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电子探针:利用无人机对树冠层内的环境DNA进行采样。

eProbe: Sampling of Environmental DNA within Tree Canopies with Drones.

作者信息

Kirchgeorg Steffen, Chang Jia Jin Marc, Ip Yin Cheong Aden, Jucker Meret, Geckeler Christian, Lüthi Martina, van der Loo Enrico, Mächler Elvira, Franco-Sierra Nicolás D, Herrera Mailyn Adriana Gonzalez, Pellissier Loïc, Deiner Kristy, Desiderato Andrea, Mintchev Stefano

机构信息

Environmental Robotics Laboratory, ETH Zürich, Zürich 8092, Switzerland.

Swiss Federale Institute for Forest, Snow and Landscape Research WSL, Birmensdorf 8903, Switzerland.

出版信息

Environ Sci Technol. 2024 Sep 17;58(37):16410-16420. doi: 10.1021/acs.est.4c05595. Epub 2024 Sep 5.

Abstract

Environmental DNA (eDNA) analysis is a powerful tool for studying biodiversity in forests and tree canopies. However, collecting representative eDNA samples from these high and complex environments remains challenging. Traditional methods, such as surface swabbing or tree rolling, are labor-intensive and require significant effort to achieve adequate coverage. This study proposes a novel approach for unmanned aerial vehicles (UAVs) to collect eDNA within tree canopies by using a surface swabbing technique. The method involves lowering a probe from a hovering UAV into the canopy and collecting eDNA as it descends and ascends through branches and leaves. To achieve this, a custom-designed robotic system was developed featuring a winch and a probe for eDNA collection. The design of the probe was optimized, and a control logic for the winch was developed to reduce the risk of entanglement while ensuring sufficient interaction force to facilitate transfer of eDNA onto the probe. The effectiveness of this method was demonstrated during the XPRIZE Rainforest Semi-Finals as 10 eDNA samples were collected from the rainforest canopy, and a total of 152 molecular operational taxonomic units (MOTUs) were identified using eDNA metabarcoding. We further investigate how the number of probe interactions with vegetation, the penetration depth, and the sampling duration influence the DNA concentration and community composition of the samples.

摘要

环境DNA(eDNA)分析是研究森林和树冠层生物多样性的有力工具。然而,从这些高大复杂的环境中采集具有代表性的eDNA样本仍然具有挑战性。传统方法,如表面擦拭或树木滚动,劳动强度大,需要付出巨大努力才能实现足够的覆盖范围。本研究提出了一种利用无人机(UAV)通过表面擦拭技术在树冠层内采集eDNA的新方法。该方法包括将一个探头从悬停的无人机上放下到树冠层中,并在其下降和上升穿过树枝和树叶时收集eDNA。为此,开发了一种定制设计的机器人系统,其具有一个用于eDNA采集的绞车和一个探头。对探头的设计进行了优化,并开发了一种绞车控制逻辑,以降低缠绕风险,同时确保有足够的相互作用力,便于将eDNA转移到探头上。在XPRIZE雨林半决赛期间,该方法的有效性得到了证明,从雨林树冠层采集了10个eDNA样本,并使用eDNA宏条形码鉴定出总共152个分子操作分类单元(MOTUs)。我们进一步研究了探头与植被的相互作用次数、穿透深度和采样持续时间如何影响样本的DNA浓度和群落组成。

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