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Optimization of Solid-State Fermentation for Improved Conidia Production of Beauveria bassiana as a Mycoinsecticide

机译:固态发酵优化球孢白僵菌分生孢子生产作为杀真菌剂的优化

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摘要

The production of conidia of entomopathogenic Beauveria bassiana by solid-state fermentation was studied for the development of a biocontrol agent against aphid Myzus persicae. The optimal conditions for conidia production on polished white rice were 40% moisture content, 25℃ culture temperature, 2-day-old seeding culture grown in 3% corn meal, 2% rice bran, 2% corn steep powder medium, initial conidia concentration of 107 conidia/g in the wet rice, 10% inoculum size, and use of a polyethylene bag as a container. The polyethylene bag containing inoculated rice was hand-shaken every 12 hr during fermentation. Using optimal conditions, the maximum conidia production obtained was 4.05 g conidia/100 g dry rice after 14 days of cultivation, a rate 2.83 times higher than conidia yield of pre-optimization.
机译:研究了固态发酵生产致病性球孢白僵菌的分生孢子,以开发抗蚜虫桃蚜的生物防治剂。在精制白米上生产分生孢子的最佳条件是水分含量为40%,培养温度为25℃,在3%玉米粉,2%米糠,2%玉米浆粉培养基中培养2天大的种子培养物,初始分生孢子浓度在湿米中加入10 7 分生孢子/克,接种量为10%,并使用聚乙烯袋作为容器。在发酵过程中,每12小时将装有接种大米的聚乙烯袋摇晃一次。在最佳条件下,培养14天后获得的最大分生孢子产量为4.05 g分生孢子/ 100 g干稻,比优化前的分生孢子产量高2.83倍。

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