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Optimization of Medium Composition for Improving Biomass Production of Lactobacillus plantarum Pi06 Using the Taguchi Array Design and the Box-Behnken Method
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  • Optimization of Medium Composition for Improving Biomass Production of Lactobacillus plantarum Pi06 Using the Taguchi Array Design and the Box-Behnken Method
  • Optimization of Medium Composition for Improving Biomass Production of Lactobacillus plantarum Pi06 Using the Taguchi Array Design and the Box-Behnken Method
저자명
Hwang. Chin-Fa,Chang. Jen-Han,Houng. Jer-Yiing,Tsai. Cheng-Chih,Lin. Chien-Ku,Tsen. Hau-Yang
간행물명
Biotechnology and bioprocess engineering
권/호정보
2012년|17권 4호|pp.827-834 (8 pages)
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한국생물공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

An immune-enhancing strain, Lactobacillus plantarum Pi06, isolated from a healthy infant was used for biomass production following optimization of the medium in shake-flask culture. Preliminary studies showed that commercial MRS medium and cultivation under static conditions generated higher biomass production than four other tested media with or without a shaking condition. The selected medium composition, consisting of glucose, yeast extract, soy peptone, ammonium citrate, and corn steep liquor, was further optimized using a systematic method that integrated the Taguchi array design and the Box-Behnken method. The response effects of these factors were first investigated using Taguchi design under an $L_{16}$ ($4^5$) array. The suggested medium composition, derived from Statistica 7.1 using the Taguchi design, was applied to cultivate cells and a biomass of 7.16 g dry cell weight (DCW)/L was obtained. Response surface methodology based on the Box-Behnken method for the three response variables of glucose, yeast extract, and corn steep liquor was then used to further increase the biomass level to 8.94 g DCW/L. The resulting optimum medium consisted of 35 g/L glucose, 35 g/L yeast extract, and 40 mL/L corn steep liquor. Compared with the initial medium, the biomass yield was improved from 4.31 to 8.94 g DCW/L, an enhancement of approximately 107%.