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Evaluation of patch isolation metrics in mosaic landscapes for specialist vs. generalist dispersers

机译:评估马赛克散布中的补丁隔离度量标准,以针对专业散布者与普通散布者

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We examined the effects of matrix structure and movement responses of organisms on the relationships between 7 patch isolation metrics and patch immigration. Our analysis was based on simulating movement behaviour of two generic disperser types (specialist and generalist) across mosaic landscapes containing three landcover types: habitat, hospitable matrix and inhospitable matrix. Movement, mortality and boundary crossing probabilities of simulated individuals were linked to the landcover and boundary types in the landscapes. The results indicated that area-based isolation metrics generally predict patch immigration more reliably than distance-based isolation metrics. Relationships between patch isolation metrics and patch immigration varied between the two generic disperser types and were affected by matrix composition or matrix fragmentation. Patch immigration was always affected by matrix composition but not by matrix fragmentation. Our results do not encourage the generic use of patch isolation metrics as a substitute for patch immigration, in particular in metapopulation models where generic use may result in wrong projections of the survival probability of metapopulations. However, our examination of the factors affecting the predictive potential of patch isolation metrics should facilitate interpretation and comparison of existing patch isolation studies. Future patch isolation studies should include information about landscape structure and the dispersal distance and dispersal behaviour of the organism of interest.
机译:我们研究了基质结构和生物运动响应对7个斑块隔离度和斑块迁移之间关系的影响。我们的分析是基于模拟两种通用分散器类型(专家和通用)在包含三种土地覆被类型的镶嵌景观中的运动行为:生境,好客基质和好客基质。模拟个体的移动,死亡率和越境概率与景观中的土地覆盖物和边界类型有关。结果表明,基于区域的隔离度通常比基于距离的隔离度更可靠地预测斑块迁移。贴剂隔离指标和贴剂迁移之间的关系在两种通用分散剂类型之间变化,并且受基质组成或基质碎裂影响。斑块的迁移总是受基质组成的影响,而不受基质碎片的影响。我们的结果不鼓励使用补丁隔离度量标准来替代补丁移民,尤其是在荟萃模型中,泛滥使用模型可能会导致错误估计荟萃种群的存活率。但是,我们对影响补丁隔离度量标准预测潜力的因素的研究应有助于对现有补丁隔离研究进行解释和比较。未来的斑块隔离研究应包括有关景观结构以及目标生物的扩散距离和扩散行为的信息。

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