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Inhibition of agronomically relevant fungal phytopathogens by tyrocidines, cyclic antimicrobial peptides isolated from Bacillus aneurinolyticus

机译:从芽孢杆菌分离的酪氨基,循环抗微生物肽对农艺相关真菌植物病变的抑制作用

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The tyrocidines, a complex of analogous cyclic decapeptides produced by Bacillus aneurinolyticus, exhibited noteworthy activity against a range of phytopathogenic fungi, including Fusarium verticillioides, Fusarium solani and Botrytis cinerea. The activity of the tyrocidine peptide complex (Trc mixture) and purified tyrocidines exhibited minimum inhibition concentrations below 13 μg ml?1 (~10 μM) and was significantly more potent than that of the commercial imidazole fungicide, bifonazole. Although the tyrocidines’ activity was negatively influenced by the presence of Ca2+, it remained unaffected by the presence of Mg2+, Na+ and K+. Microscopic analysis revealed significant impact on the morphology of F. solani and Bot. cinerea including retarded germination and hyperbranching of hyphae. Studies with membrane-impermeable dyes, SYTOX green and propidium iodide suggested that the main mode of action of tyrocidines involves the disruption of fungal membrane integrity. Because of the tyrocidines’ broad spectrum and potent antifungal activity, possible multiple targets reducing the risk of overt resistance and general salt tolerance, they are promising candidates that warrant further investigation as bio-fungicides.
机译:Tyrocidines是由芽孢杆菌产生的类似循环肽的复合物,其对一系列植物致病性真菌具有值得注意的活性,包括镰刀菌,镰刀菌,镰刀菌菌素,镰刀菌菌和Botrytis Cinerea。酪甲肽复合物(TRC混合物)的活性和纯化的酪甲溶液表现出低于13μg×1(〜10μm)以下的最小抑制浓度,并且比商业咪唑杀真菌剂,二烷酶明显更有效。虽然酪氨酸的活性受到Ca2 +的存在的负面影响,但它保持不受Mg 2 +,Na +和K +的存在。显微镜分析显示对索尔氏和机器人的形态产生重大影响。 Cinerea包括慢性萌发和菌丝的超支。用膜不透水染料,辛酸氧化物和碘化丙烷的研究表明,Tyrocidines的主要作用方式涉及真菌膜完整性的破坏。由于杂色素的广谱和有效的抗真菌活性,可能的多个靶标降低了明显抗性和一般耐盐性的风险,他们希望候选人需要进一步调查生物杀菌剂。

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