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Specialized Microbiome of a Halophyte and its Role in Helping Non-Host Plants to Withstand Salinity

机译:嗜睡器的专用微生物和其在帮助非宿主植物承受盐度的作用

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Root microbiota is a crucial determinant of plant productivity and stress tolerance. Here, we hypothesize that the superior halo-tolerance of seepweed Suaeda salsa is tightly linked to a specialized belowground microbiome. To test this hypothesis, we performed a phylogenetic trait-based framework analysis based on bacterial 16S rRNA gene and fungal nuclear rRNA internal transcribed spacer profiling. Data showed that the dominant α-proteobacteria and γ-proteobacteria communities in bulk soil and root endosphere tend to be phylogenetically clustered and at the same time exhibit phylogenetic over-dispersion in rhizosphere. Likewise, the dominant fungal genera occurred at high phylogenetic redundancy. Interestingly, we found the genomes of rhizospheric and endophytic bacteria associated with S. salsa to be enriched in genes contributing to salt stress acclimatization, nutrient solubilization and competitive root colonization. A wide diversity of rhizobacteria with similarity to known halotolerant taxa further supported this interpretation. These findings suggest that an ecological patterned root-microbial interaction strategy has been adopted in S. salsa system to confront soil salinity. We also demonstrated that the potential core microbiome members improve non-host plants growth and salt tolerance. This work provides a platform to improve plant fitness with halophytes-microbial associates and novel insights into the functions of plant microbiome under salinity.
机译:根微生物是植物生产率和应力耐受性的重要决定因素。在这里,我们假设Seepweed Suaeda Salsa的卓越卤素耐受性与专门的低于地微生物组紧密相关。为了测试这一假设,我们进行了基于细菌16s rRNA基因和真菌核rRNA内转录的间隔性分析的系统发育性质的基于系统的骨架分析。数据表明,散装土壤和根骨末端的显性α-植物和γ-蛋白菌群往往是在系统源性聚类的,同时在根际具有系统发育过分散体。同样,显性真菌属在高音发育冗余中发生。有趣的是,我们发现与盐酸辣调味汁相关的根茎和内生细菌的基因组,以富含盐胁迫适应,营养溶解和竞争根系定子的基因。具有相似性与已知的Halotolerant纳税群相似性的巨大流离失所程度进一步支持这种解释。这些研究结果表明,S.Salsa系统中采用了生态模式的根微生物相互作用策略,以面对土壤盐度。我们还证明了潜在的核心微生物组成员改善非宿主植物生长和耐盐性。这项工作提供了一种平台,可改善植物健身与烟灰 - 微生物伙伴和新的洞中盐度植物微生物组功能的洞察力。

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