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

Teramethylpyrazine (TMP) is a pyrazine alkaloid with a variety of pharmacological effects and widely used in clinical practice. In this study, Monascus strain M-3 with high TMP and low citrinin productions was screened from red yeast rice collected from different areas of Fujian province in China. M...

Full description

Bibliographic Details
Main Authors: Rui-Bo Jia, Wei-Ling Guo, Wen-Bin Zhou, Ya-Jun Jiang, Feng-Feng Zhu, Jing-Hao Chen, Yan Li, Bin Liu, Shao-Jun Chen, Ji-Cheng Chen, Li Ni, Ping-Fan Rao, Xu-Cong Lv
Format: Article
Language:English
Published: Taylor & Francis Group 2017-07-01
Series:Biotechnology & Biotechnological Equipment
Subjects:
Online Access:http://dx.doi.org/10.1080/13102818.2017.1335176
_version_ 1819032038999588864
author Rui-Bo Jia
Wei-Ling Guo
Wen-Bin Zhou
Ya-Jun Jiang
Feng-Feng Zhu
Jing-Hao Chen
Yan Li
Bin Liu
Shao-Jun Chen
Ji-Cheng Chen
Li Ni
Ping-Fan Rao
Xu-Cong Lv
author_facet Rui-Bo Jia
Wei-Ling Guo
Wen-Bin Zhou
Ya-Jun Jiang
Feng-Feng Zhu
Jing-Hao Chen
Yan Li
Bin Liu
Shao-Jun Chen
Ji-Cheng Chen
Li Ni
Ping-Fan Rao
Xu-Cong Lv
author_sort Rui-Bo Jia
collection DOAJ
description Teramethylpyrazine (TMP) is a pyrazine alkaloid with a variety of pharmacological effects and widely used in clinical practice. In this study, Monascus strain M-3 with high TMP and low citrinin productions was screened from red yeast rice collected from different areas of Fujian province in China. Monascus strain 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 Monascus strain M-3. Based on comparative analysis of the results obtained by different primer sets, Monacus strain M-3 was finally identified as Monascus purpureus. Then, the composition of culture medium and liquid state fermentation conditions of Monacus strain 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%, Mg2SO4 0.1%, NaNO3 0.2%, KH2PO4 0.25%, 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 Monacus strain M-3 can reach 13.49 µg/mL. This study is expected to provide a new approach of TMP production through biosynthesis by Monascus strain, and promote the further development of functional foods or medicines from Monascus fermentation products.
first_indexed 2024-12-21T06:55:36Z
format Article
id doaj.art-376caeb4b0aa499bb0f76ca89675555b
institution Directory Open Access Journal
issn 1310-2818
1314-3530
language English
last_indexed 2024-12-21T06:55:36Z
publishDate 2017-07-01
publisher Taylor & Francis Group
record_format Article
series Biotechnology & Biotechnological Equipment
spelling doaj.art-376caeb4b0aa499bb0f76ca89675555b2022-12-21T19:12:20ZengTaylor & Francis GroupBiotechnology & Biotechnological Equipment1310-28181314-35302017-07-0131482883810.1080/13102818.2017.13351761335176Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)Rui-Bo Jia0Wei-Ling Guo1Wen-Bin Zhou2Ya-Jun Jiang3Feng-Feng Zhu4Jing-Hao Chen5Yan Li6Bin Liu7Shao-Jun Chen8Ji-Cheng Chen9Li Ni10Ping-Fan Rao11Xu-Cong Lv12Fujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFuzhou UniversityFuzhou UniversityFujian Agriculture and Forestry UniversityTeramethylpyrazine (TMP) is a pyrazine alkaloid with a variety of pharmacological effects and widely used in clinical practice. In this study, Monascus strain M-3 with high TMP and low citrinin productions was screened from red yeast rice collected from different areas of Fujian province in China. Monascus strain 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 Monascus strain M-3. Based on comparative analysis of the results obtained by different primer sets, Monacus strain M-3 was finally identified as Monascus purpureus. Then, the composition of culture medium and liquid state fermentation conditions of Monacus strain 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%, Mg2SO4 0.1%, NaNO3 0.2%, KH2PO4 0.25%, 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 Monacus strain M-3 can reach 13.49 µg/mL. This study is expected to provide a new approach of TMP production through biosynthesis by Monascus strain, and promote the further development of functional foods or medicines from Monascus fermentation products.http://dx.doi.org/10.1080/13102818.2017.1335176Teramethylpyrazine (TMP)Monascusidentificationfermentation conditionsresponse surface methodology
spellingShingle Rui-Bo Jia
Wei-Ling Guo
Wen-Bin Zhou
Ya-Jun Jiang
Feng-Feng Zhu
Jing-Hao Chen
Yan Li
Bin Liu
Shao-Jun Chen
Ji-Cheng Chen
Li Ni
Ping-Fan Rao
Xu-Cong Lv
Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
Biotechnology & Biotechnological Equipment
Teramethylpyrazine (TMP)
Monascus
identification
fermentation conditions
response surface methodology
title Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
title_full Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
title_fullStr Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
title_full_unstemmed Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
title_short Screening and identification of Monacus strain with high TMP production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology (RSM)
title_sort screening and identification of monacus strain with high tmp production and statistical optimization of its culture medium composition and liquid state fermentation conditions using response surface methodology rsm
topic Teramethylpyrazine (TMP)
Monascus
identification
fermentation conditions
response surface methodology
url http://dx.doi.org/10.1080/13102818.2017.1335176
work_keys_str_mv AT ruibojia screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT weilingguo screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT wenbinzhou screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT yajunjiang screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT fengfengzhu screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT jinghaochen screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT yanli screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT binliu screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT shaojunchen screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT jichengchen screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT lini screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT pingfanrao screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm
AT xuconglv screeningandidentificationofmonacusstrainwithhightmpproductionandstatisticaloptimizationofitsculturemediumcompositionandliquidstatefermentationconditionsusingresponsesurfacemethodologyrsm