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蝙蝠点数统计:一种新颖的采样方法为飞行中的蝙蝠群落带来曙光。

Bat point counts: A novel sampling method shines light on flying bat communities.

作者信息

Darras Kevin Felix Arno, Yusti Ellena, Huang Joe Chun-Chia, Zemp Delphine-Clara, Kartono Agus Priyono, Wanger Thomas Cherico

机构信息

Agroecology Department of Crop Sciences University of Göttingen Göttingen Germany.

Sustainable Agriculture & Technology Lab School of Engineering Westlake University Hangzhou China.

出版信息

Ecol Evol. 2021 Nov 30;11(23):17179-17190. doi: 10.1002/ece3.8356. eCollection 2021 Dec.

Abstract

Emerging technologies based on the detection of electro-magnetic energy offer promising opportunities for sampling biodiversity. We exploit their potential by showing here how they can be used in bat point counts-a novel method to sample flying bats-to overcome shortcomings of traditional sampling methods, and to maximize sampling coverage and taxonomic resolution of this elusive taxon with minimal sampling bias. We conducted bat point counts with a sampling rig combining a thermal scope to detect bats, an ultrasound recorder to obtain echolocation calls, and a near-infrared camera to capture bat morphology. We identified bats with a dedicated identification key combining acoustic and morphological features, and compared bat point counts with the standard bat sampling methods of mist-netting and automated ultrasound recording in three oil palm plantation sites in Indonesia, over nine survey nights. Based on rarefaction and extrapolation sampling curves, bat point counts were similarly effective but more time-efficient than the established methods for sampling the oil palm species pool in our study. Point counts sampled species that tend to avoid nets and those that are not echolocating, and thus cannot be detected acoustically. We identified some bat sonotypes with near-infrared imagery, and bat point counts revealed strong sampling biases in previous studies using capture-based methods, suggesting similar biases in other regions might exist. Our method should be tested in a wider range of habitats and regions to assess its performance. However, while capture-based methods allow to identify bats with absolute and internal morphometry, and unattended ultrasound recorders can effectively sample echolocating bats, bat point counts are a promising, non-invasive, and potentially competitive new tool for sampling all flying bats without bias and observing their behavior in the wild.

摘要

基于电磁能检测的新兴技术为生物多样性采样提供了广阔的机遇。我们在此展示了如何利用这些技术在蝙蝠定点计数中发挥作用——这是一种用于对飞行中的蝙蝠进行采样的新方法——以克服传统采样方法的缺点,并在最小化采样偏差的情况下,最大限度地提高对这种难以捉摸的分类群的采样覆盖范围和分类分辨率。我们使用一种采样设备进行蝙蝠定点计数,该设备结合了用于检测蝙蝠的热成像仪、用于获取回声定位叫声的超声波记录仪以及用于捕捉蝙蝠形态的近红外相机。我们使用一种结合声学和形态特征的专用识别密钥来识别蝙蝠,并在印度尼西亚的三个油棕种植园地点,在九个调查夜晚,将蝙蝠定点计数与雾网捕捉和自动超声波记录等标准蝙蝠采样方法进行了比较。基于稀疏化和外推采样曲线,在我们的研究中,蝙蝠定点计数与既定的油棕物种库采样方法同样有效,但效率更高。定点计数能够对那些倾向于避开网以及不发出回声定位信号(因此无法通过声学方法检测到)的物种进行采样。我们通过近红外图像识别出了一些蝙蝠声型,并且蝙蝠定点计数揭示了以往基于捕捉方法的研究中存在很强的采样偏差,这表明其他地区可能也存在类似偏差。我们的方法应在更广泛的栖息地和地区进行测试,以评估其性能。然而,虽然基于捕捉的方法能够通过绝对和内部形态测量来识别蝙蝠,无人值守的超声波记录仪可以有效地对发出回声定位的蝙蝠进行采样,但蝙蝠定点计数是一种有前景的、非侵入性的且可能具有竞争力的新工具,可用于无偏差地对所有飞行中的蝙蝠进行采样,并观察它们在野外的行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5754/8668732/29c367af1d71/ECE3-11-17179-g002.jpg

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