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Fungichromin Production by Streptomyces padanus PMS-702 for Controlling Cucumber Downy Mildew

机译:链霉菌PMS-702生产的真菌色素可防治黄瓜霜霉病

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摘要

Streptomyces padanus PMS-702 strain produces a polyene macrolide antibiotic fungichromin and displays antagonistic activities against many phytopathogenic fungi. In the present study, experimental formulations were assessed to improve the production of fungichromin, the efficacy of PMS-702 on the suppression of sporangial germination, and the reduction of cucumber downy mildew caused by Pseudoperonospora cubensis. PMS-702 strain cultured in a soybean meal-glucose (SMG) medium led to low levels of fungichromin accumulation and sporangial germination suppression. Increasing medium compositions and adding plant oils (noticeably coconut oil) in SMG significantly increased fungichromin production from 68 to 1,999.6 μg/ml. Microscopic examination reveals that the resultant suspensions significantly reduced sporangial germination and caused cytoplasmic aggregation. Greenhouse trials reveal that the application of PMS-702 cultural suspensions reduced downy mildew severity considerably. The addition of Tween 80 into the synthetic medium while culturing PMS-702 further increased the suppressive efficacy of downy mildew severity, particularly when applied at 24 h before inoculation or co-applied with inoculum. Fungichromin at 50 μg/ml induced phytotoxicity showing minor necrosis surrounded with light yellowish halos on cucumber leaves. The concentration that leads to 90% inhibition (IC90) of sporangial germination was estimated to be around 10 μg/ml. The results provide a strong possibility of using the S. padanus PMS-702 strain as a biocontrol agent to control other plant pathogens.
机译:an链霉菌PMS-702菌株产生多烯大环内酯类抗生素真菌染色质,并显示出对许多植物致病真菌的拮抗活性。在本研究中,评估了实验制剂以改善真菌染色质的产生,PMS-702抑制孢子囊萌发的功效以及减少由假单孢菌引起的黄瓜霜霉病的发生。在豆粕葡萄糖(SMG)培养基中培养的PMS-702菌株导致低水平的真菌色素积累和孢子囊萌发抑制。在SMG中增加培养基成分并添加植物油(特别是椰子油)可将真菌染色质的产量从68提高至1,999.6μg/ ml。显微镜检查显示,所得的悬浮液显着减少了孢子囊萌发并引起细胞质聚集。温室试验表明,使用PMS-702培养悬浮液可以大大降低霜霉病的严重性。在培养PMS-702的同时,在合成培养基中添加吐温80可以进一步提高霜霉病严重程度的抑制效果,尤其是在接种前24小时或与接种物共同施用时。 50μg/ ml的真菌染色质诱导了植物毒性,显示出轻微的坏死,并在黄瓜叶片上被淡黄色的光晕包围。导致孢子芽萌发抑制90%(IC90)的浓度估计约为10μg/ ml。结果提供了使用S.padanus PMS-702菌株作为生物防治剂来控制其他植物病原体的强烈可能性。

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