生物指示剂
生物监测
环境DNA
栖息地
生态学
生物
生物完整性指数
生境破碎化
淡水鱼
生物多样性
生物完整性
生态系统
水生生态系统
碎片(计算)
指示物种
水质
淡水生态系统
环境变化
流域
河流生态系统
抽样设计
渔业
环境科学
栖息地破坏
环境指标
生态系统健康
溪流
群落结构
鱼类资源
生态指标
作者
Olivier Morissette,Guillaume Côté,Marc‐Antoine Couillard,Rémy Pouliot,Louis Bernatchez
标识
DOI:10.1111/1755-0998.70131
摘要
Various anthropogenic disturbances affect the succession of aquatic habitats along dendritic river networks. Bioindicator taxa, such as fish, can be used to assess the effects of these disturbances on habitat quality. Environmental DNA (eDNA) metabarcoding offers a novel approach to complement traditional sampling and analysis of bioindicator taxa. Here, we apply a trait-based biomonitoring framework, focusing on fish tolerance to pollution, to assess habitat quality and fragmentation within two watersheds in southern Québec (Canada). We sampled 193 sites within the dendritic networks of the Châteauguay and St. François watersheds and estimated fish community tolerance indices on the basis of 12S metabarcoding. We found a significant correlation between the fish community tolerance index and environmental factors such as subwatershed land use, precipitation and elevation. We also found that river fragmentation caused by dams affected fish assemblages and native fish movement but also prevented the spread of the non-native common carp. Finally, we applied random-forest modelling to predict the tolerance of fish communities to disturbances in unsampled areas, providing a broader understanding of habitat quality within catchments. Our research highlights how eDNA metabarcoding for large-scale biomonitoring and river fragmentation studies provides a cost-effective and non-invasive method for assessing fish biodiversity and riverine ecosystem health.
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