首页> 外文期刊>Acta biochimica Polonica >Optimization of culture conditions for flexirubin production by Chryseobacterium artocarpi CECT 8497 using response surface methodology
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Optimization of culture conditions for flexirubin production by Chryseobacterium artocarpi CECT 8497 using response surface methodology

机译:响应面分析法优化面包果小球藻CECT 8497生产柔红素的培养条件

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摘要

Flexirubins are the unique type of bacterial pigments produced by the bacteria from the genus Chryseobacterium , which are used in the treatment of chronic skin disease, eczema etc. and may serve as a chemotaxonomic marker. Chryseobacterium artocarpi CECT 8497, an yellowish-orange pigment producing strain was investigated for maximum production of pigment by optimizing medium composition employing response surface methodology (RSM). Culture conditions affecting pigment production were optimized statistically in shake flask experiments. Lactose, l-tryptophan and KH2PO4 were the most significant variables affecting pigment production. Box Behnken design (BBD) and RSM analysis were adopted to investigate the interactions between variables and determine the optimal values for maximum pigment production. Evaluation of the experimental results signified that the optimum conditions for maximum production of pigment (521.64 mg/L) in 50 L bioreactor were lactose 11.25 g/L, l-tryptophan 6 g/L and KH2PO4 650 ppm. Production under optimized conditions increased to 7.23 fold comparing to its production prior to optimization. Results of this study showed that statistical optimization of medium composition and their interaction effects enable short listing of the significant factors influencing maximum pigment production from Chryseobacterium artocarpi CECT 8497. In addition, this is the first report optimizing the process parameters for flexirubin type pigment production from Chryseobacterium artocarpi CECT 8497.
机译:柔红素是由金细菌属细菌产生的细菌色素的独特类型,可用于治疗慢性皮肤病,湿疹等,并可作为化学分类标记。通过使用响应面方法(RSM)优化培养基组成,研究了桔皮色素生成菌株CECT 8497(一种淡橙色的色素产生菌株)可最大程度地产生色素。在摇瓶实验中统计优化影响色素生成的培养条件。乳糖,L-色氨酸和KH 2 PO 4 是影响色素生成的最重要变量。采用Box Behnken设计(BBD)和RSM分析来研究变量之间的相互作用,并确定最大颜料产量的最佳值。对实验结果的评估表明,在50 L生物反应器中最大产量色素(521.64 mg / L)的最佳条件是乳糖11.25 g / L,l-色氨酸6 g / L和KH 2 PO 4 650 ppm。与优化之前的产量相比,优化条件下的产量提高了7.23倍。这项研究的结果表明,对培养基成分及其相互作用影响的统计优化可以简短地列出影响面包果Chryseobacterium artocarpi CECT 8497色素最大产量的重要因素。此外,这是第一份针对柔红素型色素生产工艺参数进行优化的报道。面包果弯曲杆菌CECT 8497。

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