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Studies on optimization of nitrogen sources for astaxanthin production by Phaffia rhodozyma 被引量:8

Studies on optimization of nitrogen sources for astaxanthin production by Phaffia rhodozyma
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摘要 Fermentation of Phaffia rhodozyma is a major method for producing astaxanthin, an important pigment with industrial and pharmaceutical application. To improve astaxanthin productivity, single factor and mixture design experiments were used to investigate the effects of nitrogen source on Phaffia rhodozyma cultivation and astaxanthin production. Results of single factor experiments showed nitrogen source could significantly affect P. rhodozyma cultivation with respect to carbon source utilization, yeast growth and astaxanthin accumulation. Further studies of mixture design experiments using (NH4)2SO4, KNO3 and beef extract as nitrogen sources indicated that the proportion of three nitrogen sources was very important to astaxanthin production. Validation experiments showed that the optimal nitrogen source was composed of 0.28 g/L (NH4)2SO4, 0.49 g/L KNO3 and 1.19 g/L beef extract. The kinetic characteristics of batch cultivation were investigated in a 5-L pH-stat fermentor. The maximum amount of biomass and highest astaxanthin yield in terms of volume and in terms of biomass were 7.71 mg/L and 1.00 mg/g, respectively. Fermentation ofPhaffia rhodozyma is a major method for producing astaxanthin, an important pigment with industrial and pharmaceutical application. To improve astaxanthin productivity, single factor and mixture design experiments were used to investigate the effects of nitrogen source on Phaffia rhodozyma cultivation and astaxanthin production. Results of single factor experiments showed nitrogen source could significantly affect P. rhodozyma cultivation with respect to carbon source utilization, yeast growth and astaxanthin accumulation. Further studies of mixture design experiments using (NH4)2SO4, KNO3 and beef extract as nitrogen sources indicated that the proportion of three nitrogen sources was very important to astaxanthin production. Validation experiments showed that the optimal nitrogen source was composed of 0.28 g/L (NH4)2SO4, 0.49 g/L KNO3 and 1.19 g/L beef extract. The kinetic characteristics of batch cultivation were investigated in a 5-L pH-stat fermentor. The maximum amount of biomass and highest astaxanthin yield in terms of volume and in terms of biomass were 7.71 mg/L and 1.00 mg/g, respectively.
出处 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2007年第5期365-370,共6页 浙江大学学报(英文版)B辑(生物医学与生物技术)
基金 Project supported by the National Natural Science Foundation of China (No.30571450) the Foundation for Young Professors of Jimei University of Xiamen,China
关键词 Phaffia rhodozyma ASTAXANTHIN Nitrogen source OPTIMIZATION 红发夫酵母 虾青素合成 氮源 优化
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参考文献4

  • 1Zhong-Ce Hu,Yu-Guo Zheng,Zhao Wang,Yin-Chu Shen.Effect of sugar-feeding strategies on astaxanthin production by Xanthophyllomyces dendrorhous[J].World Journal of Microbiology and Biotechnology.2005(5)
  • 2Eric A. Johnson.Phaffia rhodozyma: colorful odyssey[J].International Microbiology.2003(3)
  • 3Endang Kusdiyantini,Philippe Gaudin,Gérard Goma,Philippe J. Blanc.Growth kinetics and astaxanthin production of Phaffia rhodozyma on glycerol as a carbon source during batch fermentation[J].Biotechnology Letters.1998(10)
  • 4J. James Sedmak,Deepthi K. Weerasinghe,Setsuko O. Jolly.Extraction and quantitation of astaxanthin from Phaffia rhodozyma[J].Biotechnology Techniques.1990(2)

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