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Development and field validation of a regional management‐scale habitat model: A koala Phascolarctos cinereus case study

机译:区域性管理规模生境模型的开发和现场验证:考拉树袋熊实蝇案例研究

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摘要

Species distribution models have great potential to efficiently guide management for threatened species, especially for those that are rare or cryptic. We used MaxEnt to develop a regional‐scale model for the koala Phascolarctos cinereus at a resolution (250 m) that could be used to guide management. To ensure the model was fit for purpose, we placed emphasis on validating the model using independently‐collected field data. We reduced substantial spatial clustering of records in coastal urban areas using a 2‐km spatial filter and by modeling separately two subregions separated by the 500‐m elevational contour. A bias file was prepared that accounted for variable survey effort. Frequency of wildfire, soil type, floristics and elevation had the highest relative contribution to the model, while a number of other variables made minor contributions. The model was effective in discriminating different habitat suitability classes when compared with koala records not used in modeling. We validated the MaxEnt model at 65 ground‐truth sites using independent data on koala occupancy (acoustic sampling) and habitat quality (browse tree availability). Koala bellows (n = 276) were analyzed in an occupancy modeling framework, while site habitat quality was indexed based on browse trees. Field validation demonstrated a linear increase in koala occupancy with higher modeled habitat suitability at ground‐truth sites. Similarly, a site habitat quality index at ground‐truth sites was correlated positively with modeled habitat suitability. The MaxEnt model provided a better fit to estimated koala occupancy than the site‐based habitat quality index, probably because many variables were considered simultaneously by the model rather than just browse species. The positive relationship of the model with both site occupancy and habitat quality indicates that the model is fit for application at relevant management scales. Field‐validated models of similar resolution would assist in guiding management of conservation‐dependent species.
机译:物种分布模型具有有效指导受威胁物种(尤其是稀有或神秘物种)管理的巨大潜力。我们使用MaxEnt为分辨率为(250 m)的考拉灰熊开发了区域尺度模型,可用于指导管理。为了确保模型适合目的,我们强调使用独立收集的现场数据验证模型。我们通过使用2 km的空间滤波器并通过分别建模两个以500 m的海拔轮廓隔开的子区域来减少沿海城市地区记录的大量空间聚类。准备了一个偏见文件,该文件解释了可变的调查工作。野火的发生频率,土壤类型,植物区系和海拔高度对模型的相对贡献最大,而许多其他变量的贡献较小。与模型中未使用的考拉记录相比,该模型可有效地区分不同的栖息地适应性等级。我们使用有关树袋熊占用(声音采样)和栖息地质量(br树可用性)的独立数据,在65个地面站点验证了MaxEnt模型。在占用模型框架中对考拉波纹管(n = 276)进行了分析,同时根据浏览树对站点栖息地质量进行了索引。实地验证表明,在地面真地,树袋熊的占有率呈线性增加,而模拟栖息地的适应性更高。同样,真实地点的地点栖息地质量指数与模拟的栖息地适宜性也呈正相关。与基于地点的栖息地质量指数相比,MaxEnt模型更适合于估计的考拉栖息地,这可能是因为模型同时考虑了许多变量,而不仅仅是浏览物种。该模型与场地占用率和栖息地质量的正相关关系表明该模型适合于相关管理规模的应用。具有类似分辨率的现场验证模型将有助于指导对依赖保护物种的管理。

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