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Rhamnolipid Biosurfactant against Fusarium verticillioides to Control Stalk and Ear Rot Disease of Maize

机译:鼠李糖脂表面活性剂对小麦镰刀菌(Fusarium v​​erticillioides)的控制可控制玉米的茎秆和穗腐病

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摘要

Antifungal activity of rhamnolipids (RLs) has been widely studied against many plant pathogenic fungi, but not against Fusarium verticillioides, a major pathogen of maize (Zea mays L.). F. verticillioides causes stalk and ear rot of maize or asymptomatically colonizes the plant and ears resulting in moderate to heavy crop loss throughout the world. F. verticillioides produces fumonisin mycotoxins, reported carcinogens, which makes the contaminated ears unsuitable for consumption. In this study, the RL produced using glucose as sole carbon source was characterized by FTIR and LCMS analyses and its antifungal activity against F. verticillioides was evaluated in vitro on maize stalks and seeds. Further, the effect of RL on the mycelia of F. verticillioides was investigated by scanning electron microscopy which revealed visible damage to the mycelial structure as compared to control samples. In planta, treatment of maize seeds with a RL concentration of 50 mg l-1 resulted in improved biomass and fruiting compared to those of healthy control plants and complete suppression of characteristic disease symptoms and colonization of maize by F. verticillioides. The study highlights the potential of RLs to be used for an effective biocontrol strategy against colonization of maize plant by F. verticillioides.
机译:鼠李糖脂(RLs)的抗真菌活性已被广泛研究对许多植物致病性真菌,但对玉米的主要病原体-镰孢镰刀菌(Fusarium v​​erticillioides)却没有进行研究。 F. verticillioideses引起玉米秸秆和穗腐烂,或无症状地定植在植物和穗上,导致全世界作物损失中等至重度。据报道,F。verticillioides会产生伏马菌素真菌毒素,这是致癌物,这使受污染的耳朵不适合食用。在这项研究中,通过FTIR和LCMS分析表征了以葡萄糖为唯一碳源生产的RL,并在体外对玉米秸秆和种子评估了其对斑节对虾的抗真菌活性。此外,通过扫描电子显微镜研究了RL对网状假丝酵母菌丝体的作用,与对照样品相比,揭示了对菌丝体结构的可见损伤。在植物中,与健康对照植物相比,RL浓度为50 mg l -1 的玉米种子处理改善了生物量和结实,并完全抑制了特征性疾病症状和玉米定殖verticillioides。这项研究强调了RLs潜在的潜力,可用于有效的生物防治策略,以防止黄萎病菌对玉米植物的定殖。

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