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首页> 外文期刊>Botanical Journal of the Linnean Society >Separating environmental and geographical determinants of phylogenetic community structure in Amazonian palms (Arecaceae)
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Separating environmental and geographical determinants of phylogenetic community structure in Amazonian palms (Arecaceae)

机译:分离亚马逊棕榈树(木犀科)系统发育群落结构的环境和地理决定因素

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Phylogenetic information can provide important insight into the assembly of hyper-diverse tropical rainforest communities. The hierarchical nature and scale dependency of phylogenetic community structure can be used to disentangle complex networks of assembly mechanisms. Here, we outline how particular assembly mechanisms can be identified by analysing phylogenetic community structure on different scales related to space and environment. We present a case study on a large set of species-rich palm communities from the western Amazon basin. We aimed to elucidate the assembly of these communities by separating the roles of broad-scale biogeographic processes, habitat filtering and intra-habitat processes. Overall, we found phylogenetic clustering, which could be caused by a variety of different processes. When we reduced the species pool according to regions, habitats or soil sand content, we found that the structure was consistent with a combination of regional biogeographic differentiation, habitat filtering and within-habitat processes. The habitat filtering effect was strongest, although it varied in strength among communities in different habitats. Some phylogenetic structure could not be accounted for by biogeography or habitat, suggesting that intra-habitat processes such as micro-environmental filtering or biotic interactions also play a role. (c) 2012 The Linnean Society of London, Botanical Journal of the Linnean Society, 2012, , .
机译:系统发育信息可以为了解多种多样的热带雨林群落提供重要的见识。系统发育群落结构的等级性质和规模依赖性可用于解开组装机制的复杂网络。在这里,我们概述了如何通过分析与空间和环境有关的不同尺度的系统发育群落结构,来确定特定的组装机制。我们提出了一个案例研究,该案例来自西亚马逊盆地的一大批物种丰富的棕榈群落。我们旨在通过分离大规模生物地理过程,栖息地过滤和栖息地内部过程来阐明这些社区的集合。总体而言,我们发现了系统发育聚类,这可能是由各种不同的过程引起的。当我们根据区域,栖息地或土壤砂含量减少物种库时,我们发现其结构与区域生物地理分化,栖息地过滤和栖息地过程相结合。尽管不同生境的群落之间的强度差异很大,但生境过滤效果最强。一些系统发育结构不能由生物地理学或栖息地解释,这表明栖息地内部的过程,例如微环境过滤或生物相互作用也起着作用。 (c)2012年伦敦林奈学会,《林奈学会植物学杂志》,2012年,,。

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