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ddRADseq 辅助构建高密度 SNP 遗传图谱和生长相关性状的 QTL 精细定位在斑点叉尾鮰(Scatophagus argus)。

ddRADseq-assisted construction of a high-density SNP genetic map and QTL fine mapping for growth-related traits in the spotted scat (Scatophagus argus).

机构信息

Southern Marine Science and Engineering Guangdong Laboratory (Zhanjiang), Guangdong Research Center on Reproductive Control and Breeding Technology of Indigenous Valuable Fish Species, Fisheries College, Guangdong Ocean University, Zhanjiang, 524088, China.

Food and Environmental Engineering Department, Yangjiang Polytechnic, Yangjiang, 529566, China.

出版信息

BMC Genomics. 2020 Apr 3;21(1):278. doi: 10.1186/s12864-020-6658-1.

Abstract

BACKGROUND

Scatophagus argus is a popular farmed fish in several countries of Southeast Asia, including China. Although S. argus has a highly promising economic value, a significant lag of breeding research severely obstructs the sustainable development of aquaculture industry. As one of the most important economic traits, growth traits are controlled by multiple gene loci called quantitative trait loci (QTLs). It is urgently needed to launch a marker assisted selection (MAS) breeding program to improve growth and other pivotal traits. Thus a high-density genetic linkage map is necessary for the fine mapping of QTLs associated with target traits.

RESULTS

Using restriction site-associated DNA sequencing, 6196 single nucleotide polymorphism (SNP) markers were developed from a full-sib mapping population for genetic map construction. A total of 6193 SNPs were grouped into 24 linkage groups (LGs), and the total length reached 2191.65 cM with an average marker interval of 0.35 cM. Comparative genome mapping revealed 23 one-to-one and 1 one-to-two syntenic relationships between S. argus LGs and Larimichthys crocea chromosomes. Based on the high-quality linkage map, a total of 44 QTLs associated with growth-related traits were identified on 11 LGs. Of which, 19 significant QTLs for body weight were detected on 9 LGs, explaining 8.8-19.6% of phenotypic variances. Within genomic regions flanking the SNP markers in QTL intervals, we predicted 15 candidate genes showing potential relationships with growth, such as Hbp1, Vgll4 and Pim3, which merit further functional exploration.

CONCLUSIONS

The first SNP genetic map with a fine resolution of 0.35 cM for S. argus has been developed, which shows a high level of syntenic relationship with L. crocea genomes. This map can provide valuable information for future genetic, genomic and evolutionary studies. The QTLs and SNP markers significantly associated with growth-related traits will act as useful tools in gene mapping, map-based cloning and MAS breeding to speed up the genetic improvement in important traits of S. argus. The interesting candidate genes are promising for further investigations and have the potential to provide deeper insights into growth regulation in the future.

摘要

背景

沙塘鳢是东南亚几个国家(包括中国)流行的养殖鱼类。尽管沙塘鳢具有很高的经济价值,但养殖研究的显著滞后严重阻碍了水产养殖业的可持续发展。作为最重要的经济性状之一,生长性状由多个称为数量性状基因座(QTLs)的基因座控制。迫切需要启动标记辅助选择(MAS)育种计划,以改善生长和其他关键性状。因此,需要构建高密度遗传连锁图谱,以便对与目标性状相关的 QTL 进行精细定位。

结果

利用限制性位点相关 DNA 测序,从全同胞作图群体中开发了 6196 个单核苷酸多态性(SNP)标记,用于遗传图谱构建。总共 6193 个 SNP 被分为 24 个连锁群(LG),总长度为 2191.65cM,平均标记间隔为 0.35cM。比较基因组作图揭示了沙塘鳢 LG 与大黄鱼染色体之间存在 23 个一对一和 1 个一对二的同线性关系。基于高质量的连锁图谱,在 11 个 LG 上共鉴定出 44 个与生长相关性状相关的 QTL。其中,在 9 个 LG 上检测到 19 个与体重显著相关的 QTL,解释了表型方差的 8.8-19.6%。在 QTL 区间内 SNP 标记侧翼的基因组区域内,我们预测了 15 个候选基因,这些基因与生长具有潜在关系,如 Hbp1、Vgll4 和 Pim3,值得进一步的功能探索。

结论

首次开发了沙塘鳢的 SNP 遗传图谱,分辨率为 0.35cM,与大黄鱼基因组具有高度的同线性关系。该图谱可为未来的遗传、基因组和进化研究提供有价值的信息。与生长相关性状显著相关的 QTL 和 SNP 标记将作为基因定位、图谱克隆和 MAS 育种的有用工具,加速沙塘鳢重要性状的遗传改良。有趣的候选基因具有进一步研究的潜力,有望为未来的生长调控提供更深入的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1629/7126399/7ed600aa37e9/12864_2020_6658_Fig1_HTML.jpg

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