Suppr超能文献

澳大利亚昆士兰州中西部地区难以捉摸的袋鼬科有袋动物——濒危物种朱莉娅溪袋鼬(*Sminthopsis douglasi*)检测方法的比较

Comparing Methods of Detecting an Elusive Dasyurid Marsupial, the Threatened Julia Creek Dunnart (), in Central Western Queensland, Australia.

作者信息

Bakker Alice H, Schoenefuss Pia, Mifsud Greg, Fuller Susan, Baker Andrew M

机构信息

School of Biology and Environmental Science Queensland University of Technology Brisbane Queensland Australia.

Greg Mifsud Consulting Toowoomba Queensland Australia.

出版信息

Ecol Evol. 2024 Nov 4;14(11):e70507. doi: 10.1002/ece3.70507. eCollection 2024 Nov.

Abstract

The Julia Creek dunnart, , is a small, threatened carnivorous marsupial occurring in scattered populations in the grasslands of central and northwestern Queensland, Australia. The distribution of the species is largely unknown due to sporadic survey efforts and its historically low detection using traditional live trapping methods. There is an urgent need to determine the best methods of detection to optimise survey methodologies and more effectively manage species conservation efforts. In this study, we compared the effectiveness of live (Elliott) traps, baited white flash camera traps and thermal imagery binocular surveying for detecting . We deployed 40 white flash camera traps at two sites in Bladensburg National Park (south of Winton), where the species is known to occur, for three consecutive periods between June and November 2022. Four comparative sessions of live trapping were undertaken between April and August 2022 at the same locations. During the live trapping periods, a total of 12 nights of surveying were conducted with thermal imagery binoculars in a preliminary assessment of the technique. The total live trapping effort was 3600 trap nights (approximately 700 trap nights per site in each trapping event). Live trapping resulted in 12 detections of individual from 19 total captures. The highest trap success on a given trapping session was 1.71%, and overall trap success from both sites across all sessions was 0.53%. In comparison, baited camera traps (deployed facing the ground at 70 cm range) took 1,269,884 images over 5383 trap nights. There were 11 confirmed images of , on three individual occasions, which represented 2.10% of all small mammal captures and just 0.0009% of the total images. Four species of small mammals were detected using camera traps, whereas live trapping detected only two species. No small mammals were detected on any of the 12 thermal binocular surveys. Overall, our study highlights the comparative high utility of traditional live trapping for detecting . This research provides a framework for ongoing monitoring of the Bladensburg National Park population. It will be more broadly beneficial for informing the best detection techniques of in ongoing work investigating the overall distribution of the species. Similar studies assessing multiple detection methods for small terrestrial mammals have shown an advantage of white flash camera traps compared to other traditional detection techniques. Our contrasting results serve as a reminder that the utility of different techniques for detecting small mammals is best assessed on a species-by-species basis.

摘要

朱莉娅溪袋鼬是一种小型的、濒危的肉食性有袋动物,分布于澳大利亚昆士兰州中部和西北部草原的零散区域。由于调查工作的零散性以及过去使用传统活体诱捕方法时其被发现的概率较低,该物种的分布情况在很大程度上尚不明确。迫切需要确定最佳的检测方法,以优化调查方法并更有效地管理物种保护工作。在本研究中,我们比较了活体(艾略特)陷阱、带诱饵的白色闪光相机陷阱和热成像双筒望远镜调查在检测朱莉娅溪袋鼬方面的有效性。我们在布莱登斯堡国家公园(温顿以南)已知该物种存在的两个地点部署了40个白色闪光相机陷阱,在2022年6月至11月期间连续三个时间段进行监测。2022年4月至8月期间,在相同地点进行了四次活体诱捕对比试验。在活体诱捕期间,总共使用热成像双筒望远镜进行了12个夜晚的调查,作为对该技术的初步评估。总的活体诱捕工作量为3600个陷阱夜(每次诱捕活动中每个地点约700个陷阱夜)。活体诱捕从总共19次捕获中成功检测到12只朱莉娅溪袋鼬个体。在给定的一次诱捕活动中,最高的诱捕成功率为1.71%,两个地点在所有诱捕活动中的总体诱捕成功率为0.53%。相比之下,带诱饵的相机陷阱(在70厘米距离面向地面部署)在5383个陷阱夜拍摄了1269884张图像。有11张确认的朱莉娅溪袋鼬图像,分三次拍摄到不同个体,占所有小型哺乳动物捕获量的2.10%,仅占总图像数的0.0009%。使用相机陷阱检测到了四种小型哺乳动物,而活体诱捕只检测到两种。在12次热成像双筒望远镜调查中均未检测到小型哺乳动物。总体而言,我们的研究突出了传统活体诱捕在检测朱莉娅溪袋鼬方面相对较高的效用。这项研究为持续监测布莱登斯堡国家公园的种群提供了一个框架。在正在进行的调查该物种总体分布的工作中,它将更广泛地有助于确定检测朱莉娅溪袋鼬的最佳技术。评估小型陆生哺乳动物多种检测方法的类似研究表明,与其他传统检测技术相比,白色闪光相机陷阱具有优势。我们截然不同的结果提醒我们,不同技术检测小型哺乳动物的效用最好逐物种进行评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0573/11535226/d8347182e0b9/ECE3-14-e70507-g004.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验