Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology

“Lianzhifan solution” (LZF) is produced by the natural fermentation of coptis root and gardenia fruit, and it is a classic prescription for external use in anorectal department. During the fermentation process, the structural evolution of microbial communities led to significant changes in the chemi...

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Main Authors: Jie Xie, Yang Ye, Ze Wu, Xun Gou, Tong Peng, Xuegang Yuan, Xiangdong Yang, Xiaoyu Zhang, Quekun Peng
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-08-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmicb.2021.727968/full
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spelling doaj-32e4e9c68c2f466581cb4962dcbaa7cb2021-08-23T13:14:01ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2021-08-011210.3389/fmicb.2021.727968727968Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing TechnologyJie Xie0Yang Ye1Ze Wu2Xun Gou3Tong Peng4Xuegang Yuan5Xiangdong Yang6Xiaoyu Zhang7Quekun Peng8College of Life Sciences, Sichuan Normal University, Chengdu, ChinaCollege of Life Sciences, Sichuan Normal University, Chengdu, ChinaCollege of Life Sciences, Sichuan Normal University, Chengdu, ChinaCollege of Life Sciences, Sichuan Normal University, Chengdu, ChinaKeystonecare Technology (Chengdu) Co., Ltd., Chengdu, ChinaDepartment of Anorectal Surgery, The Sixth People’s Hospital of Chengdu, Chengdu, ChinaDepartment of Anorectal, Chengdu Anorectal Hospital, Chengdu, ChinaCollege of Life Sciences, Sichuan Normal University, Chengdu, ChinaDepartment of Biotechnology, School of Bioscience and Technology, Chengdu Medical College, Chengdu, China“Lianzhifan solution” (LZF) is produced by the natural fermentation of coptis root and gardenia fruit, and it is a classic prescription for external use in anorectal department. During the fermentation process, the structural evolution of microbial communities led to significant changes in the chemical profile. In this study, we first analyzed the dynamic changes of chemical components as well as the composition and succession of microbial community during the whole fermentation process of LZF, and confirmed the changes of characteristics of nine compounds during the whole fermentation process by metabolic profile. Further analysis found that there was no significant change of alkaloids in all stages of fermentation of LZF, but there were significant changes of iridoids in the middle and late stage of fermentation by deglycosylation. Genipin gentiobioside and geniposide were converted to genipin by biotransformation, showing that deglycosylation was the main event occurring in the fermentation. The community composition and abundance of species in 10 and 19days LZF fermentation broth were analyzed with high-throughput sequencing technology, and 16 dominant bacterial genera and 15 dominant fungal genera involved in the fermentation process were identified. Correlation analysis revealed that Penicillium expansum and Aspergillus niger involved in the fermentation were the dominant genera closely related to the dynamic changes of the deglycosylation of the main chemical components, and P. expansum YY-46 and A. niger YY-9 strains were obtained by the further fractionation. Then the monoculture fermentation process was evaluated, whereby we found that the deglycoside conversion rate of iridoid glycosides was greatly improved and the fermentation cycle was shortened by 3–4 times. This finding combined with equivalence evaluation of chemical component and pharmacodynamics to confirm that P. expansum YY-46 and A. niger YY-9 strains were key strains for fermentation concoction. This study established an efficient and practical screening strategy “Microfauna communities-Chemical component-Pharmacodynamic” axis for key strain, to improve the production process and formulating good manufacturing practice (GMP) work, and it is also applicable to the whole fermentation drugs industry.Graphical AbstractThe figure highly summarizes the research content of this study and shows the screening process of key strains in LZF fermentation.https://www.frontiersin.org/articles/10.3389/fmicb.2021.727968/fulltraditional Chinese medicine fermentationkey strain screeningequivalence evaluationchemical metabolic profilingiridoidshigh-throughput sequencing
collection DOAJ
language English
format Article
sources DOAJ
author Jie Xie
Yang Ye
Ze Wu
Xun Gou
Tong Peng
Xuegang Yuan
Xiangdong Yang
Xiaoyu Zhang
Quekun Peng
spellingShingle Jie Xie
Yang Ye
Ze Wu
Xun Gou
Tong Peng
Xuegang Yuan
Xiangdong Yang
Xiaoyu Zhang
Quekun Peng
Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
Frontiers in Microbiology
traditional Chinese medicine fermentation
key strain screening
equivalence evaluation
chemical metabolic profiling
iridoids
high-throughput sequencing
author_facet Jie Xie
Yang Ye
Ze Wu
Xun Gou
Tong Peng
Xuegang Yuan
Xiangdong Yang
Xiaoyu Zhang
Quekun Peng
author_sort Jie Xie
title Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
title_short Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
title_full Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
title_fullStr Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
title_full_unstemmed Screening of Key Fungal Strains in the Fermentation Process of the Chinese Medicinal Preparation “Lianzhifan Solution” Based on Metabolic Profiling and High-Throughput Sequencing Technology
title_sort screening of key fungal strains in the fermentation process of the chinese medicinal preparation “lianzhifan solution” based on metabolic profiling and high-throughput sequencing technology
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2021-08-01
description “Lianzhifan solution” (LZF) is produced by the natural fermentation of coptis root and gardenia fruit, and it is a classic prescription for external use in anorectal department. During the fermentation process, the structural evolution of microbial communities led to significant changes in the chemical profile. In this study, we first analyzed the dynamic changes of chemical components as well as the composition and succession of microbial community during the whole fermentation process of LZF, and confirmed the changes of characteristics of nine compounds during the whole fermentation process by metabolic profile. Further analysis found that there was no significant change of alkaloids in all stages of fermentation of LZF, but there were significant changes of iridoids in the middle and late stage of fermentation by deglycosylation. Genipin gentiobioside and geniposide were converted to genipin by biotransformation, showing that deglycosylation was the main event occurring in the fermentation. The community composition and abundance of species in 10 and 19days LZF fermentation broth were analyzed with high-throughput sequencing technology, and 16 dominant bacterial genera and 15 dominant fungal genera involved in the fermentation process were identified. Correlation analysis revealed that Penicillium expansum and Aspergillus niger involved in the fermentation were the dominant genera closely related to the dynamic changes of the deglycosylation of the main chemical components, and P. expansum YY-46 and A. niger YY-9 strains were obtained by the further fractionation. Then the monoculture fermentation process was evaluated, whereby we found that the deglycoside conversion rate of iridoid glycosides was greatly improved and the fermentation cycle was shortened by 3–4 times. This finding combined with equivalence evaluation of chemical component and pharmacodynamics to confirm that P. expansum YY-46 and A. niger YY-9 strains were key strains for fermentation concoction. This study established an efficient and practical screening strategy “Microfauna communities-Chemical component-Pharmacodynamic” axis for key strain, to improve the production process and formulating good manufacturing practice (GMP) work, and it is also applicable to the whole fermentation drugs industry.Graphical AbstractThe figure highly summarizes the research content of this study and shows the screening process of key strains in LZF fermentation.
topic traditional Chinese medicine fermentation
key strain screening
equivalence evaluation
chemical metabolic profiling
iridoids
high-throughput sequencing
url https://www.frontiersin.org/articles/10.3389/fmicb.2021.727968/full
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