Pavoine Sandrine, Love Milton S, Bonsall Michael B
Research Group, Department of Zoology, University of Oxford, Oxford OX1 3PS, UK.
Ecol Lett. 2009 Sep;12(9):898-908. doi: 10.1111/j.1461-0248.2009.01348.x. Epub 2009 Jul 7.
Phylogenetic divergences have recently been included in analyses that aim to elucidate patterns of biodiversity in space and time. We introduce a generalized framework for two widely used phylogenetic diversity (PD) indices: Raos quadratic entropy (QE) and Faiths PD. We demonstrate how this framework can be used to partition diversity simultaneously across evolutionary periods and spatial (e.g. local communities in a region) and / or time units (e.g. a community investigated yearly). From a study of rockfish hotspot diversity from the Southern California Bight, the analysis of PD revealed a recent decrease in the amount of fish caught from six evolutionary deep lineages, with implications for the community structure of this speciose group. This approach, which can also be applied to trees assembled from functional traits, contributes to our understanding of the mechanisms that underpin community organization and to the description of the consequences of human-driven impacts in the environment.
系统发育分歧最近已被纳入旨在阐明生物多样性在空间和时间上的模式的分析中。我们为两种广泛使用的系统发育多样性(PD)指数引入了一个通用框架:劳氏二次熵(QE)和费思的PD。我们展示了这个框架如何用于同时在进化时期以及空间(例如一个地区的当地群落)和/或时间单位(例如每年调查的一个群落)上划分多样性。通过对南加利福尼亚湾岩鱼热点多样性的研究,PD分析揭示了从六个进化深度谱系捕获的鱼类数量最近有所下降,这对这个物种丰富的群体的群落结构有影响。这种方法也可以应用于根据功能性状组装的树,有助于我们理解支撑群落组织的机制以及描述人类驱动的环境影响的后果。