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Range edges in heterogeneous landscapes: Integrating geographic scale and climate complexity into range dynamics

机译:异构景观中的范围边缘:将地理标度与气候复杂性集成到范围动态

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The impacts of climate change have re-energized interest in understanding the role of climate in setting species geographic range edges. Despite the strong focus on species' distributions in ecology and evolution, defining a species range edge is theoretically and empirically difficult. The challenge of determining a range edge and its relationship to climate is in part driven by the nested nature of geography and the multidimensionality of climate, which together generate complex patterns of both climate and biotic distributions across landscapes. Because range-limiting processes occur in both geographic and climate space, the relationship between these two spaces plays a critical role in setting range limits. With both conceptual and empirical support, we argue that three factors-climate heterogeneity, collinearity among climate variables, and spatial scale-interact to shape the spatial structure of range edges along climate gradients, and we discuss several ways that these factors influence the stability of species range edges with a changing climate. We demonstrate that geographic and climate edges are often not concordant across species ranges. Furthermore, high climate heterogeneity and low climate collinearity across landscapes increase the spectrum of possible relationships between geographic and climatic space, suggesting that geographic range edges and climatic niche limits correspond less frequently than we may expect. More empirical explorations of how the complexity of real landscapes shapes the ecological and evolutionary processes that determine species range edges will advance the development of range limit theory and its applications to biodiversity conservation in the context of changing climate.
机译:气候变化的影响对理解气候在设定物种地理范围边缘中的作用方面的影响是兴趣的。尽管强烈关注物种在生态和演化中的分布,但定义了物种范围边缘在理论上和经验困难。确定范围边缘及其与气候关系的挑战部分是由地理学的嵌套性质和气候的多征的推动,其中包括在景观中产生了气候和生物分布的复杂模式。由于范围限制过程在地理和气候空间中发生,因此这两个空间之间的关系在设定范围限制方面发挥着关键作用。凭借概念和经验支持,我们认为三种因素 - 气候异质性,气候变量之间的共同性,以及空间鳞片相互作用,以沿着气候梯度塑造范围边缘的空间结构,我们讨论了这些因素影响稳定性的多种方式物种范围边缘,气候变化。我们证明,地理和气候边缘跨物种范围往往不起作用。此外,横跨风景的高气候异质性和低气候共线性增加了地理和气候空间之间可能的关系的频谱,这表明地理范围边缘和气候利基限制比我们期望的更少。更为实证探索真实景观的复杂性如何构成生态和进化过程,确定物种范围边缘将推进范围限制理论的发展及其在变化气候范围内的生物多样性保护的应用。

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