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PAPER: Interdisciplinary statistical mechanics Statistical physics of community ecology: a cavity solution to MacArthur’s consumer resource model

机译:论文:跨学科统计力学社区生态学的统计物理:麦克阿瑟消费资源模型的腔腔解决方法

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A central question in ecology is to understand the ecological processes that shape community structure. Niche-based theories have emphasized the important role played by competition for maintaining species diversity. Many of these insights have been derived using MacArthur’s consumer resource model (MCRM) or its generalizations. Most theoretical work on the MCRM has focused on small ecosystems with a few species and resources. However theoretical insights derived from small ecosystems many not scale up to large ecosystems with many resources and species because large systems with many interacting components often display new emergent behaviors that cannot be understood or deduced from analyzing smaller systems. To address these shortcomings, we develop a statistical physics inspired cavity method to analyze MCRM when both the number of species and the number of resources is large. Unlike previous work in this limit, our theory addresses resource dynamics and resource depletion and demonstrates that species generically and consistently perturb their environments and significantly modify available ecological niches. We show how our cavity approach naturally generalizes niche theory to large ecosystems by accounting for the effect of collective phenomena on species invasion and ecological stability. Our theory suggests that such phenomena are a generic feature of large, natural ecosystems and must be taken into account when analyzing and interpreting community structure. It also highlights the important role that statistical-physics inspired approaches can play in furthering our understanding of ecology.
机译:生态中的核心问题是了解塑造社区结构的生态过程。基于利基的理论强调了维持物种多样性竞争的重要作用。使用Macarthur的消费者资源模型(MCRM)或其概括来得出许多这些见解。 MCRM的大多数理论上的工作都集中在具有少数物种和资源的小生态系统上。然而,来自小型生态系统的理论洞察力许多不扩大到具有许多资源和物种的大型生态系统,因为具有许多交互组件的大型系统通常显示无法理解或推导出分析较小系统的新的紧急行为。为了解决这些缺点,我们开发统计物理启发的腔体方法,以分析MCRM,当物种数量和资源数量都很大时。与以往的工作不同,我们的理论解决了资源动态和资源耗尽,并展示了一般且始终如一地扰乱其环境,并显着修改可用的生态利基。我们展示了我们的腔光方法如何通过核算集体现象对物种入侵和生态稳定性的影响来自然地将利基理论概括为大型生态系统。我们的理论表明,这种现象是大型自然生态系统的通用特征,在分析和解释社区结构时必须考虑到。它还强调了统计 - 物理启发方法可以发挥的重要作用,进一步了解我们对生态的理解。

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