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An Interspecies Signaling System Mediated by Fusaric Acid Has Parallel Effects on Antifungal Metabolite Production by Pseudomonas protegens Strain Pf-5 and Antibiosis of Fusarium spp.

机译:一个由镰刀菌酸介导的种间信号系统对假单胞菌蛋白Pf-5菌株产生的抗真菌代谢产物和镰刀菌的抗生作用具有平行影响。

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摘要

Pseudomonas protegens strain Pf-5 is a rhizosphere bacterium that suppresses soilborne plant diseases and produces at least seven different secondary metabolites with antifungal properties. We derived mutants of Pf-5 with single and multiple mutations in biosynthesis genes for seven antifungal metabolites: 2,4-diacetylphoroglucinol (DAPG), pyrrolnitrin, pyoluteorin, hydrogen cyanide, rhizoxin, orfamide A, and toxoflavin. These mutants were tested for inhibition of the pathogens Fusarium verticillioides and Fusarium oxysporum f. sp. pisi. Rhizoxin, pyrrolnitrin, and DAPG were found to be primarily responsible for fungal antagonism by Pf-5. Previously, other workers showed that the mycotoxin fusaric acid, which is produced by many Fusarium species, including F. verticillioides, inhibited the production of DAPG by Pseudomonas spp. In this study, amendment of culture media with fusaric acid decreased DAPG production, increased pyoluteorin production, and had no consistent influence on pyrrolnitrin or orfamide A production by Pf-5. Fusaric acid also altered the transcription of biosynthetic genes, indicating that the mycotoxin influenced antibiotic production by Pf-5 at the transcriptional level. Addition of fusaric acid to the culture medium reduced antibiosis of F. verticillioides by Pf-5 and derivative strains that produce DAPG but had no effect on antibiosis by Pf-5 derivatives that suppressed F. verticillioides due to pyrrolnitrin or rhizoxin production. Our results demonstrated the importance of three compounds, rhizoxin, pyrrolnitrin, and DAPG, in suppression of Fusarium spp. by Pf-5 and confirmed that an interspecies signaling system mediated by fusaric acid had parallel effects on antifungal metabolite production and antibiosis by the bacterial biological control organism.
机译:蛋白假单胞菌菌株Pf-5是根际细菌,可抑制土壤传播的植物病害,并产生至少七种具有抗真菌特性的次级代谢产物。我们衍生了Pf-5的突变体,该突变体具有7种抗真菌代谢物的生物合成基因中的单突变和多突变:2,4-二乙酰基隐烟酸(DAPG),吡咯硝菌素,焦磷酸叶黄素,氰化氢,根瘤菌素,奥法酰胺A和毒黄素。测试了这些突变体对病原菌Fusarium v​​erticillioides和Fusarium oxysporum f的抑制作用。 sp。 isi发现Pf-5引起了根瘤菌素,吡咯硝菌素和DAPG的真菌拮抗作用。以前,其他工作人员表明,由许多镰刀菌属物种(包括黄萎病菌)产生的霉菌毒素富沙酸能抑制假单胞菌属的DAPG的产生。在这项研究中,用富铁酸改良培养基会降低DAPG的产量,增加焦磷酸黄酮的产量,并且对Pf-5的吡咯硝酮或Orfamide A的产量没有持续的影响。富马酸还改变了生物合成基因的转录,表明霉菌毒素在转录水平上影响了Pf-5的抗生素产生。向培养基中添加富沙酸可减少Pf-5和产生DAPG的衍生菌株对细小镰刀菌的抗微生物作用,但对由于吡咯硝菌素或根瘤菌素产生而抑制细小镰刀菌的Pf-5衍生物的抗微生物作用没有影响。我们的结果证明了根瘤菌素,吡咯硝菌素和DAPG这三种化合物在抑制镰刀菌中的重要性。由Pf-5进行了研究,并证实了由岩藻酸介导的种间信号传递系统对细菌生物防治生物体的抗真菌代谢物产生和抗微生物作用具有平行作用。

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