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Endophytic fungi associated with Monarda citriodora an aromatic and medicinal plant and their biocontrol potential

机译:与香茅药用植物Monarda citriodora相关的内生真菌及其生防潜力

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摘要

>Context: The Food and Agriculture Organization has estimated that every year considerable losses of the food crops occur due to plant diseases. Although fungicides are extensively used for management of plant diseases, they are expensive and hazardous to the environment and human health. Alternatively, biological control is the safe way to overcome the effects of plant diseases and to sustain agriculture. Since Monarda citriodora Cerv. ex Lag. (Lamiaceae/Labiatae) is known for its antifungal properties, it was chosen for the study.>Objective: The isolation of endophytic fungi from M. citriodora and assessing their biocontrol potential.>Material and methods: The isolated endophytes were characterized using ITS-5.8 S rDNA sequencing. Their biocontrol potential was assessed using different antagonistic assays against major plant pathogens.>Results: Twenty-eight endophytes representing 11 genera were isolated, of which, around 82% endophytes showed biocontrol potential against plant pathogens. MC-2 L (Fusarium oxysporum), MC-14 F (F. oxysporum), MC-22 F (F. oxysporum) and MC-25 F (F. redolens) displayed significant antagonistic activity against all the tested pathogens. Interestingly, MC-10 L (Muscodor yucatanensis) completely inhibited the growth of Sclerotinia sp., Colletotrichum capsici, Aspergillus flavus and A. fumigatus in dual culture assay, whereas MC-8 L (A. oryzae) and MC-9 L (Penicillium commune) completely inhibited the growth of the Sclerotinia sp. in fumigation assay.>Conclusions: Endophytes MC-2 L, MC-14 F, MC-22 F and MC-25 F could effectively be used to control broad range of phytopathogens, while MC-10 L, MC-8 L and MC-9 L could be used to control specific pathogens. Secondly, endophytes showing varying degrees of antagonism in different assays represented the chemo-diversity not only as promising biocontrol agents but also as a resource of defensive and bioactive metabolites.
机译:>背景:粮食及农业组织估计,每年由于植物病害造成的粮食作物损失相当大。尽管杀真菌剂被广泛用于植物病害的防治,但它们昂贵且对环境和人类健康有害。另外,生物防治是克服植物病害和维持农业的安全途径。自Monarda citriodora Cerv。前滞后。 >目的:从柑桔分枝杆菌中分离内生真菌并评估其生防潜力。>材料和方法: 使用ITS-5.8 S rDNA测序对分离的内生菌进行了表征。通过不同的拮抗试验评估了它们对主要植物病原体的生物防治潜力。>结果:分离出代表11个属的28种内生菌,其中约82%的内生菌对植物病原体具有生物防治潜力。 MC-2(L. oxysporum),MC-14(F. oxysporum),MC-22(F. oxysporum)和MC-25(F. redolens)对所有测试的病原体均表现出显着的拮抗活性。有趣的是,在双重培养法中,MC-10 L(Muscodor yucatanensis)完全抑制了菌核菌,炭疽菌,黄曲霉和烟曲霉的生长,而MC-8 L(米曲霉)和MC-9 L(青霉菌)公社)完全抑制了核盘菌的生长。 >结论:内生细菌MC-2 L,MC-14 F,MC-22 F和MC-25 F可有效地控制广泛的植物病原体,而MC-10 L, MC-8 L和MC-9 L可用于控制特定病原体。其次,内生菌在不同的检测方法中表现出不同程度的拮抗作用,它们不仅代表着化学多样性,而且有望成为具有生物防治作用的生物防治剂,同时也可以作为防御性和生物活性代谢产物的来源。

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