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Dog in the matrix: Envisioning countrywide connectivity conservation for an endangered carnivore

机译:狗在矩阵:全国规划未来连接保护濒危食肉动物

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Abstract Elevated rates of anthropogenic impacts on land‐use regimes have pushed terrestrial megafauna to the brink of extinction. Consequently, it is critical to adopt conservation approaches that safeguard individual populations while retaining connectivity among these populations. Conserving spatially structured populations of imperiled species at large scales is often complex; and the past decades have therefore seen a rise in spatial conservation prioritization exercises aimed at shaping landscape‐scale conservation programmes. We present a framework for informing nationwide connectivity conservation, linking ecological and administrative scales, to maximize relevance for management. We assessed connectivity of the endangered dhole Cuon alpinus among 155 potential source populations across India using a data‐driven approach combined with graph and circuit theory. We used clustering algorithms to identify ecologically meaningful conservation landscapes; within each landscape, we identified priority source populations based on their connectedness and quantified pixel‐specific habitat accessibility. We superimposed administrative boundaries on our findings to provide conservation recommendations at this management‐relevant scale. We first mapped potential dhole movement across India. Dhole populations fell within three primary clusters—Western and Eastern Ghats (WEG), Central Indian Landscape (CIL) and North‐East India (NEI)—of which NEI had the highest forest cover, most diffuse connectivity and lowest human density, while WEG had the highest protected area coverage and overall connectedness. Within each conservation landscape, we evaluated the relative importance of Protected Areas and accessibility to high‐quality patches. Parts of the Eastern Ghats had low habitat accessibility, yet high potential for dhole landscape connectivity. In 114 identified administrative units of priority for habitat restoration, we highlight those with low accessibility, that is, areas where restoration needs to be spatially targeted for maximum benefits. Synthesis and applications. We make recommendations for spatially informed habitat restoration to enhance dhole connectivity in India, highlighting the importance of improving matrix permeability where dhole movement is currently restricted. More broadly, the framework we present is useful across species and management contexts, as it combines spatial and administrative scales to make ecologically informed assessments of high relevance to management. Synergistically integrating species ecology, threats and administrative considerations in connectivity conservation plans can enhance success of species conservation programmes.
机译:抽象的人为影响利率的提升土地使用制度使得陆地巨型动物灭绝的边缘。因此,它是采用的关键维护个人的保护方法人口,同时保持之间的连通性这些人群。结构化种群的濒危物种大尺度通常是复杂的;几十年因此上升空间旨在保护优先级演习塑造景观保护计划规模。我们提出一个框架,用于在全国范围内通知连接保护,生态和链接管理尺度,相关性最大化管理。濒危野犬皮alpinus 155潜力源人口在印度使用结合图和地理数据驱动的方法电路理论。确定生态保护有意义景观;优先级数量根据他们的来源连通性和量化像素地理栖息地的可访问性。行政边界上我们的发现在这提供保护的建议管理相关的规模。在印度被潜在的运动。在三个主要的人口下降clusters-Western和东高止山脉(WEG),中央印度风景(CIL)和北东印度(NEI) - NEI森林覆盖率最高,大多数扩散连接和人类最低密度,而WEG保护区最高覆盖和整体连通性。保护景观,我们评估了相对的保护区的重要性和可访问性高质量的补丁。高止山脉栖息地可访问性较低,而高潜力被景观连通性。114确定行政单位的优先级对于栖息地的恢复,我们强调的可访问性低,地区恢复需要空间目标最大的好处。对空间信息提出建议栖息地恢复增强被连接在印度,突出的重要性改善基质渗透率豺运动是目前限制。我们目前的框架是有用的跨物种和管理环境,因为它结合了空间和管理尺度生态通知高相关性的评估管理。生态、威胁和管理考虑连接保护计划可以提高物种保护的成功吗妥协.

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