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首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >STATISTICAL OPTIMIZATION OF AQUEOUS LEAF EXTRACT OF AERVA LANATA FOR CITRININ AND FUNGAL BIOMASS REDUCTION IN SUBMERGED FERMENTATION BY ASPERGILLUS NIGER USING RESPONSE SURFACE METHODOLOGY
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STATISTICAL OPTIMIZATION OF AQUEOUS LEAF EXTRACT OF AERVA LANATA FOR CITRININ AND FUNGAL BIOMASS REDUCTION IN SUBMERGED FERMENTATION BY ASPERGILLUS NIGER USING RESPONSE SURFACE METHODOLOGY

机译:响应面法对黄曲霉深层发酵中柠檬绿素和真菌生物量的减少对黄芪水提取物的统计优化

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Citrinin, a nephrotoxic mycotoxin produced by several fungal strains belonging to the genera Penicillium, Aspergillus, and Monascus. Generally found in stored grains and after their harvest. The objective of the present investigation was to study the antimicrobial activity (anti-fungal) of aqueous leaf extract of Aerva lanata and to optimize its conditions for the maximum inhibition of citrinin and fungal biomass by Aspergillus niger. Optimization of culture conditions was carried out using Box-Behnken method of response surface methodology. Extent of inhibition of citrinin was carried out using HPLC and reduction in fungal biomass was carried out using dry cell weight after comparing with controls. Optimized culture conditions as per the point prediction tool were found to be 11.27 mg/L for concentration of Aerva lanata extract, nine and half days of incubation period and temperature of 25.5 °C resulted in maximum inhibition of citrinin. These optimized values of tested parameters were and compared with control citrinin production (243.28 mg/L) and dry cell weight production (362.28mg).An average of 87.77±1.21% inhibition of citrinin and 80.02±1.42% of dry cell weight was obtained in an optimized medium at 9.5th d of fermentation with 97.82 % and 96.21% validity, respectively.
机译:Citrinin,一种肾毒性真菌毒素,由青霉菌,曲霉和红曲霉属的几种真菌菌株产生。通常存在于谷物和收获后的谷物中。本研究的目的是研究黑曲霉(Aerva lanata)的含水叶提取物的抗微生物活性(抗真菌),并优化其条件,以最大程度地抑制黑曲霉对胞苷和真菌生物量的抑制。培养条件的优化使用响应面方法的Box-Behnken方法进行。在与对照相比之后,使用HPLC进行对柠檬绿素的抑制程度,并且使用干细胞重量进行对真菌生物量的减少。根据点预测工具的优化培养条件,发现Aerva lanata提取物的浓度为11.27 mg / L,潜伏期为九天半,温度为25.5°C,可最大程度地抑制citrinin。将这些优化的测试参数值与对照柠檬霉素产生量(243.28 mg / L)和干细胞产生量(362.28mg)进行比较。得到的平均抑制量为87.77±1.21%和30.02±1.42%在优化的培养基中发酵9.5天时,分别具有97.82%和96.21%的有效性。

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