Noirot-Gros Marie-Francoise, Shinde Shalaka, Larsen Peter E, Zerbs Sarah, Korajczyk Peter J, Kemner Kenneth M, Noirot Philippe H
Biosciences Division, Argonne National Laboratory, Lemont, IL, United States.
Front Microbiol. 2018 May 3;9:853. doi: 10.3389/fmicb.2018.00853. eCollection 2018.
Rhizosphere-associated are known plant growth promoting (PGP) and mycorrhizal helper bacteria (MHB) of many plants and ectomycorrhizal fungi. We investigated the spatial and temporal dynamics of colonization of mycorrhizal and non-mycorrhizal Aspen seedlings roots by the strains SBW25, WH6, Pf0-1, and the strain Pf-5. Seedlings were grown in laboratory vertical plates systems, inoculated with a fluorescently labeled strain, and root colonization was monitored over a period of 5 weeks. We observed unexpected diversity of bacterial assemblies on seedling roots that changed over time and were strongly affected by root mycorrhization. SBW25 and WH6 stains developed highly structured biofilms with internal void spaces forming channels. On mycorrhizal roots bacteria appeared encased in a mucilaginous substance in which they aligned side by side in parallel arrangements. The different phenotypic classes of bacterial assemblies observed for the four strains were summarized in a single model describing transitions between phenotypic classes. Our findings also reveal that bacterial assembly phenotypes are driven by interactions with mucilaginous materials present at roots.
根际相关细菌是许多植物和外生菌根真菌已知的促进植物生长(PGP)和菌根辅助细菌(MHB)。我们研究了菌株SBW25、WH6、Pf0 - 1以及菌株Pf - 5在菌根和非菌根杨树幼苗根上定殖的时空动态。幼苗在实验室垂直平板系统中生长,接种荧光标记菌株,并在5周的时间内监测根定殖情况。我们观察到幼苗根上细菌群落存在意想不到的多样性,其随时间变化,且受到根菌根化的强烈影响。SBW25和WH6菌株形成了具有内部空隙形成通道的高度结构化生物膜。在菌根根上,细菌似乎被包裹在一种粘液物质中,它们在其中并排平行排列。针对这四种菌株观察到的不同表型类别的细菌群落被总结在一个描述表型类别之间转变的单一模型中。我们的研究结果还表明,细菌群落表型是由与根际存在的粘液物质的相互作用驱动的。