期刊文献+

季也蒙毕赤酵母DQ11发酵酒糟水解液生产木糖醇条件的优化 被引量:3

Optimization of condition for production of xylitol with wine lees hydrolysate by fermentation of Pichia guilliermondii DQ11
原文传递
导出
摘要 目的优化季也蒙毕赤酵母DQ11发酵酒糟水解液生产木糖醇的条件。方法通过单因素试验和正交试验,优化季也蒙毕赤酵母DQ11发酵酒糟水解液生产木糖醇的发酵温度、初始pH值、转速和接种量,通过高效液相色谱法测定发酵液中木糖醇的含量;采用最佳发酵条件发酵生产木糖醇,检测木糖醇含量。结果摇瓶发酵酒糟水解液生产木糖醇的最佳条件为:发酵温度28℃,起始pH值5.0,接种量5%(v/v),摇床转速180 r/min;以最佳条件发酵酒糟水解液生产木糖醇的含量为9.016 g/L。结论优化了季也蒙毕赤酵母DQ11发酵酒糟水解液生产木糖醇的条件,为以酒糟生产木糖醇的可能性提供了实验依据。 Objective To optimize the condition for production of xylitol with wine lees hydrolysate by fermentation of Pichia guilliermondii DQ11. Methods The temperature, initial pH value, rotate speed and inoculum size for production of xylitol with wine lees hydrolysate by fermentation of P. guilliermondii DQ11 were optimized by single factor test and orthogonal test. The xylitol content in fermentation liquid was determined by HPLC. Xylitol was produced under the optimized condition, of which the yield was determined. Results The optimal temperature, initial pH value, inoculum size and rotate speed for production of xylitol with wine lees hydrolysate by fermentation in shake flask were 28 ℃, 5. 0, 5% (v/v) and 180 r/min respectively. The yield of xylitol produced under the optimal condition was 9. 016 g/L. Conclusion The condition for production of xylitol with wine lees hydrolysate by fermentation of P. guilliermondii DQll was optimized, which provided an experimental basis for possibility of production of xylitol with wine lees hydrolysate.
出处 《中国生物制品学杂志》 CAS CSCD 2013年第3期406-410,共5页 Chinese Journal of Biologicals
基金 黑龙江省垦区科研项目(HNK11A-10-03)
关键词 酒糟水解液 季也蒙毕赤酵母DQ11 木糖醇 发酵 Wine lees hydrolysate Pichia guilliermondii DQ11 Xylitol Fermentation
  • 相关文献

参考文献5

二级参考文献54

  • 1黄炜,方祥年,夏黎明.固定化细胞在三相流化床中发酵生产木糖醇[J].浙江大学学报(工学版),2004,38(10):1366-1370. 被引量:9
  • 2方祥年,黄炜,夏黎明.半纤维素水解液中抑制物对发酵生产木糖醇的影响[J].浙江大学学报(工学版),2005,39(4):547-551. 被引量:24
  • 3李敏,马涛,生举正,郭亭,鲍晓明.稳定高效表达木糖还原酶基因工业酿酒酵母的构建及木糖醇发酵的初步研究[J].食品与发酵工业,2006,32(1):1-5. 被引量:13
  • 4张晓元,王松梅,朱希强,郭学平,凌沛学.热带假丝酵母发酵法生产木糖醇的研究[J].食品与药品,2006,8(11A):27-30. 被引量:16
  • 5LEE YE,CHOI YH,JEONG SH,et al.Morphological changes in streptococcus mutans after chewing gum containing xylitol for twelve months[M].Current Microbiology,2009,58(4):332-337.
  • 6CHENG KK,ZHANG JA,CHAVEZ E,et al.Integrated production of xylitol and ethanol using corncob[J].Applied Microbiology and Biotechnology,2010,87(2):411-417.
  • 7KIM JH,RYU YW,SEO JH.Analysis and optimization of a twosubstrate fermentation for xylitol production using Candida tropicalis[J].Journal of Industrial Microbiology & Biotechnology,1999,22(3):181-186.
  • 8CHENG KK,ZHANG JA,LING HZ,et al.Optimization of pH and acetic acid concentration for bioconversion of hemicellulose from comcobs to xylitol by Candida tropicalis[J].Biochem Eng J,2009,43(2):203-207.
  • 9L(O)PEZ F,DELGADO OD,MARTINEZ MA,et al.Characterization of a new xylitol-producer Candida tropicalis strain[J].Antonie Van Leeuwenhoek,20X04,85(4):281-286.
  • 10DOMINGUEZ JM,CAO NJ,GONG CS,et al.Dilute acid hemicellulose hydrolysates from corncobs for xylitol production by yeast[J].Bioresource Technology,1997,61 (1):85-90.

共引文献24

同被引文献39

  • 1王明兹,施巧琴,周晓兰,吴松刚.提高酵母菌原生质体制备与再生的方法研究[J].微生物学杂志,2005,25(3):10-13. 被引量:31
  • 2李敏,马涛,生举正,郭亭,鲍晓明.稳定高效表达木糖还原酶基因工业酿酒酵母的构建及木糖醇发酵的初步研究[J].食品与发酵工业,2006,32(1):1-5. 被引量:13
  • 3蒋宏,潘帅路,张良,张宿义,胡承.白酒丢糟制备活性炭的初步研究[J].食品与发酵工业,2006,32(6):77-80. 被引量:7
  • 4Cheng KK, Wu J, Lin ZN, et al. Aerobic and sequential anaerobic fermentation to produce xylitol and ethanol using non- detoxified acid pretreated corncob [J]. Biotechnol Biofuels, 2014, 7 ( 1 ) : 166-174.
  • 5Perez-Bibbins B, Torrado-Agrasar A, Salgado JM, et al. Xylitol production in immobilized cultures: a recent review [J]. Crit Rev Biotechnol, 2015, 10 (2): 1-14.
  • 6Cheng H, Lv J, Wang H, et a!. Genetically engineered Pichia postoris yeast for conversion of glucose to xylitol by a single- fermentation process [J]. Appl Microbiol Biotechnol, 2014, 98 (8): 3539-3552.
  • 7Rodrigues RC, Kenealy WR, Jeffries TW. Xylitol production from DEO hydrolysate of corm stover by Pichia stipitis YS-30 [J ]. J Ind Microbiol Biotechnol, 2011, 38 (10) : 1649-1655.
  • 8Li Y, Park JY, Shiroma R, et all. Improved ethanol and reduced xylitol production from glucose and xylose mixtures by the mutant strain of Candida shehatae ATCC 22984 [J]. Appl Biochem Biotechnol, 2012, 166 (7): 1781-1790.
  • 9Hirabayashi S, Wang J, Kawagishi H, eta!. Improving xylitol production through recombinant expression of xylose reductase in the white-rot fungus Phanerochaete sordida YK-624 [J]. J Biosci Bioeng, 2015, 120 (1) : 6-8.
  • 10Zhang J, Zhang B, Wang D, et al. Improving xylitol production at elevated temperature with engineered Kluyveromyces marxianus through over-expressing transporters [J]. Bioresour Technol, 2014, 175C: 642-645.

引证文献3

二级引证文献20

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部