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Genetic sampling for estimating density of common species

机译:遗传采样估计常见物种的密度

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Abstract Understanding population dynamics requires reliable estimates of population density, yet this basic information is often surprisingly difficult to obtain. With rare or difficult-to-capture species, genetic surveys from noninvasive collection of hair or scat has proved cost-efficient for estimating densities. Here, we explored whether noninvasive genetic sampling (NGS) also offers promise for sampling a relatively common species, the snowshoe hare ( Lepus americanus Erxleben, 1777), in comparison with traditional live trapping. We optimized a protocol for single-session NGS sampling of hares. We compared spatial capture?¢????recapture population estimates from live trapping to estimates derived from NGS, and assessed NGS costs. NGS provided population estimates similar to those derived from live trapping, but a higher density of sampling plots was required for NGS. The optimal NGS protocol for our study entailed deploying 160 sampling plots for 4 days and genotyping one pellet per plot. NGS laboratory costs ranged from approximately $670 to $3000 USD per field site. While live trapping does not incur laboratory costs, its field costs can be considerably higher than for NGS, especially when study sites are difficult to access. We conclude that NGS can work for common species, but that it will require field and laboratory pilot testing to develop cost-effective sampling protocols.
机译:摘要了解人口动态需要对人口密度进行可靠的估计,但是通常很难获得这些基本信息。对于稀有或难以捕捉的物种,从无创收集的头发或粪便中进行的遗传调查已证明可经济高效地估算密度。在这里,我们探讨了与传统的活体诱捕相比,非侵入式基因采样(NGS)是否也为采样相对较常见的物种-雪兔(Lepus americanus Erxleben,1777)提供了希望。我们针对野兔的单会话NGS采样优化了协议。我们比较了从活体诱捕获得的空间捕获和重新捕获人口估计值与从NGS得出的估计值,并评估了NGS成本。 NGS提供的人口估计与实时诱捕的人口估计相似,但是NGS需要更高密度的采样区。我们研究的最佳NGS方案需要部署160个样地4天,并对每个样地一个颗粒进行基因分型。每个现场的NGS实验室费用大约为670美元至3000美元。尽管现场诱捕不会产生实验室成本,但其现场成本可能比NGS高得多,尤其是在难以到达研究地点的情况下。我们得出的结论是,NGS可以用于常见物种,但是需要进行现场和实验室先导测试才能开发出具有成本效益的采样方案。

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