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Using occupancy modelling to compare environmental DNA to traditional field methods for regional-scale monitoring of an endangered aquatic species

机译:使用居住模型将环境DNA与传统田间方法进行比较,以对濒临灭绝的水生物种进行区域规模的监测

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摘要

Environmental DNA (eDNA) monitoring approaches promise to greatly improve detection of rare, endangered and invasive species in comparison with traditional field approaches. Herein, eDNA approaches and traditional seining methods were applied at 29 research locations to compare method-specific estimates of detection and occupancy probabilities for endangered tidewater goby (Eucyclogobius newberryi). At each location, multiple paired seine hauls and water samples for eDNA analysis were taken, ranging from two to 23 samples per site, depending upon habitat size. Analysis using a multimethod occupancy modelling framework indicated that the probability of detection using eDNA was nearly double (0.74) the rate of detection for seining (0.39). The higher detection rates afforded by eDNA allowed determination of tidewater goby occupancy at two locations where they have not been previously detected and at one location considered to be locally extirpated. Additionally, eDNA concentration was positively related to tidewater goby catch per unit effort, suggesting eDNA could potentially be used as a proxy for local tidewater goby abundance. Compared to traditional field sampling, eDNA provided improved occupancy parameter estimates and can be applied to increase management efficiency across a broad spatial range and within a diversity of habitats.
机译:与传统的现场方法相比,环境DNA(eDNA)监测方法有望大大改善对稀有,濒危和入侵物种的检测。本文中,在29个研究地点应用了eDNA方法和传统的围网方法,以比较特定方法对濒临灭绝的潮水虾虎鱼(Eucyclogobius newberryi)的探测和占用概率的估计。在每个位置,都采集了多个成对的围网拖网和水样本以进行eDNA分析,每个样本点的采样范围为2至23个样本,具体取决于栖息地的大小。使用多方法占用模型框架的分析表明,使用eDNA进行检测的概率几乎是围网检测率(0.39)的两倍(0.74)。 eDNA提供的较高检测率可以确定潮水虾虎鱼在先前未检测到的两个位置以及被认为是局部灭绝的一个位置上的占用率。此外,每单位工作量中eDNA浓度与潮水虾虎鱼捕获量呈正相关,这表明eDNA可以潜在地用作当地潮水虾虎鱼丰度的替代物。与传统的野外采样相比,eDNA提供了改进的占用参数估计值,可用于在较宽的空间范围内和多种生境中提高管理效率。

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