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Analysis of Plant Growth-Promoting Effects of Fluorescent Pseudomonas Strains Isolated from Mentha piperita Rhizosphere and Effects of Their Volatile Organic Compounds on Essential Oil Composition

机译:胡椒薄荷根际分离的荧光假单胞菌菌株对植物生长的促进作用及其挥发性有机化合物对精油成分的影响

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摘要

Many species or strains of the genus Pseudomonas have been characterized as plant growth promoting rhizobacteria (PGPR). We used a combination of phenotypic and genotypic techniques to analyze the community of fluorescent Pseudomonas strains in the rhizosphere of commercially grown Mentha piperita (peppermint). Biochemical techniques, Amplified rDNA Restriction Analysis (ARDRA), and 16S rRNA gene sequence analysis revealed that the majority of the isolated native fluorescent strains were P. putida. Use of two Repetitive Sequence-based PCR (rep-PCR) techniques, BOX-PCR and ERIC-PCR, allowed us to evaluate diversity among the native strains and to more effectively distinguish among them. PGPR activity was tested for the native strains and reference strain P. fluorescens WCS417r. Micropropagated M. piperita plantlets were exposed to microbial volatile organic compounds (mVOCs) emitted by the bacterial strains, and plant biomass parameters and production of essential oils (EOs) were measured. mVOCs from 11 of the native strains caused an increase in shoot fresh weight. mVOCs from three native strains (SJ04, SJ25, SJ48) induced changes in M. pierita EO composition. The mVOCs caused a reduction of metabolites in the monoterpene pathway, for example menthofuran, and an increase in menthol production. Menthol production is the primary indicator of EO quality. The mVOCs produced by native strains SJ04, SJ25, SJ48, and strain WCS417r were analyzed. The obtained mVOC chromatographic profiles were unique for each of the three native strains analyzed, containing varying hydrocarbon, aromatic, and alogenic compounds. The differential effects of the strains were most likely due to the specific mixtures of mVOCs emitted by each strain, suggesting a synergistic effect occurs among the compounds present.
机译:假单胞菌属的许多种或菌株已被表征为促进植物生长的根际细菌(PGPR)。我们使用表型和基因型技术的组合来分析商业种植的薄荷(胡椒)的根际中荧光假单胞菌菌株的群落。生化技术,rDNA扩增限制分析(ARDRA)和16S rRNA基因序列分析表明,大多数分离出的天然荧光菌株为恶臭假单胞菌。 BOX-PCR和ERIC-PCR这两种基于重复序列的PCR(rep-PCR)技术的使用,使我们能够评估天然菌株之间的多样性,并更有效地区分它们。针对天然菌株和参考菌株荧光假单胞菌WCS417r测试了PGPR活性。将微繁殖的M. piperita苗暴露于细菌菌株释放的微生物挥发性有机化合物(mVOC),并测量植物生物量参数和精油(EO)的产量。来自11种天然菌株的mVOC导致枝条鲜重的增加。来自三种天然菌株(SJ04,SJ25,SJ48)的mVOC引起皮埃里希氏菌EO组成的变化。 mVOC导致单萜途径中的代谢物减少,例如薄荷醇,而薄荷醇产量增加。薄荷醇的生产是EO质量的主要指标。分析了天然菌株SJ04,SJ25,SJ48和菌株WCS417r产生的mVOC。所获得的mVOC色谱图对于所分析的三个天然菌株中的每一个都是唯一的,它们包含不同的烃,芳族化合物和拟生物化合物。菌株的差异作用最可能是由于每种菌株发出的mVOC的特定混合物所致,这表明存在的化合物之间存在协同效应。

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