剑兰伯克霍尔德菌培养基优化。木耳菌促进了抗菌物质的生产

H. S. Elshafie, I. Camele, S. Bufo
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引用次数: 7

摘要

-伯克霍尔德菌属的许多物种具有潜在的工业应用价值,包括生产抗生素、生物表面活性剂、生物塑料和降解环境污染物。本研究旨在研究不同碳氮源对剑兰伯克氏菌的影响。研究了真菌菌ICMP11096的生长情况及产生的次生代谢产物对革兰氏阳性菌巨芽孢杆菌和植物病原真菌枯丝核菌的生物活性。附加碳源为蔗糖、果糖和乳糖,附加氮源为尿素、硝酸钾和硝酸铵。结果表明,在微量矿质营养培养基中添加新的碳源和氮源可降低所研究菌株的生长速度,增加生物活性物质的产量。以硝酸铵和乳糖为原料,菌株的生物活性物质产量最高。采用高效液相色谱(HPLC)对纯化后的滤液进行分离,并对分离得到的5个单峰对革兰氏阳性巨芽孢杆菌ITM100和革兰氏阴性大肠杆菌ITM103的抑菌活性进行评价。生物活性最高的是2号峰,分别为12800和6400 Ua。ml -1分别对抗巨型芽孢杆菌和大肠杆菌。结果表明,营养物质的添加可以增加抗菌物质的产生,这可能是提高生物防治效率的一种有效策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MEDIUM OPTIMIZATION OF Burkholderia gladioli pv. agaricicola ENHANCED THE PRODUCTION OF ANTIMICROBIAL SUBSTANCES
-Numerous species in the genus Burkholderia have interesting properties for potential industrial applications including production of antibiotics, biosurfactants, bioplastics and degradation of environmental contaminants. The aim of this research was study the effect of different carbon and nitrogen sources on Burkholderia gladioli pv. agaricicola strain ICMP11096 growth and bioactivity of produced secondary metabolites against gram-positive bacterium Bacillus megaterium and plant pathogenic fungi Rhizoctonia solani . The additional carbon sources were sucrose, fructose and lactose whereas, the additional nitrogen sources were, urea, potassium nitrate and ammonium nitrate. The results demonstrated that the addition of new carbon and nitrogen sources to the minimal mineral nutrient media lead to decreasing the growth rate of studied bacterial strain and increasing the production of bioactive substances. The maximum production of bioactive substances of studied bacterial strain was obtained using ammonium nitrate and lactose. The purified filtrate of the studied bacterial strain was fractionated by High Performance Liquid Chromatography (HPLC) and the antimicrobial activity of five isolated single peaks was evaluated against gram positive bacteria B. megaterium ITM100 and gram negative bacteria Escherichia coli ITM103. The most bioactive peak was number two with 12800 and 6400 Ua.ml -1 against B. megaterium and E. coli , respectively. The obtained results suggested that the nutrient amendments can increase the production of antimicrobial substances and this may be a useful strategy for improving the biocontrol efficiency.
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