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Environmental Factors Modulating Antibiotic and Siderophore Biosynthesis by Pseudomonas fluorescens Biocontrol Strains

机译:环境因素调节荧光假单胞菌生物防治菌株的抗生素和铁载体生物合成。

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摘要

Understanding the environmental factors that regulate the biosynthesis of antimicrobial compounds by disease-suppressive strains of Pseudomonas fluorescens is an essential step toward improving the level and reliability of their biocontrol activity. We used liquid culture assays to identify several minerals and carbon sources which had a differential influence on the production of the antibiotics 2,4-diacetylphloroglucinol (PHL), pyoluteorin (PLT), and pyrrolnitrin and the siderophores salicylic acid and pyochelin by the model strain CHA0, which was isolated from a natural disease-suppressive soil in Switzerland. Production of PHL was stimulated by Zn2+, NH4Mo2+, and glucose; the precursor compound mono-acetylphloroglucinol was stimulated by the same factors as PHL. Production of PLT was stimulated by Zn2+, Co2+, and glycerol but was repressed by glucose. Pyrrolnitrin production was increased by fructose, mannitol, and a mixture of Zn2+ and NH4Mo2+. Pyochelin production was increased by Co2+, fructose, mannitol, and glucose. Interestingly, production of its precursor salicylic acid was increased by different factors, i.e., NH4Mo2+, glycerol, and glucose. The mixture of Zn2+ and NH4Mo2+ with fructose, mannitol, or glycerol further enhanced the production of PHL and PLT compared with either the minerals or the carbon sources used alone, but it did not improve siderophore production. Extending fermentation time from 2 to 5 days increased the accumulation of PLT, pyrrolnitrin, and pyochelin but not of PHL. When findings with CHA0 were extended to an ecologically and genetically diverse collection of 41 P. fluorescens biocontrol strains, the effect of certain factors was strain dependent, while others had a general effect. Stimulation of PHL by Zn2+ and glucose was strain dependent, whereas PLT production by all strains that can produce this compound was stimulated by Zn2+ and transiently repressed by glucose. Inorganic phosphate reduced PHL production by CHA0 and seven other strains tested but to various degrees. Production of PLT but not pyrrolnitrin by CHA0 was also reduced by 100 mM phosphate. The use of 1/10-strength nutrient broth-yeast extract, compared with standard nutrient broth-yeast extract, amended with glucose and/or glycerol resulted in dramatically increased accumulations of PHL (but not PLT), pyochelin, and salicylic acid, indicating that the ratio of carbon source to nutrient concentration played a key role in the metabolic flow. The results of this study (i) provide insight into the biosynthetic regulation of antimicrobial compounds, (ii) limit the number of factors for intensive study in situ, and (iii) indicate factors that can be manipulated to improve bacterial inoculants.
机译:理解抑制疾病的荧光假单胞菌菌株调节抗菌化合物生物合成的环境因素,是提高其生物防治活性水平和可靠性的重要步骤。我们使用液体培养测定法确定了几种矿物质和碳源,它们分别对模型菌株对2,4-二乙酰基间苯三酚(PHL),焦黄体素(PLT)和吡咯硝菌素以及铁载体水杨酸和pyochelin的生产产生了不同的影响CHA0,是从瑞士的一种天然疾病抑制土壤中分离出来的。 Zn 2 + ,NH4Mo 2 + 和葡萄糖刺激PHL的产生。前体化合物单乙酰基间苯三酚的刺激因子与PHL相同。 Zn 2 + ,Co 2 + 和甘油刺激PLT的产生,但葡萄糖抑制。果糖,甘露醇和Zn 2 + 和NH4Mo 2 + 的混合物增加了吡咯硝酸的产量。 Co 2 + ,果糖,甘露醇和葡萄糖可增加泛素的产量。有趣的是,其前体水杨酸的产量通过不同的因素增加,例如NH4Mo 2 + ,甘油和葡萄糖。与单独使用矿物质或碳源相比,Zn 2 + 和NH4Mo 2 + 与果糖,甘露醇或甘油的混合物进一步提高了PHL和PLT的产量,但它并未改善铁载体的生产。将发酵时间从2天延长到5天会增加PLT,吡咯硝菌素和Pyochelin的积累,但不会增加PHL的积累。当将CHA0的发现扩展到41个荧光假单胞菌生物防治菌株的生态和遗传多样性集合时,某些因素的作用取决于菌株,而其他因素则具有一般作用。 Zn 2 + 和葡萄糖对PHL的刺激依赖于菌株,而所有能够产生该化合物的菌株的PLT产生均受Zn 2 + 刺激并被葡萄糖短暂抑制。无机磷酸盐减少了CHA0和其他七个测试菌株的PHL产生,但程度不同。 CHAO产生的PLT而不是吡咯硝菌素也减少了100 mM的磷酸盐。与标准营养肉汤酵母提取物相比,使用1/10强度的营养肉汤酵母提取物,并添加葡萄糖和/或甘油,可导致PHL(而非PLT),叶绿素和水杨酸的积累显着增加,这表明碳源与养分浓度的比例在代谢流中起关键作用。这项研究的结果(i)提供了对抗菌化合物生物合成调控的见识,(ii)限制了就地深入研究的因素数量,并且(iii)指出了可以用来改善细菌接种剂的因素。

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