Camera Traps Provide First Insights into the Nesting Behavior of the Critically Endangered Northern River Terrapin (Batagur baska)

Astrid Dedieu, Nicola Scherzer, Thomas Paumann, A.G.J. Morshed, A. Weissenbacher, Christian Walzer, D. Preininger
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Abstract

Abstract. Camera traps are very useful tools in determining the presence/absence of rare and cryptic species while shedding light on behavioral traits. Passive infrared triggered cameras are routinely used in homeothermic animals, but in ectothermic reptiles, this surveillance method has proven highly unreliable. As part of the conservation goal to provide better understanding and protection for the critically endangered freshwater turtle Batagur baska, we investigated their largely unknown nesting behavior and tested video-based motion detection by comparing 2 different camera-trapping systems and their settings under controlled conditions at the Vienna Zoo. A pixel-based video surveillance camera was superior to a camera trap with motion sensor. The surveillance camera allowed reliable motion detection at sensitive settings, and video capture precision could be enhanced by marking the terrapin with reflective tape. This video surveillance camera was then deployed over 2 breeding seasons (2019 and 2020) in the conservation breeding project of the northern river terrapin (B. baska, Gray 1830) in Bhawal National Park in Bangladesh. Analysis of video recording demonstrated for the first time that female northern river terrapins nested on average for a period of 1.5 hrs and produced a single clutch per year. Results indicate that females inspect sandbanks and visit suitable nesting sites several times before egg deposition, suggesting that nest-site selection is not random in B. baska. In addition, water temperature measurements of the breeding ponds in 2 captive breeding sites of the B. baska project showed an annual average temperature decrease to 168C–188C during the mating season and an average increase to 288C–318C before the nesting season. Temperatures on nesting nights vary between the 2 breeding sites and differ between nesting events within each site, suggesting that overall seasonal temperature shifts initiate the nesting periods, while other physiological and environmental factors might trigger the actual nesting event. With the help of consistent motion-triggered video recording, our study provides a first underpinning of the nesting ecology of B. baska.
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相机陷阱提供了对极度濒危的北河龟筑巢行为的第一次了解。
摘要相机陷阱是非常有用的工具,可以确定稀有和神秘物种的存在/缺失,同时揭示行为特征。被动红外触发摄像机通常用于恒温动物,但在变温爬行动物中,这种监视方法已被证明是非常不可靠的。为了更好地了解和保护极度濒危的淡水龟Batagur baska,我们研究了它们大部分未知的筑巢行为,并通过比较维也纳动物园两种不同的摄像机捕获系统和它们在受控条件下的设置,测试了基于视频的运动检测。基于像素的视频监控摄像机优于带有运动传感器的摄像机陷阱。监视摄像机可以在敏感的设置下进行可靠的运动检测,并且可以通过用反光带标记水龟来提高视频捕获的精度。该视频监控摄像机随后在两个繁殖季节(2019年和2020年)部署在孟加拉国Bhawal国家公园北部河龟(B. baska, Gray 1830)的保护繁殖项目中。视频记录分析首次表明,雌性北方河龟平均筑巢时间为1.5小时,每年产一窝。结果表明,雌蝶在产卵前多次检查沙洲和寻找合适的筑巢地点,表明巴斯卡布氏螨的筑巢地点不是随机选择的。此外,对2个圈养养殖地点的养殖池水温测量结果显示,在交配季节,年平均水温下降至168℃~ 188℃,而在筑巢季节之前,年平均水温上升至288℃~ 318c。筑巢夜的温度在两个繁殖地之间有所不同,每个繁殖地的筑巢活动也有所不同,这表明整体的季节温度变化启动了筑巢期,而其他生理和环境因素可能触发了实际的筑巢活动。在连续运动触发视频记录的帮助下,我们的研究提供了baska B.巢生态的第一个基础。
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