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基于环境DNA宏条形码技术的长江上游重庆段鱼类群落多样性及时空动态

Diversity and spatiotemporal dynamics of fish communities in the Chongqing section of the upper Yangtze River based on eDNA metabarcoding.

作者信息

Shen Yanjun, Zhang Yufeng, Cheng Ruli, Wang Wei, Duan Cong, Liu Zhihao, Chen Qiliang, Li Yingwen, Wang Meng, Luo Yang

机构信息

Laboratory of Water Ecological Health and Environmental Safety, School of Life Sciences Chongqing Normal University Chongqing China.

Chongqing Rare and Endemic Fish National Nature Reserve Management Office Chongqing China.

出版信息

Ecol Evol. 2023 Nov 10;13(11):e10681. doi: 10.1002/ece3.10681. eCollection 2023 Nov.

Abstract

Fish diversity plays a critical role in maintaining the balance of water ecosystems, especially in the Chongqing section of the National Nature Reserve for Rare and Endemic Fishes in the upper Yangtze River, which serves as an important habitat for rare and endemic fish, as well as an important channel for the replenishment of fishery resources in the Three Gorges Reservoir. Under a 10-year ban on fishing in the Yangtze River basin, we investigate fish diversity and seasonal variation in the Reserve by using environmental DNA (eDNA) metabarcoding. We found fishes belonging to 85 genera, 24 families, and 8 orders in the Reserve. A comparison of eDNA metabarcoding results with the diversity of a recent fish catch revealed that eDNA metabarcoding not only enables rapid and efficient fish monitoring but also has a high sensitivity. Furthermore, the study demonstrates that eDNA metabarcoding can be used as a tool for monitoring seasonal variations of fish composition in freshwater ecosystems. The alpha and beta diversity analysis both showed compositional differences in the fish community in accordance with seasonal variations. In addition, changes in eDNA relative sequence abundance and the detection of fish species at different sampling sites may reflect shifts in habitat use and distribution. Thus, we provide detailed seasonal data on fish diversity in the Chongqing section of the Reserve. This will contribute to conservation and to the understanding of fish diversity and community dynamics in the Chongqing section of the Reserve.

摘要

鱼类多样性在维持水生态系统平衡方面发挥着关键作用,特别是在长江上游珍稀特有鱼类国家级自然保护区的重庆段,该区域是珍稀特有鱼类的重要栖息地,也是三峡水库渔业资源补充的重要通道。在长江流域十年禁渔期内,我们利用环境DNA(eDNA)宏条形码技术调查了该保护区的鱼类多样性和季节变化。我们在保护区发现了隶属于8目24科85属的鱼类。将eDNA宏条形码技术的结果与近期鱼类捕捞的多样性进行比较后发现,eDNA宏条形码技术不仅能够实现快速高效的鱼类监测,而且具有很高的灵敏度。此外,该研究表明,eDNA宏条形码技术可作为监测淡水生态系统中鱼类组成季节变化的工具。α多样性和β多样性分析均显示,鱼类群落组成存在与季节变化一致的差异。此外,不同采样点eDNA相对序列丰度的变化以及鱼类物种的检测情况可能反映了栖息地利用和分布的变化。因此,我们提供了该保护区重庆段鱼类多样性的详细季节数据。这将有助于保护区的保护工作以及对该保护区重庆段鱼类多样性和群落动态的了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee95/10636638/6f4af8e33b6e/ECE3-13-e10681-g003.jpg

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