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Exploring the Influence of Environmental Factors on Bacterial Communities within the Rhizosphere of the Cu-tolerant plant Elsholtzia splendens

机译:探索环境因素对耐铜植物香s(Elsholtzia splendens)根际内细菌群落的影响

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摘要

Bacterial communities of rhizospheric soils play an important role in the tolerance and uptake of metal-tolerant/hyperaccumulating plants to metals, e.g. the Cu-tolerant Elsholtzia splendens native to China. In this work, pyrosequencing of the bacterial 16S rRNA gene was firstly applied to investigate the rhizospheric bacterial community of E. splendens grown at Cu contaminated sites. The 47 phyla including 11 dominant phyla (>1%) in E. splendens rhizosphere were presented. The effects of Cu and other environmental factors (total organic carbon, total nitrogen and pH) on the rhizospheric bacterial community were studied comprehensively. The phyla abundances were affected by the environmental factors to different extent, and we found pH, instead of Cu concentration, influenced UniFrac distance significantly and was identified as the most important environmental factor affecting bacterial community. In addition, the influence of environmental factors on gene profiles was explored according to the predicted metagenomes obtained by PICRUSt (phylogenetic investigation of communities by reconstruction of unobserved states). Our study illustrates a view about Cu-tolerant E. splendens rhizospheric bacterial communities (composition, diversity and gene profiles) and their influencing factors, giving a hand for the understanding on bacterial community is formed and affected in rhizosphere.
机译:根际土壤的细菌群落在耐金属/高积累植物对金属(例如金属)的耐受性和吸收中起重要作用。耐铜的Elsholtzia灿烂于中国。在这项工作中,细菌16S rRNA基因的焦磷酸测序首先被用于研究生长在Cu污染位点的sp草的根际细菌群落。提出了47个门,其中包括11个优势门(> 1%)。全面研究了铜和其他环境因素(总有机碳,总氮和pH)对根际细菌群落的影响。系统丰富度在不同程度上受环境因素的影响,我们发现pH值(而不是Cu浓度)显着影响UniFrac距离,被认为是影响细菌群落的最重要环境​​因素。另外,根据PICRUSt获得的预测的基因组组(通过重建未观察到的状态对群落进行系统发育研究),探索了环境因素对基因谱的影响。我们的研究阐明了关于耐铜的大肠埃希氏菌根际细菌群落(组成,多样性和基因谱)及其影响因素的观点,为了解根际中细菌群落的形成和影响提供了帮助。

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