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首页> 外文期刊>Oikos: A Journal of Ecology >Which species will succesfully track climate change? The influence of intraspecific competition and density dependent dispersal on range shifting dynamics
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Which species will succesfully track climate change? The influence of intraspecific competition and density dependent dispersal on range shifting dynamics

机译:哪些物种将成功追踪气候变化?种内竞争和密度依赖性扩散对距离变化动力学的影响

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摘要

Understanding the ability of species to shift their geographic range is of considerable importance given the current period of rapid climate change. Furthermore, a greater understanding of the spatial population dynamics underlying range shifting is required to complement the advances made in climate niche modelling. A simulation model is developed which incorporates three key features that have been largely overlooked in studies of range shifting dynamics: the form of intraspecific competition, density dependent dispersal and the transient dynamics of habitat patches. The results show that the exact shape of the response depends critically on both local and patch dynamics. Species whose intraspecific competition is contest based are more vulnerable than those whose competition is scramble based. Contesters are especially sensitive when combined with density dependent dispersal. Species living in patches whose carrying capacity grows slowly are also susceptible to rapid shifts of environmental conditions. A complementary analytic approach further highlights the importance of intraspecific competition.
机译:在当前快速的气候变化时期,了解物种转移其地理范围的能力非常重要。此外,需要对范围变化背后的空间种群动态有更深入的了解,以补充气候生态位建模方面的进展。开发了一个包含三个关键特征的仿真模型,这些特征在范围转换动力学的研究中被大大忽略:种内竞争的形式,依赖密度的扩散和生境斑块的瞬态动力学。结果表明,响应的确切形状主要取决于局部和斑块动力学。种内竞争基于竞争的物种比竞争基于争夺的物种更加脆弱。与密度依赖的分散相结合时,竞赛者特别敏感。生活在其承载能力缓慢增长的斑块中的物种也容易受到环境条件快速变化的影响。补充分析方法进一步强调了种内竞争的重要性。

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