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›› 2012, Vol. 12 ›› Issue (6): 0-0.

• 生化工程专栏 •    下一篇

Identification of Anamorph Yeast of Tremella aurantialba and Optimization of Medium Composition for Production of Exopolysaccharides

刘春卉 杨秀伟 俞建国 马维新 瞿伟菁 包艳洁 武文斌 庄秀园   

  1. 北京 海淀区知春路4号中国标准化研究院国家标准馆 北京大学天然药物及仿生药物国家重点实验室,北京大学药学院天然药物学系 江苏同源堂生物工程有限公司 江苏同源堂生物工程有限公司 华东师范大学生命科学学院 华东师范大学生命科学学院 华东师范大学生命科学学院 华东师范大学生命科学学院
  • 收稿日期:2010-02-26 修回日期:2012-10-12 出版日期:2012-12-20 发布日期:2012-12-20
  • 通讯作者: 刘春卉

Identification of Anamorph Yeast of Tremella aurantialba and Optimization of Medium Composition for Production of Exopolysaccharides

LIU Chun-hui YANG Xiu-wei YU Jian-guo MA Wei-xin QU Wei-jing BAO Yan-jie WU Wen-bin ZHUANG Xiu-yuan   

  1. Department of Natural Medicines, State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences,Peking University Department of Natural Medicines, State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences,Peking University Jiangsu Tongyuantang Bio-engineering Co.,Ltd. Jiangsu Tongyuantang Bio-engineering Co.,Ltd. School of Life Science, East China Normal University School of Life Science, East China Normal University School of Life Science, East China Normal University School of Life Science, East China Normal University
  • Received:2010-02-26 Revised:2012-10-12 Online:2012-12-20 Published:2012-12-20
  • Contact: LIU Chun-hui

摘要: A yeast-like fungus strain B1 isolated from wild fungus Tremella aurantialba was identified and initially characterized. Two phylogenetic trees were generated based on the sequences of large subunit ribosomal RNA gene D1/D2 regions and internal transcribed spacer (ITS) regions of related fungi, respectively. The analysis of D1/D2 regions and ITS sequences showed that fungus B1 was clustered together with T. aurantialba, T. aurantia and T. microspore in the phylogenetic trees. Both the morphological characteristic and phylogenetic analysis established that fungus B1 was one of the anamorph strains of T. aurantialba and belongs to Tremella genus. A fermentation medium for exopolysaccharides (EPS) production by T. aurantialba B1. Plackett-Burmen design was used to evaluate the effects of different components in the culture medium. Glucose and yeast extract have significant influence on the EPS production. The concentrations of two factors were optimized subsequently using central composite design and response surface analysis. The results showed that 49.2 g/L glucose and 10.4 g/L yeast extract could lead to the maximum production of EPS (4.99 g/L). The optimized medium led to a 1.5-fold enhancement of the production of EPS by T. aurantialba B1, as compared with that without optimization.

关键词: Tremella aurantialba, anamorph yeast, large subunit ribosomal RNA gene, internal transcribed spacer, exopolysaccharides, central composite design

Abstract: A yeast-like fungus strain B1 isolated from wild fungus Tremella aurantialba was identified and initially characterized. Two phylogenetic trees were generated based on the sequences of large subunit ribosomal RNA gene D1/D2 regions and internal transcribed spacer (ITS) regions of related fungi, respectively. The analysis of D1/D2 regions and ITS sequences showed that fungus B1 was clustered together with T. aurantialba, T. aurantia and T. microspore in the phylogenetic trees. Both the morphological characteristic and phylogenetic analysis established that fungus B1 was one of the anamorph strains of T. aurantialba and belongs to Tremella genus. A fermentation medium for exopolysaccharides (EPS) production by T. aurantialba B1. Plackett-Burmen design was used to evaluate the effects of different components in the culture medium. Glucose and yeast extract have significant influence on the EPS production. The concentrations of two factors were optimized subsequently using central composite design and response surface analysis. The results showed that 49.2 g/L glucose and 10.4 g/L yeast extract could lead to the maximum production of EPS (4.99 g/L). The optimized medium led to a 1.5-fold enhancement of the production of EPS by T. aurantialba B1, as compared with that without optimization.

Key words: Tremella aurantialba, anamorph yeast, large subunit ribosomal RNA gene, internal transcribed spacer, exopolysaccharides, central composite design

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