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首页> 外文期刊>BMC Microbiology >Does the essential oil of Lippia sidoides Cham. (pepper-rosmarin) affect its endophytic microbial community?
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Does the essential oil of Lippia sidoides Cham. (pepper-rosmarin) affect its endophytic microbial community?

机译:请问Lippia sidoides Cham的精油。 (胡椒-迷迭香)影响其内生微生物群落?

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Background Lippia sidoides Cham., also known as pepper-rosmarin, produces an essential oil in its leaves that is currently used by the pharmaceutical, perfumery and cosmetic industries for its antimicrobial and aromatic properties. Because of the antimicrobial compounds (mainly thymol and carvacrol) found in the essential oil, we believe that the endophytic microorganisms found in L. sidoides are selected to live in different parts of the plant. Results In this study, the endophytic microbial communities from the stems and leaves of four L. sidoides genotypes were determined using cultivation-dependent and cultivation-independent approaches. In total, 145 endophytic bacterial strains were isolated and further grouped using either ERIC-PCR or BOX-PCR, resulting in 76 groups composed of different genera predominantly belonging to the Gammaproteobacteria. The endophytic microbial diversity was also analyzed by PCR-DGGE using 16S rRNA-based universal and group-specific primers for total bacteria, Alphaproteobacteria, Betaproteobacteria and Actinobacteria and 18S rRNA-based primers for fungi. PCR-DGGE profile analysis and principal component analysis showed that the total bacteria, Alphaproteobacteria, Betaproteobacteria and fungi were influenced not only by the location within the plant (leaf vs. stem) but also by the presence of the main components of the L. sidoides essential oil (thymol and/or carvacrol) in the leaves. However, the same could not be observed within the Actinobacteria. Conclusion The data presented here are the first step to begin shedding light on the impact of the essential oil in the endophytic microorganisms in pepper-rosmarin.
机译:背景技术Lippia sidoides Cham。,也称为胡椒-迷迭香,在其叶片中产生香精油,由于其抗菌和芳香特性,目前被制药,香料和化妆品行业所使用。由于在精油中发现了抗菌化合物(主要是百里香酚和香芹酚),因此我们认为在S.idesidoides中发现的内生微生物被选择生活在植物的不同部位。结果在本研究中,使用依赖于培养和不依赖于培养的方法,确定了四种S. sidoides基因型茎和叶的内生微生物群落。总共分离出145种内生细菌菌株,并使用ERIC-PCR或BOX-PCR进一步分组,从而产生了76个由不同属的物种组成的组,这些属主要属于γ-变形杆菌。还通过PCR-DGGE,使用基于16S rRNA的通用和特定于组的引物对总细菌,丙酸杆菌,β变形杆菌和放线杆菌进行了内生微生物多样性分析,并对真菌采用了基于18S rRNA的引物进行了分析。 PCR-DGGE谱分析和主成分分析表明,总细菌,α-变形杆菌,β-变形细菌和真菌不仅受植物内位置(叶片对茎的影响)的影响,而且还受到西多孢菌主要成分的存在的影响。叶子中的精油(百里香酚和/或香芹酚)。但是,在放线菌中没有观察到相同的现象。结论此处提供的数据是开始研究精油对胡椒-迷迭香内生微生物的影响的第一步。

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