Fish community composition detected using traditional fishing and eDNA in Dianchi Lake, Southwest China

被引:0
|
作者
Kai Zhang
Zhiqiang Xia
Zijin Hong
Zihao Fu
Qiuhan Li
Xuexiu Chang
Guangjie Chen
Hugh J. MacIsaac
机构
[1] University of Windsor,Great Lakes Institute for Environmental Research
[2] Yunnan University,School of Ecology and Environmental Science
[3] Kunming University,Yunnan Collaborative Innovation Center for Plateau Lake Ecology and Environmental Health, College of Agronomy and Life Sciences
[4] Yunnan Normal University,Yunnan Key Laboratory of Plateau Geographical Processes and Environment Change, Faculty of Geography
[5] Kunming University of Science and Technology,Faculty of Environmental Science and Engineering
[6] China Jiliang University,College of Quality and Safety Engineering
来源
Hydrobiologia | 2024年 / 851卷
关键词
Endangered fish; Aquatic invasive species; eDNA; Conservation; Plateau lakes; Quantitative real-time PCR;
D O I
暂无
中图分类号
学科分类号
摘要
Dianchi Lake is a eutrophic lake in Yunnan, China with many endangered or extinct native fish species. We sought to explore the fish community using traditional netting and trapping methods and, for the critically endangered golden-line barbel Sinocyclocheilus grahami, environmental DNA (eDNA) to detect its presence and distribution in the lake. Using traditional netting and trapping methods, we found that the fish community has been almost completely converted to non-native species (~ 97% of abundance). Loss of native fishes was serious, with ~ 77% of historical species not detected. We designed sensitive species-specific primers for the mitochondrial COI gene specific to S. grahami and sampled eDNA throughout the lake. While only two individuals of S. grahami were caught using traditional methods, eDNA analysis revealed its presence across the central and southern regions of the lake. While it is unclear if the fish detected represent a recovering population or recently stocked individuals, occurrence records for the fish were inversely related to regions of the lake that suffered serious cyanobacteria blooms. This study highlights the sensitivity and utility of eDNA for non-destructively detecting presence of an endangered fish species.
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页码:1535 / 1549
页数:14
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