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差异的生态学:用特征和进化距离评估群落组装。

The ecology of differences: assessing community assembly with trait and evolutionary distances.

机构信息

Department of Biological Sciences, University of Toronto - Scarborough, 1265 Military trail, Toronto, ON, Canada, M1C 1A4; Department of Ecology and Evolutionary Biology, University of Toronto, 25 Wilcocks St., Toronto, ON, M5S 3B2, Canada.

出版信息

Ecol Lett. 2013 Oct;16(10):1234-44. doi: 10.1111/ele.12161. Epub 2013 Aug 4.

Abstract

Species enter and persist in local communities because of their ecological fit to local conditions, and recently, ecologists have moved from measuring diversity as species richness and evenness, to using measures that reflect species ecological differences. There are two principal approaches for quantifying species ecological differences: functional (trait-based) and phylogenetic pairwise distances between species. Both approaches have produced new ecological insights, yet at the same time methodological issues and assumptions limit them. Traits and phylogeny may provide different, and perhaps complementary, information about species' differences. To adequately test assembly hypotheses, a framework integrating the information provided by traits and phylogenies is required. We propose an intuitive measure for combining functional and phylogenetic pairwise distances, which provides a useful way to assess how functional and phylogenetic distances contribute to understanding patterns of community assembly. Here, we show that both traits and phylogeny inform community assembly patterns in alpine plant communities across an elevation gradient, because they represent complementary information. Differences in historical selection pressures have produced variation in the strength of the trait-phylogeny correlation, and as such, integrating traits and phylogeny can enhance the ability to detect assembly patterns across habitats or environmental gradients.

摘要

物种之所以能够进入并存在于当地群落中,是因为它们在生态上适应了当地的条件。最近,生态学家已经从测量物种丰富度和均匀度的多样性,转向使用反映物种生态差异的度量方法。量化物种生态差异有两种主要方法:功能(基于特征)和物种间的系统发育成对距离。这两种方法都产生了新的生态见解,但同时方法问题和假设限制了它们的应用。特征和系统发育可能提供关于物种差异的不同且互补的信息。为了充分检验组装假说,需要一个整合特征和系统发育信息的框架。我们提出了一种用于组合功能和系统发育成对距离的直观度量方法,为评估功能和系统发育距离如何有助于理解群落组装模式提供了有用的方法。在这里,我们表明特征和系统发育都为高山植物群落沿海拔梯度的群落组装模式提供了信息,因为它们代表了互补的信息。历史选择压力的差异导致了特征-系统发育相关性的强度变化,因此,整合特征和系统发育可以增强在不同生境或环境梯度中检测组装模式的能力。

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