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Assessing Bacterial Diversity in the Rhizosphere of Thymus zygis Growing in the Sierra Nevada National Park (Spain) through Culture-Dependent and Independent Approaches

机译:通过文化依赖性和独立性方法评估在内华达山脉国家公园(西班牙)生长的百里香合子的根际细菌多样性

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摘要

Little is known of the bacterial communities associated with the rhizosphere of wild plant species found in natural settings. The rhizosphere bacterial community associated with wild thyme, Thymus zygis L., plants was analyzed using cultivation, the creation of a near-full length 16S rRNA gene clone library and 454 amplicon pyrosequencing. The bacterial community was dominated by Proteobacteria (mostly Alphaproteobacteria and Betaproteobacteria), Actinobacteria, Acidobacteria, and Gemmatimonadetes. Although each approach gave a different perspective of the bacterial community, all classes/subclasses detected in the clone library and the cultured bacteria could be found in the pyrosequencing datasets. However, an exception caused by inconclusive taxonomic identification as a consequence of the short read length of pyrotags together with the detection of singleton sequences which corresponded to bacterial strains cultivated from the same sample highlight limitations and considerations which should be taken into account when analysing and interpreting amplicon datasets. Amplicon pyrosequencing of replicate rhizosphere soil samples taken a year later permit the definition of the core microbiome associated with Thymus zygis plants. Abundant bacterial families and predicted functional profiles of the core microbiome suggest that the main drivers of the bacterial community in the Thymus zygis rhizosphere are related to the nutrients originating from the plant root and to their participation in biogeochemical cycles thereby creating an intricate relationship with this aromatic plant to allow for a feedback ecological benefit.
机译:在自然环境中发现的与野生植物物种的根际相关的细菌群落知之甚少。分析了与野生百里香,百里香,百里香和百里香植物相关的根际细菌群落,通过种植,建立了近全长的16S rRNA基因克隆文库和454个扩增子焦磷酸测序来进行分析。细菌群落主要由变形杆菌(主要是Alphaproteobacteria和Betaproteobacteria),Actinobacteria,Acidobacteria和Gemmatimonadetes组成。尽管每种方法对细菌群落的看法都不尽相同,但可以在焦磷酸测序数据集中找到克隆文库中检测到的所有类别/亚类和培养细菌。然而,由于焦油标签读取时间短以及检测到与从同一样品中培养的细菌菌株相对应的单例序列而导致的分类学鉴定不确定性导致的例外,突出了局限性和考虑因素,应在分析和解释时加以考虑扩增子数据集。一年后采集的重复根际土壤样品的扩增子焦磷酸测序可确定与百里香合子植物相关的核心微生物组。丰富的细菌家族和核心微生物组的功能预测表明,百里香根际细菌群落的主要驱动力与植物根部的养分及其参与生物地球化学循环有关,从而与这种芳香族形成了复杂的关系。植物,以提供反馈的生态效益。

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