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首页> 外文期刊>Landscape Ecology >Can we face different types of storms under the same umbrella? Efficiency and consistency of connectivity umbrellas across different patchy landscape patterns
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Can we face different types of storms under the same umbrella? Efficiency and consistency of connectivity umbrellas across different patchy landscape patterns

机译:我们可以在同一个伞下面对不同类型的风暴吗? 不同斑块横向模式的连接伞效率和一致性

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ContextThe umbrella approach applied to landscape connectivity is based on the principle that the conservation or restoration of the dispersal habitats for some species also can facilitate the movement of others. Species traits alone do not seem to be enough to identify good connectivity umbrella species, showing the need to investigate the influence of additional factors on this property.ObjectivesWe test whether the potential of a species as a connectivity umbrella can be influenced by landscape composition and configuration.MethodsWe simulated movement routes for eight hypothetical species in artificial patchy landscapes with different levels of fragmentation, habitat amount and matrix permeability. We determined the effectiveness of the connectivity umbrella of the virtual species using pairwise intersections of important habitats for their movements in all landscapes.ResultsThe connectivity umbrella performance of all species was affected by the interaction of fragmentation level and habitat amount. In general, species performance increased with decreasing fragmentation and increasing habitat amount. In most landscapes and considering the same dispersal threshold, species able to move more easily through the matrix showed higher umbrella performance than those for which the matrix offered greater resistance.ConclusionsThe connectivity umbrella is not a static feature that depends only on the species traits, but rather a dynamic property that also varies according to the landscape attributes. Therefore, we do not recommend spatial transferability of the connectivity umbrella species identified in a landscape to others that have divergent levels of fragmentation and habitat quantity.
机译:背景上下文应用于景观连接的伞形方法是基于某些物种的保护或恢复分散栖息地的原则也可以促进他人的运动。单独的物种特征似乎不足以识别良好的连接伞物种,表明需要调查额外因素对该属性的影响。目的我们是否可以通过景观组合和配置来影响物种作为连接伞的潜力。 .Methodswe模拟了八种假想物种的人工斑块景观,不同水平的碎片,栖息地和基质渗透率。我们确定了虚拟物种的连接伞的有效性,使用重要的栖息地在所有景观中的运动的成对交叉点。所有物种的连接伞性能受到碎片水平和栖息地金额的相互作用的影响。通常,物种性能随着碎片和栖息地增加而增加。在大多数景观和考虑相同的分散阈值时,能够通过矩阵更容易移动的物种显示比矩阵提供更大的电阻的伞形性能。连接性伞不是仅取决于物种特征的静态特征,但是而是根据横向属性也有变化的动态属性。因此,我们不建议在景观中识别的连接伞物种的空间可转移性与碎片和栖息地数量不同的其他人。

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