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Consequences of tropical forest conversion to oil palm on soil bacterial community and network structure

机译:热带森林转化对土壤细菌群落和网络结构油棕的后果

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摘要

Tropical forest conversion to agriculture is a major global change process. Understanding of the ecological consequences of this conversion are limited by poor knowledge of how soil microorganisms respond. We analyzed the response of soil bacteria to conversion from primary rain forest to oil palm plantation and regenerating logged forest in Malaysia. Bacterial diversity increased by approximately 20% with conversion to oil palm because of higher pH due to liming by plantation managers. Phylogenetic clustering indicated that bacterial communities were determined by environmental filtering. Regenerating logged forests did not have significantly different soil chemistry, which did not correspond with significant differences in batterial richness, diversity, or the relative abundances of particular taxa. However, there were significant differences in the structure of bacterial community networks between regenerating logged forests and primary forests, highlighting previously unobserved effects of these two land uses. Network analysis highlighted taxa that are potentially central to bacterial networks, but have low relative abundances, suggesting that these rare taxa could play an ecological role and therefore warrant further research. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对农业的热带森林转换是一个主要的全球变革过程。理解这种转换的生态后果受到土壤微生物如何应对的差的知识。我们分析了土壤细菌对从原发性雨林转换为油棕榈种植和再生登陆森林的响应。由于种植者管理者的黎明,细菌多样性增加了大约20%,转化为油棕。系统发育聚类表明细菌群落通过环境过滤确定。再生登录的森林没有明显不同的土壤化学性,这与电池丰富性,多样性或特定分类征的相对丰富的显着差异没有对应。然而,再生登录森林与原发性森林之间的细菌群落网络结构存在显着差异,突出了这两种土地使用的以前未观察到的效果。网络分析突出显示出潜在的细菌网络中核心,但具有低相对丰富,表明这些稀有的分类群可能发挥生态作用,因此提供进一步的研究。 (c)2017 Elsevier Ltd.保留所有权利。

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