首页> 外文期刊>Molecular Plant-Microbe Interactions >Biocontrol of Avocado Dematophora Root Rot by Antagonistic Pseudomonas fluorescens PCL1606 Correlates With the Production of 2-Hexyl 5-Propyl Resorcinol
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Biocontrol of Avocado Dematophora Root Rot by Antagonistic Pseudomonas fluorescens PCL1606 Correlates With the Production of 2-Hexyl 5-Propyl Resorcinol

机译:拮抗荧光假单胞菌PCL1606对牛油果Dematophora根腐病的生物防治与2-己基5-丙基间苯二酚的生产相关

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A collection of 905 bacterial isolates from the rhizospheres of healthy avocado trees was obtained and screened for antagonistic activity against Dematophora necatrix, the cause of avocado Dematophora root rot (also called white root rot). A set of eight strains was selected on the basis of growth inhibitory activity against D. necatrix and several other important soilborne phytopathogenic fungi. After typing of these strains, they were classified as belonging to Pseudomonas chlororaphis, Pseudomonas fluorescens, and Pseudomonas putida. The eight antagonistic Pseudomonas spp. were analyzed for their secretion of hydrogen cyanide, hydrolytic enzymes, and antifungal metabolites. P. chlororaphis strains produced the antibiotic phenazine-1-carboxylic acid and phenazine-1-carboxamide. Upon testing the biocontrol ability of these strains in a newly developed avocado-D. necatrix test system and in a tomato-F. oxysporum test system, it became apparent that P. fluorescens PCL1606 exhibited the highest biocontrol ability. The major antifungal activity produced by strain P. fluorescens PCL1606 did not correspond to any of the major classes of antifungal antibiotics produced by Pseudomonas biocontrol strains. This compound was purified and subsequently identified as 2-hexyl 5-propyl resorcinol (HPR). To study the role of HPR in biocontrol activity, two Tn5 mutants of P. fluorescens PCL1606 impaired in antagonistic activity were selected. These mutants were shown to impair HRP production and showed a decrease in biocontrol activity. As far as we know, this is the first report of a Pseudomonas biocontrol strain that produces HPR in which the production of this compound correlates with its biocontrol activity.
机译:从健康鳄梨树的根际中收集了905种细菌分离株,并筛选了对鳄梨Dematophora根腐病(也称为白根腐烂)的病原Dematophora necatrix的拮抗活性。根据对中型线虫和其他几种重要的土壤传播植物致病真菌的生长抑制活性,选择了八种菌株。在对这些菌株进行分型后,它们被分类为属于绿假单胞菌,荧光假单胞菌和恶臭假单胞菌。八个拮抗假单胞菌属。分析他们分泌的氰化氢,水解酶和抗真菌代谢物。绿腐霉菌株产生抗生素吩嗪-1-羧酸和吩嗪-1-羧酰胺。在新开发的鳄梨D中测试这些菌株的生物防治能力后。 necatrix测试系统和番茄F。在氧孢菌测试系统中,很明显,荧光假单胞菌PCL1606表现出最高的生物防治能力。荧光假单胞菌PCL1606产生的主要抗真菌活性与假单胞菌生物防治菌株产生的任何主要的抗真菌抗生素都不相对应。将该化合物纯化,随后鉴定为2-己基5-丙基间苯二酚(HPR)。为了研究HPR在生物防治活性中的作用,选择了拮抗活性受损的两个荧光假单胞菌PCL1606 Tn5突变体。这些突变体显示出会损害HRP的产生并降低其生物防治活性。据我们所知,这是产生HPR的假单胞菌生物防治菌株的首次报道,其中该化合物的产生与其生物防治活性相关。

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