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Insights into the molecular basis of biocontrol of Brassica pathogens by Bacillus amyloliquefaciens UCMB5113 lipopeptides

机译:解淀粉芽孢杆菌UCMB5113脂肽对芸苔属病原体生物防治的分子基础的见解

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摘要

>Background and Aims Certain micro-organisms can improve plant protection against pathogens. The protective effect may be direct, e.g. due to antibiotic compounds, or indirect, by priming of plant defence as induced systemic resistance (ISR). The plant growth-promoting rhizobacterium Bacillus amyloliquefaciens UCMB5113 shows potential for disease management of oilseed rape. To investigate the mode of action of this protection, especially in relation to jasmonic acid-dependent ISR, Bacillus UCMB5113 was tested with Arabidopsis thaliana mutants and several important fungal pathogens of Brassica species. >Methods Secreted lipopeptide fractions from Bacillus UCMB5113, together with synthetic peptide mimics, were evaluated for their effects on fungal phytopathogens and A. thaliana. The structures of secreted lipopeptides were analysed using mass spectrometry. Plant mutants and reporter lines were used to identify signalling steps involved in disease suppression by lipopeptides. >Key Results In plate tests Bacillus UCMB5113 and lipopeptide extracts suppressed growth of several fungal pathogens infecting Brassica plants. Separation of secreted lipopeptides using reversed-phase high-performance liquid chromatography revealed several fractions that inhibited fungal growth. Analysis by mass spectrometry identified the most potent compounds as novel linear forms of antifungal fengycins, with synthetic peptide mimics confirming the biological activity. Application of the lipopeptide extracts on Arabidopsis roots provided systemic protection against Alternaria brassicicola on leaves. Arabidopsis signalling mutants and PDF1.2 and VSP2 promoter-driven GUS lines indicated that the lipopeptide fraction involved jasmonic-acid-dependent host responses for suppression of fungal growth indicative of ISR. >Conclusions The ability of Bacillus UCMB5113 to counteract pathogens using both antagonistic lipopeptides and through ISR provides a promising tool for sustainable crop production.
机译:>背景和目标:某些微生物可以改善植物对病原体的保护。保护作用可以是直接的,例如。可能是由于抗生素化合物引起的,也可能是由于植物防御引发的系统性间接抗性(ISR)而间接引起的。促进植物生长的解淀粉芽孢杆菌芽孢杆菌UCMB5113显示出对油菜进行疾病管理的潜力。为了研究这种保护的作用方式,特别是与茉莉酸依赖性ISR的关系,用拟南芥突变体和芸苔属的几种重要真菌病原体对芽孢杆菌UCMB5113进行了测试。 >方法评估了芽孢杆菌UCMB5113分泌的脂肽级分以及合成的肽模拟物对真菌植物病原菌和拟南芥的影响。使用质谱分析分泌的脂肽的结构。使用植物突变体和报告基因系鉴定脂肽抑制疾病所涉及的信号传导步骤。 >关键结果在平板测试中,芽孢杆菌UCMB5113和脂肽提取物抑制了几种感染甘蓝型植物的真菌病原体的生长。使用反相高效液相色谱法分离分泌的脂肽显示出抑制真菌生长的几个组分。质谱分析鉴定出最有效的化合物为新型线性形式的抗真菌丰霉素,合成的肽模拟物证实了其生物活性。脂肽提取物在拟南芥根上的应用提供了针对叶片上的念珠菌的系统保护。拟南芥信号转导突变体和PDF1.2和VSP2启动子驱动的GUS系表明,脂肽级分涉及茉莉酸依赖的宿主反应,以抑制指示ISR的真菌生长。 >结论芽孢杆菌UCMB5113利用拮抗脂肽和ISR抵抗病原体的能力为可持续作物生产提供了有希望的工具。

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