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Metabolites from Wild Potato Inhibit Virulence Factors of the Soft Rot and Blackleg Pathogen Pectobacterium brasiliense

机译:来自野生土豆的代谢物抑制软腐肉和Blackleg病原体植物胶杆菌的毒力因子

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Potato (Solanum tuberosum L.) is the primary vegetable crop consumed worldwide and is largely affected by bacterial pathogens that can cause soft rot and blackleg disease. Recently, resistance to these diseases has been identified in the wild potato S. chacoense, and the mechanism of resistance is unknown. Here, it was hypothesized that S. chacoense stems or tubers have unique chemistry that confers resistance to the pathogen Pectobacterium brasiliense through bactericidal, bacteriostatic, or antivirulence activity. Stem and tuber metabolite extracts were collected from S. chacoense and tested for effects on Pectobacterium bacterial multiplication rates, and activity and expression of known exoenzymes and virulence genes using S. tuberosum extracts as a comparative control. Comparatively, the S. chacoense extracts did not affect bacterial multiplication rate; however, they did reduce pectinase, cellulase, and protease activities. The chemical extracts were profiled using a bioassay-guided fractionation, and a nontargeted metabolomics comparison of S. chacoense and S. tuberosum stems and tubers was performed. The data showed that selected alkaloids, phenolic amines, phenols, amines, and peptides are integrative chemical sources of resistance against the bacteria. Copyright ? 2021 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
机译:土豆(Solanum Tuberosum L.)是全球消耗的原发性蔬菜作物,主要受细菌病原体的影响,可引起软腐肉和Blackleg病。最近,在野生土豆S. Chacoense中鉴定了对这些疾病的抗性,并且抗性机制未知。在这里,假设S. Chacoense茎或块茎具有独特的化学化学,可通过杀菌,抑菌或抗病毒活性赋予对病原体胶杆糖尿病的抵抗力。从S. Chacoense收集茎和块茎代谢物提取物,并测试对胶杆菌繁殖率的影响,以及使用S. Tuberosum提取物作为比较对照的已知exozymes和毒力基因的活性和表达。相比之下,S. chaceense提取物不影响细菌繁殖率;然而,它们确实减少了果胶酶,纤维素酶和蛋白酶活性。使用生物测定引导的分馏来分析化学萃取物,并进行S.Chacoense和T.Tuberosum茎和块茎的不靶向的代谢组合比较。该数据显示,选定的生物碱,酚胺,酚,胺和肽是对细菌抗性的综合化学品。版权? 2021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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