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首页> 外文期刊>Journal of Food Science and Technology >Optimization studies for enhanced bacteriocin production by Pediococcus pentosaceus KC692718 using response surface methodology
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Optimization studies for enhanced bacteriocin production by Pediococcus pentosaceus KC692718 using response surface methodology

机译:响应面分析法优化戊糖小球菌KC692718增强细菌素生产的研究

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Bacteriocins have been produced by various Lactic acid bacteria (LAB) strains isolated from dairy and fermented vegetable sources. In the current study we have isolated a novel bacteriocin producing strain Pediococcus pentosaceus KC692718 from mixed vegetable pickles (India). A 2 step process optimization for enhancing production of bacteriocin from the isolates was carried out with One-factor-at-a-time (OFAT) and Response Surface Methodology (RSM) methods. A 2.5 fold (AU/mL) increase of bacteriocin was observed for sucrose (2.4 %) as carbon source and 4.7 fold (AU/mL) increased bacteriocin was observed in the presence of soyatone (1.03 %) as nitrogen source in the OFAT experiments. In order to increase bacteriocin production RSM tool was performed with optimized chemical and physical sources using Design expert 8.0.7.1. Soyatone (1.03 %), sucrose (2.4 %), pH (5.5) and temperature (34.5 degrees C) condition yielded 25,600.34 AU/mL of bacteriocin from P. pentosaceus KC692718. This is the first report which has produced 20 fold increase of bacteriocin for Pediococcus pentosaceus KC692718 from that of MRS medium with 1280 AU/mL
机译:细菌素是由从乳制品和发酵植物来源分离出的各种乳酸菌(LAB)菌株产生的。在当前的研究中,我们从混合蔬菜泡菜(印度)中分离出了一种新的产生细菌素的菌株戊糖片球菌KC692718。使用一次一因素(OFAT)和响应表面方法(RSM)方法进行了两步工艺优化,以提高从分离物中产生细菌素的能力。在OFAT实验中,以蔗糖(2.4%)为碳源观察到细菌素增加了2.5倍(AU / mL),在以大豆为氮源(1.03%)的情况下观察到细菌素增加了4.7倍(AU / mL)。 。为了增加细菌素的生产,使用Design Expert 8.0.7.1使用优化的化学和物理来源进行RSM工具。大豆(1.03%),蔗糖(2.4%),pH(5.5)和温度(34.5摄氏度)条件产生了25600.34 AU / mL的来自戊糖假单胞菌KC692718的细菌素。这是第一个报道,使戊糖小球菌KC692718的细菌素比MRS培养基的1280 AU / mL增加了20倍

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