Bao Hancheng, Xue Na, Wang Boyuan, Yu Han, Huang Ming, He Jinghong, Dong Shuanglin, Zhou Yangen, Gao Qinfeng, Tian Yuan
Ocean University of China, Qingdao, Shandong, People's Republic of China.
Auburn University, Auburn, AL, USA.
Open Biol. 2025 May;15(5):240382. doi: 10.1098/rsob.240382. Epub 2025 May 21.
Gene presence/absence variations (PAVs) have been considered as the important determinants of genome evolution and phenotypic diversity. However, studies on gene PAVs have been poorly documented, especially in fishes. In the present study, the pan-genome of rainbow trout was constructed based on 268 whole-genome re-sequencing accessions (4.38 Tb data). It recovered an additional 62 Mb sequences and 1288 protein-coding genes. Then, 9831 (22.77%) gene PAVs were genotyped across the 268 individuals. PAV-based PCA analysis, together with phylogenetic topology and STRUCTURE, revealed the clear separation among the different wild and selection populations. Additionally, a PAV-based genome-wide association study (GWAS) identified three candidate PAVs significantly associated with artificial selection. Meanwhile, fixation index analysis revealed 35 PAVs with significant frequency differences between wild and selection populations in Canada, while 15 candidate PAVs were detected between the populations in America. Their biological functions have been reported to participate in the regulation of growth performance and stress response. The present study deepens our understanding of widespread gene PAVs and facilitates the identification of key candidates that contribute to important traits.
基因存在/缺失变异(PAVs)被认为是基因组进化和表型多样性的重要决定因素。然而,关于基因PAVs的研究记录很少,尤其是在鱼类中。在本研究中,基于268个全基因组重测序样本(4.38 Tb数据)构建了虹鳟鱼的泛基因组。它额外获得了62 Mb序列和1288个蛋白质编码基因。然后,在268个个体中对9831个(22.77%)基因PAVs进行了基因分型。基于PAV的主成分分析,结合系统发育拓扑结构和群体结构分析,揭示了不同野生群体和选育群体之间的明显分化。此外,基于PAV的全基因组关联研究(GWAS)确定了三个与人工选择显著相关的候选PAVs。同时,固定指数分析显示,加拿大野生群体和选育群体之间有35个PAVs存在显著的频率差异,而在美国的群体之间检测到15个候选PAVs。据报道,它们的生物学功能参与生长性能和应激反应的调节。本研究加深了我们对广泛存在的基因PAVs的理解,并有助于识别对重要性状有贡献的关键候选基因。