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AVERMECTIN PRODUCTION BY SOLID STATE FERMENTATION-A NOVEL APPROACH

机译:固态发酵生产阿维菌素的新方法

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Objective : The present study was carried out to evaluate SSF process for the production of avermectin by Streptomyces avermitilis NRRL 8165 using easily available grains, millets and some agricultural by-product. Methods : Various substrates were screened for their ability to support avermectin production. Different parameters to maximize the yield of avermectin by S. avermitilis NRRL 8165 under SSF were optimized by conventional one factor at a time approach and parameters optimized earlier were adopted for the subsequent study. Results : Sorghum seeds used as solid substrate supported maximum growth and total avermectin production (4.6 mg g -1 dry substrate). The optimum values for maximum avermectin production were: moistening medium containing g l -1 KH 2 PO 4 1; MgSO 4 .7H 2 O 0.4, inoculum size 20 % (24 h old culture in yeast extract-malt extract dextrose medium) v/w of initial dry substrate, substrate particle size 0.5 to 4 mm, incubation temperature 28 °C, initial moisture level 105%, incubation period of 15 d, 8 % w/w sucrose and 5% w/w soyameal. The avermectin yield with optimized fermentation condition was 5.8 mg g -1 dry substrate which is 1.3 fold higher as compared to non-optimized condition. Conclusion : Avermectin produced by S. avermitilis are widely used as an anthelmintic agent in the medical, veterinary and agricultural applications. In comparison with submerged fermentation, SSF can become an alternative cost-effective method for the production of avermectin. This report demonstrates the feasibility of employing agro-based substrate, that could reduce antibiotics production cost.
机译:目的:本研究利用易于获得的谷物,小米和一些农业副产品,评估了阿维链霉菌NRRL 8165生产阿维菌素的SSF工艺。方法:筛选各种底物支持阿维菌素生产的能力。通过常规的一次因子优化SSF下阿维链霉菌NRRL 8165的阿维菌素收率最大化的不同参数,同时采用较早优化的参数进行后续研究。结果:用作固体底物的高粱种子支持最大的生长和总阿维菌素产量(4.6 mg g -1干燥底物)。最大阿维菌素产量的最佳值为:含g l -1 KH 2 PO 4 1的润湿介质; MgSO 4 .7H 2 O 0.4,接种量20%(在酵母提取物-麦芽提取物葡萄糖培养基中培养24小时)v / w初始干底物,底物粒径0.5至4 mm,孵育温度28°C,初始水分浓度为105%,潜伏期为15天,蔗糖浓度为8%w / w,豆粕为5%w / w。在优化的发酵条件下,阿维菌素的产量为5.8 mg g -1干燥底物,比未优化的条件高1.3倍。结论:阿维链霉菌产生的阿维菌素在医疗,兽医和农业应用中被广泛用作驱虫药。与沉浸式发酵相比,SSF可以成为生产阿维菌素的另一种经济高效的方法。该报告证明了使用农业基基质的可行性,这可以降低抗生素的生产成本。

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