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首页> 外文期刊>Frontiers in Microbiology >Metabolic functions of Pseudomonas fluorescens strains from Populus deltoides depend on rhizosphere or endosphere isolation compartment
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Metabolic functions of Pseudomonas fluorescens strains from Populus deltoides depend on rhizosphere or endosphere isolation compartment

机译: Populus deltoides 荧光假单胞菌菌株的代谢功能取决于根际或内球隔离室

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The bacterial microbiota of plants is diverse, with 1000s of operational taxonomic units (OTUs) associated with any individual plant. In this work, we used phenotypic analysis, comparative genomics, and metabolic models to investigate the differences between 19 sequenced Pseudomonas fluorescens strains. These isolates represent a single OTU and were collected from the rhizosphere and endosphere of Populus deltoides . While no traits were exclusive to either endosphere or rhizosphere P. fluorescens isolates, multiple pathways relevant for plant-bacterial interactions are enriched in endosphere isolate genomes. Further, growth phenotypes such as phosphate solubilization, protease activity, denitrification and root growth promotion are biased toward endosphere isolates. Endosphere isolates have significantly more metabolic pathways for plant signaling compounds and an increased metabolic range that includes utilization of energy rich nucleotides and sugars, consistent with endosphere colonization. Rhizosphere P. fluorescens have fewer pathways representative of plant-bacterial interactions but show metabolic bias toward chemical substrates often found in root exudates. This work reveals the diverse functions that may contribute to colonization of the endosphere by bacteria and are enriched among closely related isolates.
机译:植物的细菌菌群是多种多样的,与任何单个植物相关联的操作分类单元(OTU)均为数千个。在这项工作中,我们使用了表型分析,比较基因组学和代谢模型来研究19个测序的荧光假单胞菌菌株之间的差异。这些分离物代表一个OTU,并从毛白杨的根际和内球收集。虽然没有特征是内圈或根际荧光假单胞菌分离物独有的,但与植物-细菌相互作用有关的多种途径在内球分离物基因组中却很丰富。此外,诸如磷酸盐溶解,蛋白酶活性,反硝化和促进根生长的生长表型偏向于内球分离物。内层分离物具有明显更多的植物信号化合物代谢途径,并且代谢范围增加,其中包括利用富含能量的核苷酸和糖,这与内层定植一致。荧光根际菌具有较少的代表植物与细菌相互作用的途径,但显示出对根系分泌物中经常存在的化学底物的代谢偏见。这项工作揭示了可能有助于细菌定居内球的各种功能,并且这些功能在紧密相关的分离物中富集。

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