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全基因组重测序揭示了暖温带和亚热带沙塘鳢种群的遗传多样性和选择信号。

Whole-genome resequencing reveals genetic diversity and selection signals in warm temperate and subtropical Sillago sinica populations.

机构信息

The Key Laboratory of Mariculture (Ocean University of China), Ministry of Education, Qingdao, 266003, Shandong, China.

Zhejiang Fisheries Technical Extension Center, Hangzhou, 310023, Zhejiang, China.

出版信息

BMC Genomics. 2023 Sep 15;24(1):547. doi: 10.1186/s12864-023-09652-3.

Abstract

BACKGROUND

Genetic diversity and heterogeneous genomic signatures in marine fish populations may result from selection pressures driven by the strong effects of environmental change. Nearshore fishes are often exposed to complex environments and human activities, especially those with small ranges. However, studies on genetic diversity and population selection signals in these species have mostly been based on a relatively small number of genetic markers. As a newly recorded species of Sillaginidae, the population genetics and genomic selection signals of Sillago sinica are fragmented or even absent.

RESULTS

To address this theoretical gap, we performed whole-genome resequencing of 43 S. sinica individuals from Dongying (DY), Qingdao (QD) and Wenzhou (WZ) populations and obtained 4,878,771 high-quality SNPs. Population genetic analysis showed that the genetic diversity of S. sinica populations was low, but the genetic diversity of the WZ population was higher than that of the other two populations. Interestingly, the three populations were not strictly clustered within the group defined by their sampling location but showed an obvious geographic structure signal from the warm temperate to the subtropics. With further analysis, warm-temperate populations exhibited strong selection signals in genomic regions related to nervous system development, sensory function and immune function. However, subtropical populations showed more selective signalling for environmental tolerance and stress signal transduction.

CONCLUSIONS

Genome-wide SNPs provide high-quality data to support genetic studies and localization of selection signals in S. sinica populations. The reduction in genetic diversity may be related to the bottleneck effect. Considering that low genetic diversity leads to reduced environmental adaptability, conservation efforts and genetic diversity monitoring of this species should be increased in the future. Differences in genomic selection signals between warm temperate and subtropical populations may be related to human activities and changes in environmental complexity. This study deepened the understanding of population genetics and genomic selection signatures in nearshore fishes and provided a theoretical basis for exploring the potential mechanisms of genomic variation in marine fishes driven by environmental selection pressures.

摘要

背景

海洋鱼类种群的遗传多样性和异质基因组特征可能是由环境变化强烈影响驱动的选择压力造成的。近岸鱼类经常暴露在复杂的环境和人类活动中,尤其是那些分布范围较小的鱼类。然而,对这些物种遗传多样性和种群选择信号的研究大多基于相对较少的遗传标记。作为沙塘鳢科的一个新记录种,中国沙塘鳢的群体遗传学和基因组选择信号是碎片化的,甚至是缺失的。

结果

为了解决这一理论空白,我们对来自东营(DY)、青岛(QD)和温州(WZ)种群的 43 条中国沙塘鳢个体进行了全基因组重测序,获得了 4878771 个高质量 SNPs。种群遗传分析表明,中国沙塘鳢种群的遗传多样性较低,但 WZ 种群的遗传多样性高于其他两个种群。有趣的是,这三个种群并没有严格按照采样地点聚类,而是表现出从暖温带到亚热带的明显地理结构信号。进一步分析表明,暖温带种群在与神经系统发育、感觉功能和免疫功能相关的基因组区域表现出强烈的选择信号。然而,亚热带种群表现出更多与环境耐受和应激信号转导相关的选择信号。

结论

全基因组 SNPs 提供了高质量的数据,支持了中国沙塘鳢种群的遗传研究和选择信号定位。遗传多样性的减少可能与瓶颈效应有关。考虑到遗传多样性的降低会导致环境适应能力降低,未来应加强对该物种的保护努力和遗传多样性监测。暖温带和亚热带种群之间基因组选择信号的差异可能与人类活动和环境复杂性变化有关。本研究深化了对近岸鱼类群体遗传学和基因组选择特征的认识,为探索海洋鱼类基因组变异的潜在机制提供了理论依据,这些机制是由环境选择压力驱动的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f957/10503073/112b647a28fb/12864_2023_9652_Fig1_HTML.jpg

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