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Correlates of cave-roosting bat diversity as an effective tool to identify priority caves

机译:洞穴栖息的蝙蝠多样性与识别优先级的有效工具相关联

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Cave ecosystems are subterranean biodiversity hotspots, but limited knowledge of the distribution of diversity among caves hampers their conservation. Surveys of surrogate taxa (e.g., keystone species) can identify hotspots of biodiversity when knowledge about an ecosystem is lacking. Bats are keystone species in cave ecosystems because their guano is the primary energy source supporting diverse assemblages of cave-dependent wildlife. However, directly measuring bat diversity is time-consuming and requires expert knowledge; instead, we suggest the use of correlates of bat diversity that can be derived from readily accessible data (e.g., land-use maps) and straightforward methods not requiring expert knowledge (e.g., cave surveys, interviews) as a foundation for prioritizing caves. To identify easily measurable correlates of bat diversity, we compared assemblage composition and species abundances of 21 bat species captured in 56 caves on Bohol Island, Philippines, along gradients in environmental factors and human disturbance. Model- and distance-based methods indicated that surface-level disturbance (i.e., percent non-forested habitat, degree of urbanization and road development) along with cave complexity (i.e., available roosting area, structural heterogeneity, number of entrances and temperature range) were the most influential factors governing cave-roosting bat assemblages, thus representing correlates of bat diversity. Prioritization schemes based on these correlates select combinations of caves with greater species richness than both random selection and selection of caves based on observed richness from intensive bat surveys. The use of easy-to-measure environmental and disturbance correlates of bat diversity is an effective tool to prioritize caves to protect cave-roosting bats and the cave-dependent wildlife they support. (C) 2016 Elsevier Ltd. All rights reserved.
机译:洞穴生态系统是地下生物多样性热点,但对洞穴之间多样性分布的知识有限,涌动力妨碍了他们的保护。当缺乏关于生态系统的知识时,替代出生物的调查(例如,Keystone物种)可以识别生物多样性的热点。蝙蝠是洞穴生态系统中的基石物种,因为他们的鸟类是支持洞穴依赖野生动物的各种组装的主要能源。但是,直接测量蝙蝠多样性是耗时的,需要专业知识;相反,我们建议使用蝙蝠多样性的相关性,这些蝙蝠多样性可以源于易于访问的数据(例如,土地使用地图)和直接的方法,而不是要求专家知识(例如,洞穴调查,访谈)作为优先探索洞穴的基础。为了识别蝙蝠多样性的易于可测量的相关性,我们比较了在菲律宾的Bohol Island的56洞中捕获的21个蝙蝠种类的组合组成和物种丰富,沿着环境因素和人为干扰的梯度。基于模型和距离的方法表明,表面级障碍(即,非森林栖息地,城市化程度,城市化和道路发展程度)以及洞穴复杂性(即可用的栖息区,结构异质性,入口数量和温度范围)是管理洞穴栖息的蝙蝠组合的最有影响力的因素,从而表示蝙蝠多样性的相关性。基于这些相关方案的优先级方案选择具有更高物种丰富性的洞穴组合,而不是基于观察到的蝙蝠调查的洞穴选择和选择。使用易于测量的蝙蝠多样性的环境和干扰相关性是一个有效的工具,优先考虑洞穴以保护洞穴栖息的蝙蝠和他们支持的洞穴依赖性野生动物。 (c)2016 Elsevier Ltd.保留所有权利。

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