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Screening and identification of Monacusstrain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)

Authors :
Jia, Rui-Bo
Guo, Wei-Ling
Zhou, Wen-Bin
Jiang, Ya-Jun
Zhu, Feng-Feng
Chen, Jing-Hao
Li, Yan
Liu, Bin
Chen, Shao-Jun
Chen, Ji-Cheng
Ni, Li
Rao, Ping-Fan
Lv, Xu-Cong
Source :
Biotechnology & Biotechnological Equipment; July 2017, Vol. 31 Issue: 4 p828-838, 11p
Publication Year :
2017

Abstract

ABSTRACTTeramethylpyrazine (TMP) is a pyrazine alkaloid with a variety of pharmacological effects and widely used in clinical practice. In this study, Monascusstrain M-3 with high TMP and low citrinin productions was screened from red yeast rice collected from different areas of Fujian province in China. Monascusstrain M-3 was further identified through molecular biological methods based on the sequencing of different gene regions. Results showed that primer set of β-tubulin-F/β-tubulin-R targeting the β-tubulin gene was more suitable for the identification of Monascusstrain M-3. Based on comparative analysis of the results obtained by different primer sets, Monacusstrain M-3 was finally identified as Monascus purpureus. Then, the composition of culture medium and liquid state fermentation conditions of Monacusstrain M-3 were optimized by single-factor experiment and central composite design of response surface methodology, with the purpose of optimizing the TMP productions. The optimum composition of culture medium and liquid state fermentation conditions are as follows: starch 5.1%, peptone 3.51%, Mg2SO40.1%, NaNO30.2%, KH2PO40.25%, fermentation temperature of 28.23 °C, fermentation time of 9 d, shaker speed of 180 r/min, inoculum size of 7.21% and loading volume of 100 mL/250 mL triangular flask. Under the optimum composition of culture medium and liquid state fermentation conditions, the TMP production of Monacusstrain M-3 can reach 13.49 µg/mL. This study is expected to provide a new approach of TMP production through biosynthesis by Monascusstrain, and promote the further development of functional foods or medicines from Monascusfermentation products.

Details

Language :
English
ISSN :
13102818 and 13143530
Volume :
31
Issue :
4
Database :
Supplemental Index
Journal :
Biotechnology & Biotechnological Equipment
Publication Type :
Periodical
Accession number :
ejs42589493
Full Text :
https://doi.org/10.1080/13102818.2017.1335176