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An Integrated Insight into the Relationship between Soil Microbial Community and Tobacco Bacterial Wilt Disease

机译:对土壤微生物群落与烟草细菌枯萎病关系的综合洞察

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The soil microbial communities play an important role in plant health, however, the relationship between the below-ground microbiome and above-ground plant health remains unclear. To reveal such a relationship, we analyzed soil microbial communities through sequencing of 16S rRNA gene amplicons from 15 different tobacco fields with different levels of wilt disease in the central south part of China. We found that plant health was related to the soil microbial diversity as plants may benefit from the diverse microbial communities. Also, those 15 fields were grouped into ‘healthy’ and ‘infected’ samples based upon soil microbial community composition analyses such as unweighted paired-group method with arithmetic means (UPGMA) and principle component analysis, and furthermore, molecular ecological network analysis indicated that some potential plant-beneficial microbial groups, e.g., Bacillus and Actinobacteria could act as network key taxa, thus reducing the chance of plant soil-borne pathogen invasion. In addition, we propose that a more complex soil ecology network may help suppress tobacco wilt, which was also consistent with highly diversity and composition with plant-beneficial microbial groups. This study provides new insights into our understanding the relationship between the soil microbiome and plant health.
机译:土壤微生物社区在植物健康中发挥着重要作用,然而,地下微生物组和地上植物健康之间的关系仍然不清楚。为了揭示这种关系,我们通过在中国中部南部的不同水平枯萎病中测序16S rRNA基因扩增器来分析土壤微生物群体。我们发现植物健康与土壤微生物多样性有关,因为植物可能受益于不同的微生物社区。此外,将这些15个字段基于土壤微生物群落组成分析(如未加权的配对组方法(UPGMA)和原理成分分析,以及原理成分分析,以及分子生态网络分析,将这15个字段分为“健康”和“感染的”样品。一些潜在的植物有益的微生物组,例如枯草芽孢杆菌和肌动菌可以充当网络密钥分类群,从而减少植物土壤传播病原体入侵的可能性。此外,我们提出了一种更复杂的土壤生态网络可能有助于抑制烟草枯萎病,这也与具有植物有益的微生物组的高度多样性和组成一致。本研究为我们了解土壤微生物组和植物健康之间的关系提供了新的见解。

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