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Modelling the functional connectivity of landscapes for greater horseshoe bats Rhinolophus ferrumequinum at a local scale

机译:以当地规模建模大马蹄蝙蝠鼻窦鼻腔鼻孔鼻孔的功能连通性

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Context The importance of habitat connectivity for wildlife is widely recognised. However, assessing the movement of species tends to rely on radio-tracking or GPS evidence, which is difficult and costly to gather. Objectives To examine functional connectivity of greater horseshoe bats (GHS, Rhinolophus ferrumequinum) at a local scale using Circuitscape software; comparing our results against expert opinion 'fly ways'. Methods Expert opinions were used to rank and score five environmental layers influencing GHS movement, generating resistance scores. The slope and resistance scores of these layers were varied, and validated against independent ground truthed GHS activity data, until a unimodal peak in correlation was identified for each layer. The layers were combined into a multivariate model and re-evaluated. Radio-tracking studies were used to further validate the model, and the transferability was tested at other roost locations. Results Functional connectivity models could be created using bat activity data. Models had the ability to be transferred between roost locations, although site-specific validation is strongly recommended. For all other bat species recorded, markedly more (125%) bat passes occurred in the top quartile of functional connectivity compared to any of the lower three quartiles. Conclusion The model predictions identify areas of key conservation importance to habitat connectivity for GHS that are not recognised by expert opinion. By highlighting landscape features that act as barriers to movement, this approach can be used by decision-makers as a tool to inform local management strategies.
机译:背景信息野生动物栖息地连接的重要性被广泛认可。然而,评估物种的运动往往依赖于无线电跟踪或GPS证据,这是难以和昂贵的收集。目的使用电路软件在当地规模上检查大马蹄蝙蝠(GHS,Rhinolophus Ferrumequmum)的功能连通性;将我们的结果与专家意见“飞行方式”进行比较。方法采用专家意见来排名和得分影响GHS运动的五个环境层,产生阻力分数。这些层的斜率和电阻分数变化,并针对独立的地面判断GHS活动数据验证,直到每层识别出相关的关联中的单峰峰。将这些层组合成多元模型并重新评估。使用无线电跟踪研究进一步验证模型,并在其他栖息地测试可转移性。结果可以使用BAT活动数据创建功能性连接模型。虽然强烈建议,模型具有在RoSt位置之间转移到Roost位置之间的能力。对于记录的所有其他蝙蝠种类,与下三种四分位数的任何一个功能连通性相比,在功能性连通性的顶部四分位数中显着(125%)。结论模型预测确定了专家意见不承认的GHS栖息地连接的关键保存关系领域。通过强调充当运动障碍的景观功能,决策者可以使用这种方法作为通知本地管理策略的工具。

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