Structural variant landscape provides insights into genome organisation and domestication in European seabass.

IF 4.5 1区 生物学 Q1 BIOLOGY
Zexin Jiao, Robert Mukiibi, Manu Kumar Gundappa, Massimiliano Babbucci, James G D Prendergast, Diego Robledo, Luca Bargelloni, Daniel J Macqueen
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引用次数: 0

Abstract

Background: Structural variants (SVs) are genetic polymorphisms including deletions, insertions, inversions, and duplications, with potential to influence traits through impacts on gene function and expression. SVs have not been widely utilized in genetic analysis, owing to the challenge of their accurate detection and genotyping. Addressing this general issue, and the broader demand to understand their role in commercially important taxa, we report a comprehensive analysis of SVs in the genome of European seabass (Dicentrarchus labrax), the most commercially important fish in the Mediterranean region.

Results: Using whole genome sequencing from a farmed population (n = 90 samples), 21,428 SVs were identified using a comprehensive detection and genotyping strategy involving manual curation of every variant. This high-confidence SV atlas was annotated to predict impacts on genes and evolutionarily conserved sequences. We explored the overlap between SVs and repeats, identified heterogeneity in SV density across the genome, and tested if the coding genes disrupted by SVs are enriched for specific biological processes or conserved protein domains. SVs impacting evolutionarily conserved genomic regions were enriched in genes with nervous system and developmental functions. Finally, we performed a comparative analysis incorporating 38,408 high-confidence SVs identified independently for three wild populations (n = 80 samples) using identical methods. An analysis of 41,336 SVs merged across the two datasets provides insights into genes and biological functions targeted during aquaculture domestication, with evidence of shifts in allele frequency for SVs located within or near genes controlling behaviour, enriched for forebrain and synaptic functions, and specifically expressed in the brain.

Conclusions: This study sheds light on the global organisation of SVs across the European seabass genome, revealing a potential role in aquaculture domestication. The reported datasets provide a novel, high-quality reference for future genetic investigations of both farmed and wild European seabass.

结构变异景观提供了对欧洲鲈鱼基因组组织和驯化的见解。
背景:结构变异(SVs)是一种遗传多态性,包括缺失、插入、倒置和重复,可能通过影响基因功能和表达来影响性状。由于难以准确检测和分型,sv尚未在遗传分析中得到广泛应用。针对这一普遍问题,以及了解其在重要商业分类群中的作用的更广泛需求,我们报告了对地中海地区最重要的商业鱼类欧洲海鲈(Dicentrarchus labrax)基因组中sv的综合分析。结果:利用来自养殖种群(n = 90个样本)的全基因组测序,采用综合检测和基因分型策略,包括人工培养每个变异,鉴定出21,428种sv。这个高置信度的SV图谱被注释以预测对基因和进化保守序列的影响。我们探索了SV和重复序列之间的重叠,确定了整个基因组中SV密度的异质性,并测试了被SV破坏的编码基因是否为特定的生物过程或保守的蛋白质结构域富集。影响进化保守的基因组区域的SVs富含具有神经系统和发育功能的基因。最后,我们使用相同的方法对3个野生种群(n = 80个样本)独立鉴定的38408个高置信度sv进行了比较分析。通过对合并在两个数据集上的41336个SVs的分析,可以深入了解水产养殖驯化过程中针对的基因和生物学功能,并有证据表明,位于控制行为的基因内或附近的SVs的等位基因频率发生了变化,这些SVs丰富于前脑和突触功能,并在大脑中特异性表达。结论:本研究揭示了欧洲鲈鱼基因组中sv的全球组织,揭示了在水产养殖驯化中的潜在作用。报告的数据集为未来养殖和野生欧洲鲈鱼的遗传研究提供了新的、高质量的参考。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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