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利用金属探测器和铝制标签开发用于 Copris ochus(鞘翅目:金龟子科)的地下探测系统。

Development of underground detection system using a metal detector and aluminum tag for, Copris ochus (Coleoptera: Scarabaeidae).

机构信息

Department of Life Sciences, Gachon University, Seongnam, South Korea.

Division of Restoration Research, National Institute of Ecology, Yeongyang, South Korea.

出版信息

J Insect Sci. 2024 May 1;24(3). doi: 10.1093/jisesa/ieae067.

Abstract

Tracking of soil-dwelling insects poses greater challenges compared to aboveground-dwelling animals in terrestrial systems. A metal detector system consisting of a commercially available detector and aluminum tags was developed for detecting dung beetle, Copris ochus Motschulsky (Coleoptera: Scarabaeidae). First, detection efficacy of the system was evaluated by varying volumes of aluminum tags attached on a plastic model of the insect and also by varying angles. Then, detection efficacy was evaluated by varying depths of aluminum-tagged models under soil in 2 vegetation types. Finally, the effects of tag attachment on C. ochus adults were assessed for survivorship, burrowing depth, and horizontal movement. Generally, an increase in tag volume resulted in greater detection distance in semi-field conditions. Maximum detection distance of aluminum tag increased up to 17 cm below soil surface as the tag size (0.5 × 1.0 cm [width × length]) and thickness (16 layers) were maximized, resulting in a tag weight of 31.4 mg, comprising ca. 9% of average weight of C. ochus adult. Furthermore, the detection efficacy did not vary among angles except for 90°. In the field, metal detectors successfully detected 5 aluminum-tagged models in 20 × 10 m (W × L) arena within 10 min with detection rates ≥85% for up to depth of 10 cm and 45%-60% at depth of 20 cm. Finally, aluminum tagging did not significantly affect survivorship and behaviors of C. ochus. Our study indicates the potential of metal detector system for tracking C. ochus under soil.

摘要

与地面动物相比,土壤栖息昆虫的追踪在陆地系统中更具挑战性。我们开发了一种由市售探测器和铝制标签组成的金属探测器系统,用于探测蜣螂(鞘翅目:蜣螂科)。首先,通过在昆虫塑料模型上附着不同体积的铝制标签和改变角度来评估系统的检测效果。然后,通过在两种植被类型下的土壤中改变铝制标记模型的深度来评估检测效果。最后,评估了标签附着对蜣螂成虫存活率、挖掘深度和水平移动的影响。一般来说,在半野外条件下,标签体积的增加会导致更大的检测距离。当标签尺寸(0.5×1.0 厘米[宽×长])和厚度(16 层)最大化时,铝制标签的最大检测距离增加到离土壤表面 17 厘米以下,导致标签重量达到 31.4 毫克,约占蜣螂成虫平均重量的 9%。此外,除 90°外,角度对检测效果没有影响。在野外,金属探测器在 20×10 米(宽×长)的场地上成功探测到 5 个铝制标记模型,在 10 分钟内检测率≥85%,深度达 10 厘米,深度为 20 厘米时检测率为 45%-60%。最后,铝制标签并没有显著影响蜣螂的存活率和行为。我们的研究表明,金属探测器系统在土壤中追踪蜣螂具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/461b/11195468/d47c06cc4ab3/ieae067_fig5.jpg

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