syntenic correspondence. The newly developed high-resolution genetic map, which will facilitate QTL mapping, scaffold assembly, and genome synteny analysis of Japanese flounder, marks a milestone in the ongoing genome project for this species.
机译:高分辨率遗传图谱对于复杂性状的精细定位,基因组装配和比较基因组分析至关重要。单核苷酸多态性(SNP)是用于遗传图谱构建的主要分子标记。在这项研究中,我们确定了13,362个SNP均匀分布在日本比目鱼(Paralichthys olivaceus)基因组中。在这些SNP中,对12,712个高信度SNP进行了高通量基因分型,并分配给24个共有键组(LG)。遗传连锁图谱的总长度为3,497.29 cM,位点之间的平均距离为0.47 cM,从而代表了目前报道的日本比目鱼最密集的遗传图谱。检测到九个阳性定量性状基因座(QTL),形成两个主要的鳗弧菌抗病性簇。所有QTL都可以解释总表型变异的5.1-8.38%。对基因组组装体上的QTL区进行同步分析,发现了12个与免疫相关的基因,其中4个与鳗弧菌抗病性密切相关。另外,将246个平均大小为21.79 Mb的基因组组装支架锚定在LG上;这些包含522.99 Mb的支架代表组装基因组序列的95.78%。将日本比目鱼的标绘装配支架用于针对斑马鱼(Danio rerio)和medaka(Oryzias latipes)的基因组协同分析。比目鱼和青aka被发现具有几乎一对一的同义,而比目鱼和斑马鱼表现出多同义的对应。新开发的高分辨率遗传图谱将有助于对日本比目鱼进行QTL定位,支架组装和基因组同源性分析,这是该物种正在进行的基因组计划中的一个里程碑。

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