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Complementarity among plant growth promoting traits in rhizospheric bacterial communities promotes plant growth

机译:根际细菌群落中促进植物生长的性状之间的互补性促进植物生长

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摘要

An assessment of roles of rhizospheric microbial diversity in plant growth is helpful in understanding plant-microbe interactions. Using random combinations of rhizospheric bacterial species at different richness levels, we analysed the contribution of species richness, compositions, interactions and identity on soil microbial respiration and plant biomass. We showed that bacterial inoculation in plant rhizosphere enhanced microbial respiration and plant biomass with complementary relationships among bacterial species. Plant growth was found to increase linearly with inoculation of rhizospheric bacterial communities with increasing levels of species or plant growth promoting trait diversity. However, inoculation of diverse bacterial communities having single plant growth promoting trait, i.e., nitrogen fixation could not enhance plant growth over inoculation of single bacteria. Our results indicate that bacterial diversity in rhizosphere affect ecosystem functioning through complementary relationship among plant growth promoting traits and may play significant roles in delivering microbial services to plants.
机译:根际微生物多样性在植物生长中的作用评估有助于理解植物与微生物的相互作用。使用不同丰富度水平的根际细菌物种的随机组合,我们分析了物种丰富度,组成,相互作用和同一性对土壤微生物呼吸和植物生物量的贡献。我们表明,植物根际中的细菌接种增强了细菌种类之间的互补关系,从而提高了微生物呼吸和植物生物量。研究发现,随着根际细菌群落的接种,植物的生长呈线性增长,物种或植物生长水平的提高促进了性状多样性。但是,接种具有单一植物生长促进特性的不同细菌群落,即固氮不能比接种单一细菌增强植物生长。我们的结果表明,根际中的细菌多样性通过促进植物生长的性状之间的互补关系影响生态系统的功能,并可能在向植物提供微生物服务中发挥重要作用。

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