利用对野生和移栖青蛙的长期调查,了解和预测一种濒危两栖动物的感染动态

IF 4.9 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Biological Conservation Pub Date : 2024-11-22 DOI:10.1016/j.biocon.2024.110834
Talisin T. Hammond , Adam R. Backlin , Elizabeth A. Gallegos , Debra M. Shier , Ronald R. Swaisgood , Robert N. Fisher
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引用次数: 0

摘要

两栖动物是地球第六次生物大灭绝的一个重要组成部分,而真菌病原体蝙蝠蛾(Batrachochytrium dendrobatidis,Bd)是导致两栖动物数量减少的主要原因。尽管对 Bd 动态进行了深入研究,但环境驱动因素、加剧风险的因素以及迁移等保护干预措施的价值仍难以预测。在此,我们介绍了二十年来对南加州横断山脉和半岛山脉的山黄腿蛙(Rana muscosa)进行 Bd 监测的结果。我们描述了不同地点的 Bd 感染率和感染强度;模拟了与气候、栖息地和种群相关的变量与感染率之间的关系;并整合了来自野生蛙和迁移蛙的 Bd 数据,以测试机器学习系统能否预测新地点的感染率。我们的研究结果表明,Bd 的动态时空变化很大。所有地点都存在 Bd,但流行率和感染强度通常较低。包括温度、降水、植被和短波辐射在内的环境特征解释了 Bd 流行率的显著变化,但它们的预测价值在不同山脉之间存在差异。尽管在不同种群中仍无法找到明确的环境预测因素,但我们提供的证据表明,春季和冬季更暖和、更潮湿非常重要,这意味着在气候变化的预测下风险会增加。我们还发现,有证据表明,被转移的青蛙比野生青蛙的Bd感染率更高。虽然我们的机器学习模型能比较准确地预测出Bd流行阈值,但要理解种群内和种群间Bd动态的驱动因素还很复杂。综上所述,我们的研究结果为了解 Bd 在两栖动物减少过程中的复杂作用提供了新的视角,并提出了新的管理方法。
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Understanding and predicting infection dynamics for an endangered amphibian using long-term surveys of wild and translocated frogs
Amphibians are a prominent component of Earth's sixth mass extinction and the fungal pathogen Batrachochytrium dendrobatidis (Bd) is a primary driver of declines. Although Bd dynamics are well studied, the environmental drivers, exacerbating risk factors, and value of conservation interventions like translocations remain challenging to predict. Here, we present results from two decades of Bd monitoring for mountain yellow-legged frogs (Rana muscosa) in the southern California Transverse and Peninsular mountain ranges. We describe Bd prevalence and infection intensity across sites; model how variables associated with climate, habitat, and populations relate to prevalence; and integrate Bd data from wild and translocated frogs to test whether a machine learning system can predict infection prevalence at new sites. Our findings indicate substantial spatiotemporal variation in Bd dynamics. Bd was present at all sites but prevalence and infection intensities were often low. Environmental features including temperature, precipitation, vegetation, and shortwave radiation explained significant variation in Bd prevalence, but their predictive value varied across mountain ranges. Although clear environmental predictors across populations remain elusive, we provide evidence for the importance of warmer and wetter springs and winters, with implications of increased risk under climate change predictions. We also found evidence for higher Bd prevalence among translocated than wild frogs. Although our machine learning model predicted a Bd prevalence threshold with relatively high accuracy, understanding the factors driving within- and between-population Bd dynamics is complex. Taken together, our findings provide new insights into the complicated role of Bd in amphibian declines and suggest revised management approaches.
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来源期刊
Biological Conservation
Biological Conservation 环境科学-环境科学
CiteScore
10.20
自引率
3.40%
发文量
295
审稿时长
61 days
期刊介绍: Biological Conservation is an international leading journal in the discipline of conservation biology. The journal publishes articles spanning a diverse range of fields that contribute to the biological, sociological, and economic dimensions of conservation and natural resource management. The primary aim of Biological Conservation is the publication of high-quality papers that advance the science and practice of conservation, or which demonstrate the application of conservation principles for natural resource management and policy. Therefore it will be of interest to a broad international readership.
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