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Modulation of antimicrobial metabolites production by the fungus Aspergillus parasiticus

机译:寄生曲霉菌对抗生素代谢产物的调节

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摘要

Biosynthesis of active secondary metabolites by fungi occurs as a specific response to the different growing environments. Changes in this environment alter the chemical and biological profiles leading to metabolites diversification and consequently to novel pharmacological applications. In this work, it was studied the influence of three parameters (fermentation length, medium composition and aeration) in the biosyntheses of antimicrobial metabolites by the fungus Aspergillus parasiticus in 10 distinct fermentation periods. Metabolism modulation in two culturing media, CYA and YES was evaluated by a 22 full factorial planning (ANOVA) and on a 23 factorial planning, role of aeration, medium composition and carbohydrate concentration were also evaluated. In overall, 120 different extracts were prepared, their HPLC profiles were obtained and the antimicrobial activity against A. flavus, C. albicans, E. coli and S. aureus of all extracts was evaluated by microdilution bioassay. Yield of kojic acid, a fine chemical produced by the fungus A. parasiticus was determined in all extracts. Statistical analyses pointed thirteen conditions able to modulate the production of bioactive metabolites by A. parasiticus. Effect of carbon source in metabolites diversification was significant as shown by the changes in the HPLC profiles of the extracts. Most of the extracts presented inhibition rates higher than that of kojic acid as for the extract obtained after 6 days of fermentation in YES medium under stirring. Kojic acid was not the only metabolite responsible for the activity since some highly active extracts showed to possess low amounts of this compound, as determined by HPLC.
机译:真菌对活性次生代谢产物的生物合成是对不同生长环境的特异性反应。在这种环境中的变化会改变化学和生物学特性,从而导致代谢物多样化,从而产生新的药理应用。在这项工作中,研究了三个参数(发酵长度,培养基组成和通气量)在十个不同的发酵时期对寄生曲霉真菌在微生物代谢产物生物合成中的影响。通过2 2 全因子规划(ANOVA)和2 3 因子规划对两种培养培养基CYA和YES的代谢调节进行了评估,通气作用,培养基组成还评估了碳水化合物的含量。总体上,制备了120种不同的提取物,获得了它们的HPLC图谱,并通过微量稀释生物测定法评估了所有提取物对黄曲霉,白色念珠菌,大肠杆菌和金黄色葡萄球菌的抗菌活性。在所有提取物中都测定了曲霉酸的产量,曲霉酸是一种由寄生曲霉真菌产生的精细化学品。统计分析指出了十三种条件能够调节拟寄生曲霉产生生物活性代谢物。碳源对代谢物多样化的影响非常明显,如提取物的HPLC谱图变化所表明。与在搅拌下在YES培养基中发酵6天后获得的提取物相比,大多数提取物表现出比曲酸更高的抑制率。曲酸不是负责该活性的唯一代谢物,因为通过HPLC测定,一些高活性提取物显示出具有该化合物的少量。

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