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Bacterial and Fungal Endophytic Microbiomes of Salicornia europaea

机译:紫柳的细菌和真菌内生微生物组

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We examined Salicornia europaea, a nonmycorrhizal halophyte associated with specific and unique endophytic bacteria and fungi. The microbial community structure was analyzed at two sites differing in salinization history (anthropogenic and naturally saline site), in contrasting seasons (spring and fall) and in two plant organs (shoots and roots) via 16S rRNA and internal transcribed spacer amplicon sequencing. We observed distinct communities at the two sites, and in shoots and roots, while the season was of no importance. The bacterial community was less diverse in shoot libraries than in roots, regardless of the site and season, whereas no significant differences were observed for the fungal community. Proteobacteria and Bacteroidetes dominated bacterial assemblages, and Ascomycetes were the most frequent fungi. A root core microbiome operational taxonomic unit belonging to the genus Marinimicrobium was identified. We detected a significant influence of the Salicornia bacterial community on the fungal one by means of cocorrespondence analysis. In addition, pathways and potential functions of the bacterial community in Salicornia europaea were inferred and discussed. We can conclude that bacterial and fungal microbiomes of S. europaea are determined by the origin of salinity at the sites. Bacterial communities seemed to influence fungal ones, but not the other way around, which takes us closer to understanding of interactions between the two microbial groups. In addition, the plant organs of the halophyte filter the microbial community composition.IMPORTANCE Endophytes are particularly fascinating because of their multifaceted lifestyle, i.e., they may exist as either free-living soil microbes or saprobic ones or pathogens. Endophytic communities of halophytes may be different than those in other plants because salinity acts as an environmental filter. At the same time, they may contribute to the host’s adaptation to adverse environmental conditions, which may be of importance in agriculture.
机译:我们检查了Salicornia europaea,一种与特定且独特的内生细菌和真菌相关的非菌根盐生植物。通过16S rRNA和内部转录间隔子扩增子序列分析了两个在盐碱化历史不同的位点(人为和天然盐分位点),不同季节(春季和秋季)以及两个植物器官(芽和根)中的微生物群落结构。我们在两个地点,枝条和根部观察到不同的群落,而季节并不重要。不论位置和季节如何,枝条文库中细菌群落的多样性都少于根部,而真菌群落没有显着差异。变形杆菌和拟杆菌属细菌组合占主导地位,子囊菌是最常见的真菌。确定了属于Marinimicrobium属的根核心微生物组操作分类单位。我们通过协函分析检测到水杨细菌群落对真菌的重大影响。此外,推断和讨论了欧洲杯柳细菌群落的途径和潜在功能。我们可以得出结论,欧洲链球菌的细菌和真菌微生物群是由这些地点的盐度起源决定的。细菌群落似乎会影响真菌群落,但反过来却没有,这使我们更加了解两个微生物群之间的相互作用。另外,盐生植物的植物器官过滤了微生物群落组成。重要内生植物由于其多方面的生活方式而特别引人入胜,即它们既可以作为自由生存的土壤微生物也可以作为腐生微生物或病原体存在。盐生植物的内生群落可能与其他植物的内生群落不同,因为盐分起环境过滤作用。同时,它们可能有助于寄主适应不利的环境条件,这在农业中可能很重要。

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