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首页> 外文期刊>The Journal of Applied Ecology >Fishing for mammals: Landscape-level monitoring of terrestrial and semi-aquatic communities using eDNA from riverine systems
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Fishing for mammals: Landscape-level monitoring of terrestrial and semi-aquatic communities using eDNA from riverine systems

机译:钓鱼对哺乳动物:景观水平的监测陆地和两栖社区使用埃德娜从河的系统

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1. Environmental DNA (eDNA) metabarcoding has revolutionized biomonitoring in both marine and freshwater ecosystems. However, for semi-aquatic and terrestrial animals, the application of this technique remains relatively untested. 2. We first assess the efficiency of eDNA metabarcoding in detecting semi-aquatic and terrestrial mammals in natural lotic ecosystems in the UK by comparing sequence data recovered from water and sediment samples to the mammalian communities expected from historical data. Secondly, using occupancy modelling we compared the detection efficiency of eDNA metabarcoding to multiple conventional non-invasive survey methods (latrine surveys and camera trapping). 3. eDNA metabarcoding detected a large proportion of the expected mammalian community within each area. Common species in the areas were detected at the majority of sites. Several key species of conservation concern in the UK were detected by eDNA sampling in areas where authenticated records do not currently exist, but potential false positives were also identified. 4. Water-based eDNA metabarcoding provided comparable results to conventional survey methods in per unit of survey effort for three species (water vole, field vole and red deer) using occupancy models. The comparison between survey 'effort' to reach a detection probability of ≥.95 revealed that 3-6 water replicates would be equivalent to 3-5 latrine surveys and 5-30 weeks of single camera deployment, depending on the species. 5. Synthesis and applications. eDNA metabarcoding can be used to generate an initial 'distribution map' of mammalian diversity at the landscape level. If conducted during times of peak abundance, carefully chosen sampling points along multiple river courses provide a reliable snapshot of the species that are present in a catchment area. In order to fully capture solitary, rare and invasive species, we would currently recommend the use of eDNA metabarcoding alongside other non-invasive surveying methods
机译:1. 彻底改变了海洋和生物监测淡水生态系统。和陆地动物,应用程序技术相对未经测试。第一次评估艾德娜metabarcoding的效率在检测两栖和陆地哺乳动物在英国自然激流的生态系统从水和比较序列数据恢复沉积物样品的哺乳动物群体预计从历史数据。入住率造型我们比较检测埃德娜metabarcoding多个的效率传统的非侵入式测量方法(厕所调查和相机捕获)。metabarcoding发现的一大部分预期的哺乳动物社区在每个区域。常见物种地区发现的大多数的网站。保护问题在英国被检测到埃德娜抽样地区进行身份验证目前记录不存在,但潜力假阳性也确定了。水性埃德娜metabarcoding提供传统的调查方法比较结果在工作单位调查,对于三个物种(水田鼠,田鼠和红鹿)使用入住率模型。“努力”达到≥.95的探测概率显示,3 - 6水复制相当于3 - 5厕所调查和30周单摄像机部署,这取决于物种。metabarcoding可以用来生成一个初始哺乳动物多样性的分布图景观水平。峰丰富,精心挑选的采样点在多个河道提供可靠快照的物种存在排水区。孤独的,罕见的入侵物种,我们会目前推荐使用埃德娜metabarcoding与其他非侵入式测量方法

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