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Concurrent visual encounter sampling validates eDNA selectivity and sensitivity for the endangered wood turtle (Glyptemys insculpta)

机译:并行的视觉相遇取样验证了濒临灭绝的木龟(Glyptemys insculpta)的eDNA选择性和敏感性

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摘要

Environmental DNA (eDNA) has been used to record the presence of many different organisms in several different aquatic and terrestrial environments. Although eDNA has been demonstrated as a useful tool for the detection of invasive and/or cryptic and declining species, this approach is subject to the same considerations that limit the interpretation of results from traditional survey techniques (e.g. imperfect detection). The wood turtle is a cryptic semi-aquatic species that is declining across its range and, like so many chelonian species, is in-need of a rapid and effective method for monitoring distribution and abundance. To meet this need, we used an eDNA approach to sample for wood turtle presence in northern Virginia streams. At the same time, we used repeat visual encounter surveys in an occupancy-modelling framework to validate our eDNA results and reveal the relationship of detection and occupancy for both methods. We sampled 37 stream reaches of varying size within and beyond the known distribution of the wood turtle across northern Virginia. Wood turtle occupancy probability was 0.54 (0.31, 0.76) and while detection probability for wood turtle occupancy was high (0.88; 0.58, 0.98), our detection of turtle abundance was markedly lower (0.28; 0.21, 0.37). We detected eDNA at 76% of sites confirmed occupied by VES and at an additional three sites where turtles were not detected but were known to occur. Environmental DNA occupancy probability was 0.55 (0.29, 0.78); directly comparable to the VES occupancy estimate. Higher probabilities of detecting wood turtle eDNA were associated with higher turtle densities, an increasing number of days since the last rainfall, lower water temperatures, and lower relative discharges. Our results suggest that eDNA technology holds promise for sampling aquatic chelonians in some systems, even when discharge is high and biomass is relatively low, when the approach is validated and sampling error is quantified.
机译:环境DNA(eDNA)已用于记录几种不同水生和陆地环境中许多不同生物的存在。尽管已证明eDNA是检测入侵和/或隐秘和正在下降的物种的有用工具,但此方法受到相同的考虑,这些因素限制了对传统调查技术(例如不完善的检测)的结果的解释。木龟是一种隐蔽的半水生物种,在其范围内呈递减趋势,因此,与许多千足虫一样,它需要一种快速有效的方法来监测分布和丰度。为了满足这一需求,我们使用了eDNA方法对弗吉尼亚北部河流中的木龟样本进行采样。同时,我们在占用模型框架中使用了重复的视觉遭遇调查,以验证我们的eDNA结果并揭示两种方法的检测与占用之间的关系。我们对弗吉尼亚北部北部已知的木龟分布范围内外的37个不同大小的溪流进行了采样。木龟的居住概率为0.54(0.31,0.76),虽然木龟的居住概率较高(0.88; 0.58,0.98),但我们对海龟的丰度却明显较低(0.28; 0.21,0.37)。我们在确认已被VES占据的76%的位点以及未发现但已知发生乌龟的另外三个位点检测到eDNA。环境DNA占用概率为0.55(0.29,0.78);与VES占用率估算值直接可比。检测木龟eDNA的可能性越高,龟密度越高,自上次降雨以来天数增加,水温降低和相对排放量降低。我们的研究结果表明,eDNA技术有望在某些系统中对水生螯合植物进行采样,即使在方法验证并定量了采样误差的情况下,即使排放量较高且生物量相对较低,也是如此。

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