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跨尺度解析生态位与随机过程的重要性。

Disentangling the importance of ecological niches from stochastic processes across scales.

机构信息

Department of Biology and Tyson Research Center, Washington University in St Louis, St Louis, MO 63130, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2011 Aug 27;366(1576):2351-63. doi: 10.1098/rstb.2011.0063.

Abstract

Deterministic theories in community ecology suggest that local, niche-based processes, such as environmental filtering, biotic interactions and interspecific trade-offs largely determine patterns of species diversity and composition. In contrast, more stochastic theories emphasize the importance of chance colonization, random extinction and ecological drift. The schisms between deterministic and stochastic perspectives, which date back to the earliest days of ecology, continue to fuel contemporary debates (e.g. niches versus neutrality). As illustrated by the pioneering studies of Robert H. MacArthur and co-workers, resolution to these debates requires consideration of how the importance of local processes changes across scales. Here, we develop a framework for disentangling the relative importance of deterministic and stochastic processes in generating site-to-site variation in species composition (β-diversity) along ecological gradients (disturbance, productivity and biotic interactions) and among biogeographic regions that differ in the size of the regional species pool. We illustrate how to discern the importance of deterministic processes using null-model approaches that explicitly account for local and regional factors that inherently create stochastic turnover. By embracing processes across scales, we can build a more synthetic framework for understanding how niches structure patterns of biodiversity in the face of stochastic processes that emerge from local and biogeographic factors.

摘要

确定性理论认为,环境过滤、生物相互作用和种间权衡等基于生态位的局部过程在很大程度上决定了物种多样性和组成的模式。相比之下,更多的随机理论强调了偶然的定居、随机灭绝和生态漂移的重要性。这种确定性和随机性之间的分歧可以追溯到生态学的早期,一直延续到当代的辩论(例如,生态位与中性)。正如罗伯特·H·麦克阿瑟及其同事的开创性研究所示,解决这些争论需要考虑局部过程的重要性如何在不同尺度上发生变化。在这里,我们提出了一个框架,用于区分在沿着生态梯度(干扰、生产力和生物相互作用)和在区域物种库大小不同的生物地理区域中,确定性和随机性过程在产生物种组成(β多样性)的站点间变异方面的相对重要性。我们说明了如何使用明确考虑固有产生随机周转率的局部和区域因素的零模型方法来辨别确定性过程的重要性。通过跨越尺度的过程,我们可以建立一个更综合的框架,以了解在出现源于局部和生物地理因素的随机过程的情况下,生态位如何构建生物多样性模式。

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