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Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics

Ergothioneine (EGT), an exceptional antioxidant found ubiquitously across diverse living organisms, plays a pivotal role in various vital physiological regulatory functions. Its principal natural sources are mushrooms and animal liver tissues. Ganoderma spp., a traditional Chinese food and medicinal...

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Autores principales: Xie, Jiaqi, Yu, Yinghao, You, Junjiang, Ye, Zhiwei, Zhou, Fenglong, Wang, Na, Zhong, Jingru, Guo, Liqiong, Lin, Junfang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672712/
https://www.ncbi.nlm.nih.gov/pubmed/37998877
http://dx.doi.org/10.3390/jof9111072
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author Xie, Jiaqi
Yu, Yinghao
You, Junjiang
Ye, Zhiwei
Zhou, Fenglong
Wang, Na
Zhong, Jingru
Guo, Liqiong
Lin, Junfang
author_facet Xie, Jiaqi
Yu, Yinghao
You, Junjiang
Ye, Zhiwei
Zhou, Fenglong
Wang, Na
Zhong, Jingru
Guo, Liqiong
Lin, Junfang
author_sort Xie, Jiaqi
collection PubMed
description Ergothioneine (EGT), an exceptional antioxidant found ubiquitously across diverse living organisms, plays a pivotal role in various vital physiological regulatory functions. Its principal natural sources are mushrooms and animal liver tissues. Ganoderma spp., a traditional Chinese food and medicinal mushroom, boasts high concentrations of EGT. To advance the development of novel Ganoderma spp. strains with enhanced EGT yields, we employed an efficient Ganoderma spp. protoplasmic fusion system. Through molecular and biological characterization, we successfully generated seven novel fusion strains. Notably, fusion strain RS7 demonstrated a remarkable increase in mycelial EGT production (12.70 ± 1.85 mg/L), surpassing the parental strains FQ16 and FQ23 by 34.23% and 39.10%, respectively. Furthermore, in the context of the fruiting body, fusion strain RS11 displayed a notable 53.58% enhancement in EGT production (11.24 ± 1.96 mg/L) compared to its parental strains. Genomic analysis of the RS7, the strain with the highest levels of mycelial EGT production, revealed mutations in the gene EVM0005141 associated with EGT metabolism. These mutations led to a reduction in non-productive shunts, subsequently redirecting more substrate towards the EGT synthesis pathway. This redirection significantly boosted EGT production in the RS7 strain. The insights gained from this study provide valuable guidance for the commercial-scale production of EGT and the selective breeding of Ganoderma spp. strains.
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spelling pubmed-106727122023-11-02 Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics Xie, Jiaqi Yu, Yinghao You, Junjiang Ye, Zhiwei Zhou, Fenglong Wang, Na Zhong, Jingru Guo, Liqiong Lin, Junfang J Fungi (Basel) Article Ergothioneine (EGT), an exceptional antioxidant found ubiquitously across diverse living organisms, plays a pivotal role in various vital physiological regulatory functions. Its principal natural sources are mushrooms and animal liver tissues. Ganoderma spp., a traditional Chinese food and medicinal mushroom, boasts high concentrations of EGT. To advance the development of novel Ganoderma spp. strains with enhanced EGT yields, we employed an efficient Ganoderma spp. protoplasmic fusion system. Through molecular and biological characterization, we successfully generated seven novel fusion strains. Notably, fusion strain RS7 demonstrated a remarkable increase in mycelial EGT production (12.70 ± 1.85 mg/L), surpassing the parental strains FQ16 and FQ23 by 34.23% and 39.10%, respectively. Furthermore, in the context of the fruiting body, fusion strain RS11 displayed a notable 53.58% enhancement in EGT production (11.24 ± 1.96 mg/L) compared to its parental strains. Genomic analysis of the RS7, the strain with the highest levels of mycelial EGT production, revealed mutations in the gene EVM0005141 associated with EGT metabolism. These mutations led to a reduction in non-productive shunts, subsequently redirecting more substrate towards the EGT synthesis pathway. This redirection significantly boosted EGT production in the RS7 strain. The insights gained from this study provide valuable guidance for the commercial-scale production of EGT and the selective breeding of Ganoderma spp. strains. MDPI 2023-11-02 /pmc/articles/PMC10672712/ /pubmed/37998877 http://dx.doi.org/10.3390/jof9111072 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xie, Jiaqi
Yu, Yinghao
You, Junjiang
Ye, Zhiwei
Zhou, Fenglong
Wang, Na
Zhong, Jingru
Guo, Liqiong
Lin, Junfang
Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title_full Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title_fullStr Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title_full_unstemmed Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title_short Ganoderma Fusions with High Yield of Ergothioneine and Comparative Analysis of Its Genomics
title_sort ganoderma fusions with high yield of ergothioneine and comparative analysis of its genomics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672712/
https://www.ncbi.nlm.nih.gov/pubmed/37998877
http://dx.doi.org/10.3390/jof9111072
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