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宏条形码技术揭示了丹江河流域鱼类多样性和群落结构的差异。

eDNA metabarcoding reveals differences in fish diversity and community structure in Danjiang River.

机构信息

Shaanxi Key Laboratory of Qinling Ecological Security, Shaanxi Institute of Zoology, Xi'an, 710032, China.

MGI Tech, Shenzhen, 518083, China.

出版信息

Sci Rep. 2024 Nov 27;14(1):29460. doi: 10.1038/s41598-024-80907-z.

Abstract

Fish diversity, an important indicator of aquatic ecosystem health, is declining due to water pollution, overfishing, climate change, and invasive species. Effective surveying and monitoring are required to protect fish diversity. Here, a high-sensitivity environmental DNA (eDNA) metabarcoding technique was used to investigate fish diversity in the Danjiang River, Shaanxi Province, China. In total, 59 species were identified in eight orders, 19 families, and 40 genera. Cypriniformes and Perciformes were the main groups in the survey area, while Cyprinidae accounted for 50.85% of the total fish species. Rhinogobius similis (19%), Hemibarbus umbrifer (11%), Gnathopogon herzensteini (10%), Triplophysa stewarti (8%), and Zacco platypus (7%) were the dominant species. Eight rare and two exotic fish species were identified. Combined with analysis of historical data, the richness of fish identified using eDNA metabarcoding was significantly higher than that of fish captured in ground cages. Temperature, pH, and oxidation-reduction potential are the main environmental factors that affect the spatial distribution of fish communities. These results suggest that eDNA metabarcoding could be a new tool with broad application prospects; however, local databases must be improved. This study provides theoretical data and a methodological reference for protecting and managing fish diversity in the Qinling Mountains.

摘要

鱼类多样性是水生生态系统健康的重要指标,然而由于水污染、过度捕捞、气候变化和入侵物种等因素,鱼类多样性正不断减少。因此,需要进行有效的调查和监测来保护鱼类多样性。本研究采用高灵敏度的环境 DNA(eDNA) 宏条形码技术,对陕西省丹江流域的鱼类多样性进行了调查。共鉴定出 59 种鱼类,隶属于 8 目、19 科、40 属。研究区域以鲤形目和鲈形目为主,鲤科鱼类占总鱼类物种的 50.85%。短须颌须鮈(19%)、乌鳢(11%)、赫氏颌须鮈(10%)、施氏细鲫(8%)和圆口铜鱼(7%)为优势种。此外,还鉴定出 8 种稀有鱼类和 2 种外来鱼类。结合历史数据分析,eDNA 宏条形码技术鉴定出的鱼类丰富度明显高于地笼捕获的鱼类。温度、pH 值和氧化还原电位是影响鱼类群落空间分布的主要环境因素。这些结果表明,eDNA 宏条形码技术可能是一种具有广阔应用前景的新工具,但需要改进本地数据库。本研究为保护和管理秦岭地区的鱼类多样性提供了理论数据和方法学参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbb6/11603232/ac62e27bf8d9/41598_2024_80907_Fig2_HTML.jpg

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