大口黑鲈北方亚种与“优鲈3号”遗传多样性分析
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S917.4

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国家自然科学基金(32341061)


Genetic diversity analysis of northern subspecies and “YOULU No.3” strain of largemouth bass (Micropterus salmoides
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National Natural Science Foundation of China (NSFC) Special Project on Biological Breeding, 32341061

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    摘要:

    为了研究大口黑鲈(Micropterus salmoides)北方亚种(BFL)与“优鲈3号”(“YOULU No.3”)的群体遗传多样性状况,分析两个群体的亲缘关系和遗传差异,选取20尾北方亚种和20尾“优鲈3号”大口黑鲈进行全基因组测序,通过观测杂合度(Observed heterozygosity,Ho)、期望杂合度(Expected heterozygosity,He)、多态信息含量(Polymorphic information content,PIC)和核苷酸多样性(Nucleotide diversity,Pi)比较两个群体遗传多样性大小;利用系统发育树、亲缘关系矩阵、主成分分析、连锁不平衡(Linkage disequilibrium,LD)衰减曲线及Admixture分析来揭示两个群体的亲缘关系与遗传结构;最后,进行基于遗传分化指数(Fixation index, FST)和Pi的选择消除分析,筛选受选择的基因并进行GO(Gene ontology)与KEGG(Kyoto encyclopedia of genes and genomes)分析。结果显示,两个群体的HoHe、PIC值分别为0.329、0.344、0.276和0.327、0.342、0.275,二者间无显著差异(P>0.05),但北方亚种Pi值极显著高于“优鲈3号”(P<0.01)。系统发育树、亲缘关系矩阵、主成分分析与Admixture分析显示两个群体属于不同亚群。LD衰减分析表明,北方亚种衰减速度快于“优鲈3号”。选择消除分析结果显示,“优鲈3号”的第5、6、7、14、22、23号染色体受到强烈的选择信号,GO与KEGG富集结果显示,“优鲈3号”在养殖与驯化过程中,与摄食和免疫有关的基因受到选择。研究表明,北方亚种与“优鲈3号”来自不同亚群,北方亚种的遗传多样性较高,“优鲈3号”受到的选择压力更大,主要与摄食、免疫相关。本研究为大口黑鲈北方亚种与“优鲈3号”种质资源保护及遗传改良工作提供支持。

    Abstract:

    To investigate the genetic diversity, phylogenetic relationships, and genetic differences between the northern subspecies (BFL) and “YOULU No.3” strain of largemouth bass, this study analyzed the genetic diversity of both populations. A total of 20 individuals from the BFL and 20 from the “YOULU No. 3” strain were selected for whole-genome sequencing. Genetic diversity was assessed by comparing observed heterozygosity (Ho), expected heterozygosity (He), polymorphism information content (PIC), and nucleotide diversity (Pi) between the two populations. Phylogenetic relationships and genetic structure were explored through a phylogenetic tree, relationship matrix, principal component analysis (PCA), linkage disequilibrium decay curves, and Admixture analysis. Additionally, a selection scan based on population differentiation index (FST) and Pi was conducted to identify selected genes, followed by Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis. The results showed that the HoHe, and PIC values for the two populations were 0.329, 0.344, 0.276 for the BFL and 0.327, 0.342, 0.275 for “YOULU No.3,” with no significant differences (P>0.05). However, the Pi value of the BFL was significantly higher than that of “YOULU No.3” (P<0.01). Phylogenetic trees, relationship matrices, PCA, and admixture analysis revealed that the two populations belong to different subgroups. Linkage disequilibrium decay analysis indicated that the BFL exhibited faster decay than “YOULU No.3”. Selection scan results showed strong selection signals on chromosomes 5,6,7,14,22, and 23 in “YOULU No.3” GO and KEGG enrichment analysis suggested that genes related to feeding and immunity were under selection during the domestication and breeding of “YOULU No.3”. This study indicates that the BFL and “YOULU No.3” come from different subgroups, with the BFL exhibiting higher genetic diversity and “YOULU No.3” undergoing stronger selection pressures, mainly related to feeding and immunity. The findings provide support for the conservation and genetic improvement of largemouth bass resources.

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林翰翔,张思远,励翔,赖鸿伟,陈丽婷,肖俊,胡鹏,陈良标,周艳.大口黑鲈北方亚种与“优鲈3号”遗传多样性分析[J].上海海洋大学学报,2026,35(3):601-613.
LIN Hanxiang, ZHANG Siyuan, LI Xiang, LAI Hongwei, CHEN Liting, XIAO Jun, HU Peng, CHEN Liangbiao, ZHOU Yan. Genetic diversity analysis of northern subspecies and “YOULU No.3” strain of largemouth bass (Micropterus salmoides)[J]. Journal of Shanghai Ocean University,2026,35(3):601-613.

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  • 收稿日期:2025-02-18
  • 最后修改日期:2025-07-23
  • 录用日期:2025-08-03
  • 在线发布日期: 2026-05-11
  • 出版日期: 2026-03-31
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