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Deciphering Microbiome Related to Rusty Roots of Panax ginseng and Evaluation of Antagonists Against Pathogenic Ilyonectria

机译:与Panax人参生锈根相关的解密微生物组,对致病性的拮抗剂评估

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摘要

Plant roots host diverse microbes that are closely associated with root fitness. Currently, the relationship between microbes and rusty roots of Panax ginseng remains unclear. Here, we described the root-associated microbiome in rusty and healthy ginseng by metagenomic sequencing of 16S rRNA and ITS regions. Being enriched in Diseased-roots (Dr) of ginseng and their rhizosphere soil, the fungus of Ilyonectria, was identified as the most probable cause of the disease after ITS analysis. Meanwhile, an increase of Mortierella was observed in Healthy-roots (Hr). Surprisingly, an enriched Fusarium was found in both Hr and their rhizosphere soil. Besides, in comparison with Hr, decreased relative abundance of Actinomycetales and increased relative abundance of Pseudomonadales was observed in Dr after 16S rRNA analysis. What’s more, we isolated several microorganisms as antagonists that showed strong inhibiting effects on Ilyonectria in plate assays. In field trials, inoculation of Bacillus sp. S-11 displayed apparent suppression effect against Ilyonectria and shifted microbial communities in rhizosphere soil. Our research identified key microbiota involved in rusty roots of P. ginseng and offered potential biocontrol solutions to rusty disease.
机译:植物根部宿主与根健身密切相关的不同微生物。目前,Panax人参微生物和生锈根系之间的关系仍不清楚。在此,我们通过16S rRNA及其地区的偏见测序描述了生锈和健康人参中的根系微生物组。富含人参(Dr)富含人参(Dr),伊利诺克的真菌,被鉴定为其分析后疾病最有可能的原因。同时,在健康的根(HR)中观察到Mortierella的增加。令人惊讶的是,HR和它们的根际土壤中发现了一种富集的镰刀菌。此外,与人力资源相比,在16S rRNA分析后,在DR中观察到在DR中观察到的相对丰度和伪组大理的相对丰度增加。更重要的是,我们孤立几种微生物作为拮抗剂,对伊利诺克岛的板式测定表现出强烈的抑制作用。在田间试验中,接种芽孢杆菌。 S-11对伊利诺克考尔伊尔尔尔斯克岛和根际土壤移位的微生物群落表现出明显的抑制作用。我们的研究确定了参与P.Ginseng生锈根部的关键微生物群,并为生锈疾病提供了潜在的生物控制解决方案。

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