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Strong associations between plant genotypes and bacterial communities in a natural salt marsh

机译:天然盐沼植物基因型与细菌社区之间的强烈关联

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Although microbial communities have been shown to vary among plant genotypes in a number of experiments in terrestrial ecosystems, relatively little is known about this relationship under natural conditions and outside of select model systems. We reasoned that a salt marsh ecosystem, which is characterized by twice‐daily flooding by tides, would serve as a particularly conservative test of the strength of plant–microbial associations, given the high degree of abiotic regulation of microbial community assembly resulting from alternating periods of inundation and exposure. Within a salt marsh in the northeastern United States, we characterized genotypes of the foundational plant Spartina alterniflora using microsatellite markers, and bacterial metagenomes within marsh soil based on pyrosequencing. We found significant differences in bacterial community composition and diversity between bulk and rhizosphere soil, and that the structure of rhizosphere communities varied depending on the growth form of, and genetic variation within, the foundational plant S.?alterniflora . Our results indicate that there are strong plant–microbial associations within a natural salt marsh, thereby contributing to a growing body of evidence for a relationship between plant genotypes and microbial communities from terrestrial ecosystems and suggest that principles of community genetics apply to this wetland type.
机译:虽然已经显示微生物社区在陆地生态系统中的许多实验中的植物基因型中变化,但在自然条件下和选择模型系统之外的这种关系,相对较少。我们推出了一种盐沼生态系统,其特征在于潮汐两次的洪水,鉴于交替期间的微生物群落组件的高非生物调节,鉴于植物微生物关联的强度的特别保守的试验淹没和曝光。在美国东北部的盐沼中,我们使用微卫星标记物的基础植物Spartina alternflora的基因型,以及基于焦肌的沼泽土壤中的细菌偏见。我们发现散装和根际土壤之间的细菌群落成分和多样性的显着差异,并且根际社区的结构根据基础植物S.?Alterniflora内的生长形式和遗传变异而变化。我们的结果表明,在天然盐沼中存在强大的植物微生物关联,从而促进了陆地生态系统的植物基因型和微生物社区之间存在关系的越来越多的证据,并建议群落遗传学原则适用于这种湿地类型。

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