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Antifungal Attributes of Lactobacillus plantarum MYS6 against Fumonisin Producing Fusarium proliferatum Associated with Poultry Feeds

机译:植物乳杆菌MYS6对伏马菌素生产与家禽饲料相关的枯萎病镰刀菌的抗真菌特性

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摘要

Fumonisins, being common in occurrence in maize-based feeds, pose a great threat to animal and human health. The present study is aimed at determining the antifungal activity of Lactobacillus plantarum MYS6 against a fumonisin producing fungus, Fusarium proliferatum MYS9. The isolate was subjected to standard tests for determining its probiotic attributes and antifungal properties. L. plantarum MYS6 thrived well at pH 3.0 and 6.0, and exhibited strong resistance up to 3% bile. The isolate showed a high degree of cell surface hydrophobicity corresponding to its strong adhesion to chicken crop epithelial cells. Co-inoculation with the fungus on modified de Man Rogosa Sharpe medium revealed the inhibitory effect of L. plantarum MYS6 on fungal growth and biomass. Observation using scanning electron microscopy showed distortion of hyphal structures, swollen tips and disrupted conidia. Conidia germination inhibition assay restrained germination and showed deformed hyphae. The bioprotective feature of the isolate was evident by the inhibition of fungal development in maize-kernel treated with the cell free supernatant of L. plantarum MYS6. Both the isolate and its extracellular metabolites lowered fumonisin content in feed model up to 0.505 mg/Kg of feed and 0.3125 mg/Kg of feed respectively when compared to the level of 0.870 mg/Kg of feed in control. The major antifungal compounds produced by the isolate were 10-Octadecenoic acid, methyl ester; palmitic acid, methyl ester; heptadecanoic acid, 16-methyl ester; stearic acid and lauric acid. L. plantarum MYS6 reduced 61.7% of fumonisin possibly by a binding mechanism. These findings suggest the application of L. plantarum MYS6 as an efficient probiotic additive and biocontrol agent in feed used in poultry industry. Additionally, the antifungal metabolites pose a conspicuous inhibition of Fusarium growth and fumonisin production.
机译:伏马毒素在玉米饲料中很常见,对动物和人类健康构成了巨大威胁。本研究旨在确定植物乳杆菌MYS6对产伏马毒素的真菌镰刀菌MYS9的抗真菌活性。对分离物进行标准测试以确定其益生菌特性和抗真菌特性。植物乳杆菌MYS6在pH 3.0和6.0时表现良好,并显示出高达3%的胆汁抗性。该分离物表现出高度的细胞表面疏水性,这与其对鸡农上皮细胞的强粘附力相对应。在改良的De Man Rogosa Sharpe培养基上与真菌共同接种显示了植物乳杆菌MYS6对真菌生长和生物量的抑制作用。使用扫描电子显微镜的观察显示菌丝结构变形,尖端肿胀和分生孢子破裂。分生孢子萌发抑制试验可抑制发芽并显示变形的菌丝。该分离物的生物保护特征通过用植物乳杆菌MYS6的无细胞上清液处理的玉米内核中的真菌发育的抑制而明显。与对照组的0.870 mg / Kg的饲料水平相比,分离物及其细胞外代谢物均可将饲料模型中的伏马菌素含量分别降低至0.505 mg / Kg的饲料和0.3125 mg / Kg的饲料。该分离物产生的主要抗真菌化合物为10-十八碳烯酸甲酯。棕榈酸,甲酯;十六烷酸,16-甲酯;硬脂酸和月桂酸。植物乳杆菌MYS6可能通过结合机制减少了伏马毒素的61.7%。这些发现表明植物乳杆菌MYS6作为有效的益生菌添加剂和生物防治剂在禽业饲料中的应用。此外,抗真菌代谢物对镰刀菌生长和伏马菌素的产生具有明显的抑制作用。

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