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首页> 外文期刊>The Journal of Applied Ecology >Quantifying relative fish abundance with eDNA: a promising tool for fisheries management
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Quantifying relative fish abundance with eDNA: a promising tool for fisheries management

机译:量化鱼相对丰度与埃德娜:a有前途的渔业管理的工具

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Assessment and monitoring of exploited fish populations are challenged by costs, logistics and negative impacts on target populations. These factors therefore limit large-scale effective management strategies. Evidence is growing that the quantity of eDNA may be related not only to species presence/absence, but also to species abundance. In this study, the concentrations of environmental DNA (eDNA) from a highly prized sport fish species, Lake Trout Salvelinus namaycush (Walbaum 1792), were estimated in water samples from 12 natural lakes and compared to abundance and biomass data obtained from standardized gillnet catches as performed routinely for fisheries management purposes. To reduce environmental variability among lakes, all lakes were sampled in spring, between ice melt and water stratification. The eDNA concentration did not vary significantly with water temperature, dissolved oxygen, pH and turbidity, but was significantly positively correlated with relative fish abundance estimated as catch per unit effort (CPUE), whereas the relationship with biomass per unit effort (BPUE) was less pronounced. The value of eDNA to inform about local aquatic species distribution was further supported by the similarity between the spatial heterogeneity of eDNA distribution and spatial variation in CPUE measured by the gillnet method.Synthesis and applications. Large-scale empirical evidence of the relationship between the eDNA concentration and species abundance allows for the assessment of the potential to integrate eDNA within fisheries management plans. As such, the eDNA quantitative method represents a promising population abundance assessment tool that could significantly reduce the costs associated with sampling and increase the power of detection, the spatial coverage and the frequency of sampling, without any negative impacts on fish populations.
机译:评估和监测利用鱼人口受到成本、物流对目标人群和消极的影响。因此限制大规模有效因素管理策略。埃德娜的数量不仅可能相关物种的存在/缺席,但物种丰富。从一个高度珍视环境DNA(埃德娜)运动鱼类,湖鳟鱼Salvelinus湖红点鲑(Walbaum 1792),估计在水里样本12天然湖泊和相比丰度和生物量数据获得执行标准化以刺网捕鱼了经常用于渔业管理。减少环境变化之间的湖泊之间的湖泊采样在春天,冰雪融化和水分层。没有显著变化和水吗温度、溶解氧、pH值和浊度,但呈显著正相关相对的鱼类数量估计为每单位工作(CPUE),而与的关系生物质单位工作(BPUE)更少明显。当地水生物种分布进一步支持的空间之间的相似性埃德娜的异质性和空间分布以刺网捕鱼CPUE的变化来衡量的方法。经验证据之间的关系埃德娜的浓度和物种丰富允许的潜力的评估集成埃德娜在渔业管理计划。因此,埃德娜定量表示方法一个有前途的人口数量评估工具可以大大降低成本与采样和增加力量检测、空间覆盖率和采样频率,没有任何负面的对鱼类种群的影响。

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