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草鱼生长性状的全基因组关联分析和基因组选择

Genome-Wide Association Analysis and Genomic Selection for Growth Traits in Grass Carp ().

作者信息

Chen Yuxuan, Yu Qiaozhen, Lv Wenyao, Sheng Tao, Gui Lang, Qiu Junqiang, Xu Xiaoyan, Li Jiale

机构信息

Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai 201306, China.

Key Laboratory of Integrated Rice-Fish Farming, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai 201306, China.

出版信息

Animals (Basel). 2025 Jun 26;15(13):1888. doi: 10.3390/ani15131888.

Abstract

Grass carp (), a globally important aquaculture species, exhibits protein-dependent growth plasticity, requiring genetic improvement for sustainable production. This study integrates genome-wide association analysis (GWAS) and genomic selection (GS) to unravel the genetic architecture of four growth traits, body weight, body length, body height, and body depth, in grass carp fed with diets of varying protein levels (20%, 25%, 30%, and 35%). Using a 21K liquid SNP array, we identified 62,736 high-quality SNPs across 24 chromosomes, with 90 SNPs significantly associated with growth traits. Notably, three SNPs (SLG14_24417024, SLG14_24417039, SLG24_30276273) exhibited pleiotropic effects on multiple traits. Functional annotation of 276 candidate genes near significant SNPs revealed enrichment in keratinocyte development, septin cytoskeleton organization, and heat acclimation pathways. Genomic prediction achieved accuracies up to 0.79 for body weight traits using 1533 optimal markers. This study provides the first comprehensive SNP resource for grass carp growth traits with different dietary treatments, bridging GWAS and genomic prediction to accelerate marker-assisted selection. Our findings not only advance genetic breeding strategies but also inform protein diet optimization, minimizing economic and environmental costs in aquaculture.

摘要

草鱼是一种全球重要的水产养殖物种,具有蛋白质依赖性生长可塑性,需要通过遗传改良实现可持续生产。本研究整合全基因组关联分析(GWAS)和基因组选择(GS),以揭示在不同蛋白质水平(20%、25%、30%和35%)日粮喂养下草鱼的体重、体长、体高和体深这四个生长性状的遗传结构。使用21K液体SNP芯片,我们在24条染色体上鉴定出62,736个高质量SNP,其中90个SNP与生长性状显著相关。值得注意的是,三个SNP(SLG14_24417024、SLG14_24417039、SLG24_30276273)对多个性状表现出多效性影响。对显著SNP附近的276个候选基因进行功能注释,发现其在角质形成细胞发育、septin细胞骨架组织和热适应途径中富集。使用1533个最佳标记,基因组预测对体重性状的准确率高达0.79。本研究为不同日粮处理下草鱼生长性状提供了首个全面的SNP资源,将GWAS与基因组预测相结合以加速标记辅助选择。我们的研究结果不仅推进了遗传育种策略,还为蛋白质日粮优化提供了依据,从而将水产养殖中的经济和环境成本降至最低。

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