曝气对吸湿链霉菌生产杀菌剂的影响

I. Mitrović, J. Grahovac, J. Dodić, Z. Rončević, M. Grahovac
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引用次数: 0

摘要

近年来,由Alternaria属植物致病性物种引起的苹果果实疾病在塞尔维亚以及世界其他地区已成为流行。由于杀虫剂对环境和人类健康有许多副作用,世界各地的科学家都在关注寻找替代方法来控制这种重要的食物。微生物的利用、培养基和工艺条件的优化是生物杀菌剂的实际研究方向。研究了曝气对吸湿链霉菌生物杀菌剂生产的影响,采用优化后的培养基,以甘油为碳源,在3l搅拌槽生物反应器中进行了曝气。曝气率为0.5、1.0和1.5 vvm,心率恒定。研究了100 RPM的转速。结果表明,当曝气量为1.5 vvm,搅拌速度为100 rpm时,产生的抗真菌代谢物最多。统计分析显示,最大的?在上述条件下培养96 h,互生藤KA10和T1Jg3菌丝的吸胀区直径分别达到78 mm和78.67 mm。
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Effect of aeration on production of biofungicide using Streptomyces hygroscopicus
Apple fruit diseases caused by phytopathogenic species of the genus Alternaria have become current in recent years in Serbia as well as in other parts of the world. Due to the fact that pesticides have a number of side effects on the environment and human health, scientists around the world are concerned with finding alternative ways to control this important food. Usage of microorganisms, optimization of the medium and process conditions for their cultivation and production of biofungicides are the actual research direction. The effect of aeration on biofungicide production by Streptomyces hygroscopicus was studied in a 3 l stirred tank bioreactor using a previously optimized cultivation medium with glycerol as a carbon source. Aeration rates of 0.5, 1.0, and 1.5 vvm with constant agita?tion speed of 100 rpm were studied. It was found that the greatest production of antifungal metabolites effective against two Alternaria alternata isolates occurred with an aeration of 1.5 vvm and an agitation speed of 100 rpm. Statistical analysis showed that the largest inhi?bition zone diameters of A. alternata KA10 (78 mm) and T1Jg3 (78.67 mm) mycelial growth were achieved under the indicated conditions in 96 h of cultivation.
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