天然产物研究与开发 ›› 2015, Vol. 27 ›› Issue (9): 1576-1581.doi: 10.16333/j.1001-6880.2015.09.012

• 研究简报 • 上一篇    下一篇

响应面法优化忽地笑多糖提取工艺及石蒜属植物多糖含量比较研究

刘小攀,田春莲*,姚姝凤,董爱文,田启建   

  1. 吉首大学林产化工工程湖南省重点实验室,张家界 427000
  • 出版日期:2015-09-25 发布日期:2015-09-28

Optimization of Extraction of Polysaccharide from Lycoris aurea by Response Surface Methodology and Comparison of Polysaccharide Content in genus Lycoris

LIU Xiao-pan, TIAN Chun-lian*, YAO Shu-feng, DONG Ai-wen, TIAN Qi-jian   

  1. Key Laboratory of Forest Products and Chemical Industry Engineering,Jishou University,Zhangjiajie 427000,China
  • Online:2015-09-25 Published:2015-09-28

摘要: 利用响应面法优化忽地笑多糖的水提工艺。在单因素实验的基础上,以提取温度、提取时间、液料比为变量,以忽地笑中多糖得率为响应值,应用Box-Benhnken中心组合实验建立多糖提取率的二次多项式回归方程,得出最佳提取工艺为:提取温度70 ℃、提取时间7.7 h、液料比23:1(mL:g),此条件下忽地笑多糖得率为42.00%。采取优化的提取工艺提取忽地笑、中国石蒜、稻草石蒜、玫瑰石蒜和石蒜中根、鳞茎和叶部位的多糖,并测定、比较其含量,实验结果显示,不同石蒜属植物中鳞茎部位多糖含量显著高于根与叶,其中石蒜鳞茎中多糖含量最高,达49.21%。

关键词: 忽地笑, 多糖提取, 响应面法, 不同部位

Abstract: The extraction of polysaccharide from the bulb of Lycoris aurea was investigated by response surface methodology.After optimized by single factor test,the extraction temperature,extraction duration and liquid/solid ratio were selected as the impact factor and the yield of polysaccharide was set as response value.The regression equation for extraction yield of polysaccharide was established through Box-Benhnken central-united experiment design.The optimal extraction condition for polysaccharide was determined as follows:extraction temperature of 70 ℃,extraction duration of 7.7 h,liquid/solid ratio of 23:1 (mL:g).Under the optimized extraction conditions,the yield of polysaccharides was 42%.In addition,the content of polysaccharide in bulb,stem and leaf of different species in genus Lycoris was further investigated.The results showed that the content of polysaccharide in bulbs was significantly higher than that in stem and leaf.The highest content of polysaccharides was detected in the bulb of L.radiata, which was up to 49.21%.

Key words: Lycoris aurea, polysaccharides extraction, response surface methodology, different active part

中图分类号: 

R284.2