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首页> 外文期刊>Phytobiomes Journal >Locally Adapted Mimulus Ecotypes Differentially Impact Rhizosphere Bacterial and Archaeal Communities in an Environment-Dependent Manner
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Locally Adapted Mimulus Ecotypes Differentially Impact Rhizosphere Bacterial and Archaeal Communities in an Environment-Dependent Manner

机译:局部适应的造型生态型差异影响根际细菌和古群落以环境依赖的方式影响

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Plant root?microbe interactions influence plant productivity, health, and resistance to stress. Although there is evidence that plant species and even genotypes can alter soil microbial community structure, environmental conditions can potentially outweigh plant genetic effects. Here, we used a reciprocal transplant experiment to understand the contributions of the environment and the host plant to rhizosphere microbiome composition in locally adapted ecotypes of Mimulus guttatus (syn. Erythranthe guttata ). Two genotypes of a coastal ecotype and two genotypes of an inland ecotype were planted at coastal and inland sites. After 3 months, we collected rhizosphere and bulk soil and assessed microbial communities by 16S rRNA gene sequencing. We found that local environment (coastal versus inland site) strongly influenced rhizosphere communities, at least in part due to distinct local microbial species pools. Host identity played a smaller role: at each site, the ecotypes exhibited remarkably similar composition of microbial communities at the class level, indicating that divergent M. guttatus ecotypes recruit phylogenetically similar rhizosphere communities, even in environments to which they are maladapted. Nevertheless, the two ecotypes significantly differed in community composition at both sites due, in part, to an exclusive set of taxa associated with each ecotype. They also differed in alpha diversity at the inland site. Although this indicates that locally adapted M. guttatus ecotypes are genetically diverged in factors shaping rhizosphere communities, our findings highlight the context-specific interactions between host identity and local environment that shape those communities. Copyright ? 2020 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license .
机译:植物根?微生物相互作用影响植物生产力,健康和抵抗力。虽然有证据表明植物物种甚至基因型可以改变土壤微生物群落结构,但环境条件可能会超过植物遗传效果。在这里,我们使用互核移植实验来了解环境和宿主植物的局部化适应的造型生成的生态型(SYN.ERYTHRANTHE GUTTATA)中的流离星际微生物组成。在沿海和内陆地点种植了沿海生态型的两种基因型和内陆生态型的两种基因型。 3个月后,我们通过16S rRNA基因测序收集了根际和散装土壤并评估了微生物群落。我们发现当地环境(沿海与内陆网站)强烈影响了根际社区,至少部分是由于局部局部微生物物种池。主机身份发挥了较小的作用:在每个网站上,生态型在课程水平上表现出显着相似的微生物群体组成,表明分发的M.Guttatus Ecotypes招募了系统源性类似的根际社区,即使在他们的环境中的环境中也是如此。尽管如此,两位站点的两种生态型在两位地点都与与每种生态型相关的独家分类群不同。他们还在内陆现场的Alpha多样性不同。虽然这表明本地适应的M.Guttatus evotypes在塑造根际社区的因素中遗传分歧,但我们的研究结果强调了主机身份与塑造这些社区的当地环境之间的上下文的相互作用。版权? 2020提交人。这是在CC By-NC-ND 4.0国际许可下分发的开放式访问文章。

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