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Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd

[Image: see text] Lithocarpus polystachyus Rehd has received great attention because of its pharmacological activities, such as inhibiting oxidation and lowering blood glucose and blood pressure, and flavonoids are one of its main pharmacodynamic components. It is important to understand the mechani...

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Autores principales: Zhang, Duoduo, Wang, Shuqing, Lin, Limei, Zhang, Jie, Cui, Minghui, Wang, Shuo, Zhao, Xuelei, Dong, Jing, Long, Yuehong, Xing, Zhaobin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9202069/
https://www.ncbi.nlm.nih.gov/pubmed/35722012
http://dx.doi.org/10.1021/acsomega.2c01125
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author Zhang, Duoduo
Wang, Shuqing
Lin, Limei
Zhang, Jie
Cui, Minghui
Wang, Shuo
Zhao, Xuelei
Dong, Jing
Long, Yuehong
Xing, Zhaobin
author_facet Zhang, Duoduo
Wang, Shuqing
Lin, Limei
Zhang, Jie
Cui, Minghui
Wang, Shuo
Zhao, Xuelei
Dong, Jing
Long, Yuehong
Xing, Zhaobin
author_sort Zhang, Duoduo
collection PubMed
description [Image: see text] Lithocarpus polystachyus Rehd has received great attention because of its pharmacological activities, such as inhibiting oxidation and lowering blood glucose and blood pressure, and flavonoids are one of its main pharmacodynamic components. It is important to understand the mechanisms of the flavonoid biosynthetic pathway of L. polystachyus, but the regulation of flavonoid biosynthesis is still unclear. In this study, differentially expressed genes and differentially accumulated metabolites in L. polystachyus were studied by integrating transcriptomics and metabolomics technologies. We confirmed the key genes involved in the flavonoid biosynthesis of L. polystachyus, including LpPAL3, LpCHS1, LpCHS2, LpCHI2, and LpF3H, which had consistent expression patterns with their upstream and downstream metabolites, and there is a significantly positive correlation between them. Compared to mature leaves, stems and young leaves are higher in the expression levels of key structural genes. We deduced that the MYB and bHLH transcription factors regulated the biosynthesis of different flavonoid metabolites and their regulatory patterns. Among them, LpMYB2, LpMYB20, LpMYB54, LpMYB12, and LpWD40-113 positively regulated the biosynthesis of flavones and flavanones. This discovery preliminarily revealed the pathways and key genes of flavonoid biosynthesis in L. polystachyus, which provided a reference for further study on flavonoid biosynthesis.
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spelling pubmed-92020692022-06-17 Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd Zhang, Duoduo Wang, Shuqing Lin, Limei Zhang, Jie Cui, Minghui Wang, Shuo Zhao, Xuelei Dong, Jing Long, Yuehong Xing, Zhaobin ACS Omega [Image: see text] Lithocarpus polystachyus Rehd has received great attention because of its pharmacological activities, such as inhibiting oxidation and lowering blood glucose and blood pressure, and flavonoids are one of its main pharmacodynamic components. It is important to understand the mechanisms of the flavonoid biosynthetic pathway of L. polystachyus, but the regulation of flavonoid biosynthesis is still unclear. In this study, differentially expressed genes and differentially accumulated metabolites in L. polystachyus were studied by integrating transcriptomics and metabolomics technologies. We confirmed the key genes involved in the flavonoid biosynthesis of L. polystachyus, including LpPAL3, LpCHS1, LpCHS2, LpCHI2, and LpF3H, which had consistent expression patterns with their upstream and downstream metabolites, and there is a significantly positive correlation between them. Compared to mature leaves, stems and young leaves are higher in the expression levels of key structural genes. We deduced that the MYB and bHLH transcription factors regulated the biosynthesis of different flavonoid metabolites and their regulatory patterns. Among them, LpMYB2, LpMYB20, LpMYB54, LpMYB12, and LpWD40-113 positively regulated the biosynthesis of flavones and flavanones. This discovery preliminarily revealed the pathways and key genes of flavonoid biosynthesis in L. polystachyus, which provided a reference for further study on flavonoid biosynthesis. American Chemical Society 2022-05-31 /pmc/articles/PMC9202069/ /pubmed/35722012 http://dx.doi.org/10.1021/acsomega.2c01125 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Zhang, Duoduo
Wang, Shuqing
Lin, Limei
Zhang, Jie
Cui, Minghui
Wang, Shuo
Zhao, Xuelei
Dong, Jing
Long, Yuehong
Xing, Zhaobin
Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title_full Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title_fullStr Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title_full_unstemmed Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title_short Integrative Analysis of Metabolome and Transcriptome Reveals the Mechanism of Flavonoid Biosynthesis in Lithocarpus polystachyus Rehd
title_sort integrative analysis of metabolome and transcriptome reveals the mechanism of flavonoid biosynthesis in lithocarpus polystachyus rehd
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9202069/
https://www.ncbi.nlm.nih.gov/pubmed/35722012
http://dx.doi.org/10.1021/acsomega.2c01125
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