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The effects of host species and sexual dimorphism differ among root, leaf and flower microbiomes of wild strawberries in situ

机译:野草莓的根,叶和花微生物区系中寄主物种和性二态性的影响不同

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Plant-associated microbiomes profoundly influence host interactions with below- and aboveground environments. Characterizing plant-associated microbiomes in experimental settings have revealed important drivers of microbiota assemblies within host species. However, it remains unclear how important these individual drivers (e.g., organ type, host species, host sexual phenotype) are in structuring the patterns of plant–microbiota association in the wild. Using 16s rRNA sequencing, we characterized root, leaf and flower microbiomes in three closely related, sexually polymorphic Fragaria species, in the broadly sympatric portion of their native ranges in Oregon, USA. Taking into account the potential influence of broad-scale abiotic environments, we found that organ type explained the largest variation of compositional and phylogenetic α- and β-diversity of bacterial communities in these wild populations, and its overall effect exceeded that of host species and host sex. Yet, the influence of host species increased from root to leaf to flower microbiomes. We detected strong sexual dimorphism in flower and leaf microbiomes, especially in host species with the most complete separation of sexes. Our results provide the first demonstration of enhanced influence of host species and sexual dimorphism from root to flower microbiomes, which may be applicable to many other plants in the wild.
机译:与植物相关的微生物群深刻影响宿主与地下和地面环境的相互作用。在实验环境中表征与植物相关的微生物群已揭示宿主物种内微生物群装配的重要驱动力。但是,目前尚不清楚这些个体驱动因素(例如器官类型,寄主物种,寄主性表型)在构建野生植物-微生物群关联模式方面的重要性。使用16s rRNA测序,我们在美国俄勒冈州其自然范围的广泛同伴部分中,鉴定了三个紧密相关,有性多态的草莓属物种的根,叶和花微生物组。考虑到广泛的非生物环境的潜在影响,我们发现器官类型解释了这些野生种群中细菌群落的组成和系统发育α-和β-多样性的最大变化,其总体影响超过宿主物种和寄主性。然而,宿主物种的影响从根到叶再到花的微生物群都增加了。我们在花和叶微生物区系中检测到强烈的性二态性,尤其是在性别最完全分离的寄主物种中。我们的结果首次证明了宿主物种和有性二态性从根到花的微生物群增强的影响力,这可能适用于许多其他野生植物。

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