Optimization of bioconversion process for trehalose production from enzymatic hydrolysis of kudzu root starch using a visualization method

被引:0
|
作者
Yang X. [1 ]
Zhu L. [3 ]
Jiang L. [2 ]
Xu Q. [1 ]
Xu X. [1 ]
Huang H. [1 ]
机构
[1] College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, No. 30 Puzhunan Road, Nanjing
[2] College of Food Science and Light Industry, Nanjing Tech University, No. 30 Puzhunan Road, Nanjing
[3] College of Sciences, Nanjing Tech University, No. 30 Puzhunan Road, Nanjing
关键词
Conversion rate; Enzymatic hydrolysis; Kudzu root starch; Trehalose; Visualization method;
D O I
10.1186/s40643-015-0065-5
中图分类号
学科分类号
摘要
Background: Trehalose has many advantages due to its inertness and the ability to stabilize biomolecules. Trehalose synthase can catalyze intramolecular rearrangement of the inexpensive maltose into trehalose in a single step, which represents a simple, fast, and low-cost method for the future industrial production of trehalose. Results: In this work, an intelligent visualization method for producing trehalose via trehalose synthase was for the first time established and optimized by corresponding enzymatic hydrolysis with kudzu root starch as the initial raw material. For the first step, kudzu root starch was liquefied by α-amylase at a certain dextrose equivalent value of 19–21, and β-amylase and pullulanase to saccharify for a certain time, a four-factor nine-level experimental design with nine experiments was performed according to the uniform design table U*9(94) to optimize the yield of maltose. Then, optimization of trehalose conversion ratio from kudzu root starch hydrolysate was carried out with a four-factor 12-level experimental design to forecast the optimal process conditions. By comparing verification tests and predicted results, the optimized operating conditions were pH 7.1, 22 °C, 32.5 % (14,000 U/ml) loading amounts of TreS enzyme and after 24 h, along with a 70.6 % trehalose conversion rate. Conclusions: The intelligent visualization method has succeeded in exploiting the conversion process of trehalose from kudzu root starch hydrolysate, which contributes significant benefits to the further commercial production of trehalose. © 2015 Yang et al.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Response surface optimization of enzymatic hydrolysis of maize starch for higher glucose production
    Kunamneni, A
    Singh, S
    BIOCHEMICAL ENGINEERING JOURNAL, 2005, 27 (02) : 179 - 190
  • [2] Bioconversion of pretreated sugarcane bagasse using enzymatic and acid followed by enzymatic hydrolysis approaches for bioethanol production
    Patel, Harshvadan
    Chapla, Digantkumar
    Shah, Amita
    RENEWABLE ENERGY, 2017, 109 : 323 - 331
  • [3] Optimal bioconversion for compound K production from red ginseng root (CA Mayer) by sequential enzymatic hydrolysis and its characteristics
    Park, Yeong-Ju
    Hwang, Unsik
    Park, Suyeon
    Sim, Sol
    Jeong, Soyeon
    Park, Misun
    Kang, Minji
    Lee, Youngsoo
    Song, Youngju
    Park, Hoon
    Suh, Hee-Jae
    APPLIED BIOLOGICAL CHEMISTRY, 2021, 64 (01)
  • [4] Comparison of Production Glucose from Starch and Cellulose Using Delignification and Hydrolysis Process
    Ketut, Sari Ni
    Pudjiastuti, C.
    Sumada, Ketut
    ADVANCED SCIENCE LETTERS, 2017, 23 (12) : 12318 - 12321
  • [5] Optimization of Bioethanol Production Using an Enzymatic Hydrolysis Process with Green Algae ( Chaetomorpha ) as the Raw Material
    Maimun, Teuku
    Lubis, Mirna Rahmah
    Zein, Muhammad Aldi
    Ali, Wahed Febbry Andriansyah
    MAKARA JOURNAL OF TECHNOLOGY, 2024, 28 (02):
  • [6] Two-Stage Enzymatic Hydrolysis for Fermentable Sugars Production from Damaged Wheat Grain Starch with Sequential Process Optimization and Reaction Kinetics
    Sirohi, Ranjna
    Pandey, Jai Prakash
    Goel, Reeta
    Singh, Anupama
    Lohani, Umesh C.
    Kumar, Anil
    STARCH-STARKE, 2021, 73 (1-2):
  • [7] Two-Stage Enzymatic Hydrolysis for Fermentable Sugars Production from Damaged Wheat Grain Starch with Sequential Process Optimization and Reaction Kinetics
    Sirohi, Ranjna
    Pandey, Jai Prakash
    Goel, Reeta
    Singh, Anupama
    Lohani, Umesh C.
    Kumar, Anil
    Starch/Staerke, 2021, 73 (1-2):
  • [8] Optimal bioconversion for compound K production from red ginseng root (C.A. Mayer) by sequential enzymatic hydrolysis and its characteristics
    Yeong-Ju Park
    Unsik Hwang
    Suyeon Park
    Sol Sim
    Soyeon Jeong
    Misun Park
    Minji Kang
    Youngsoo Lee
    Youngju Song
    Hoon Park
    Hee-Jae Suh
    Applied Biological Chemistry, 2021, 64
  • [9] Bioethanol Production from Chlorella Pyrenoidosa by Using Enzymatic Hydrolysis and Fermentation Method
    Yerizam, Muhammad
    Jannah, Asyeni Miftahul
    Aprianti, Nabila
    JOURNAL OF ECOLOGICAL ENGINEERING, 2023, 24 (01): : 34 - 40
  • [10] Optimization and Analysis of Bioethanol Production from Cassava Starch Hydrolysis
    Liew, E. W. T.
    PERTANIKA JOURNAL OF SCIENCE AND TECHNOLOGY, 2014, 22 (02): : 637 - 644