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Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles

Plant polysaccharides, a type of important bioactive compound, are involved in multiple plant defense mechanisms, and in particular polysaccharide-alleviated abiotic stress has been well studied. Polygonatum cyrtonema Hua (P. cyrtonema Hua) is a medicinal and edible perennial plant that is used in t...

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Autores principales: Chen, Longsheng, Xu, Shuwen, Liu, Yujun, Zu, Yanhong, Zhang, Fuyuan, Du, Liji, Chen, Jun, Li, Lei, Wang, Kai, Wang, Yating, Chen, Shijin, Chen, Ziping, Du, Xianfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558278/
https://www.ncbi.nlm.nih.gov/pubmed/36247596
http://dx.doi.org/10.3389/fpls.2022.1012231
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author Chen, Longsheng
Xu, Shuwen
Liu, Yujun
Zu, Yanhong
Zhang, Fuyuan
Du, Liji
Chen, Jun
Li, Lei
Wang, Kai
Wang, Yating
Chen, Shijin
Chen, Ziping
Du, Xianfeng
author_facet Chen, Longsheng
Xu, Shuwen
Liu, Yujun
Zu, Yanhong
Zhang, Fuyuan
Du, Liji
Chen, Jun
Li, Lei
Wang, Kai
Wang, Yating
Chen, Shijin
Chen, Ziping
Du, Xianfeng
author_sort Chen, Longsheng
collection PubMed
description Plant polysaccharides, a type of important bioactive compound, are involved in multiple plant defense mechanisms, and in particular polysaccharide-alleviated abiotic stress has been well studied. Polygonatum cyrtonema Hua (P. cyrtonema Hua) is a medicinal and edible perennial plant that is used in traditional Chinese medicine and is rich in polysaccharides. Previous studies suggested that sucrose might act as a precursor for polysaccharide biosynthesis. However, the role of sucrose metabolism and transport in mediating polysaccharide biosynthesis remains largely unknown in P. cyrtonema Hua. In this study, we investigated the contents of polysaccharides, sucrose, glucose, and fructose in the rhizome, stem, leaf, and flower tissues of P. cyrtonema Hua, and systemically identified the genes associated with the sucrose metabolism and transport and polysaccharide biosynthesis pathways. Our results showed that polysaccharides were mainly accumulated in rhizomes, leaves, and flowers. Besides, there was a positive correlation between sucrose and polysaccharide content, and a negative correlation between glucose and polysaccharide content in rhizome, stem, leaf, and flower tissues. Then, the transcriptomic analyses of different tissues were performed, and differentially expressed genes related to sucrose metabolism and transport, polysaccharide biosynthesis, and transcription factors were identified. The analyses of the gene expression patterns provided novel regulatory networks for the molecular basis of high accumulation of polysaccharides, especially in the rhizome tissue. Furthermore, our findings explored that polysaccharide accumulation was highly correlated with the expression levels of SUS, INV, SWEET, and PLST, which are mediated by bHLH, bZIP, ERF, ARF, C2H2, and other genes in different tissues of P. cyrtonema Hua. Herein, this study contributes to a comprehensive understanding of the transcriptional regulation of polysaccharide accumulation and provides information regarding valuable genes involved in the tolerance to abiotic stresses in P. cyrtonema Hua.
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spelling pubmed-95582782022-10-14 Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles Chen, Longsheng Xu, Shuwen Liu, Yujun Zu, Yanhong Zhang, Fuyuan Du, Liji Chen, Jun Li, Lei Wang, Kai Wang, Yating Chen, Shijin Chen, Ziping Du, Xianfeng Front Plant Sci Plant Science Plant polysaccharides, a type of important bioactive compound, are involved in multiple plant defense mechanisms, and in particular polysaccharide-alleviated abiotic stress has been well studied. Polygonatum cyrtonema Hua (P. cyrtonema Hua) is a medicinal and edible perennial plant that is used in traditional Chinese medicine and is rich in polysaccharides. Previous studies suggested that sucrose might act as a precursor for polysaccharide biosynthesis. However, the role of sucrose metabolism and transport in mediating polysaccharide biosynthesis remains largely unknown in P. cyrtonema Hua. In this study, we investigated the contents of polysaccharides, sucrose, glucose, and fructose in the rhizome, stem, leaf, and flower tissues of P. cyrtonema Hua, and systemically identified the genes associated with the sucrose metabolism and transport and polysaccharide biosynthesis pathways. Our results showed that polysaccharides were mainly accumulated in rhizomes, leaves, and flowers. Besides, there was a positive correlation between sucrose and polysaccharide content, and a negative correlation between glucose and polysaccharide content in rhizome, stem, leaf, and flower tissues. Then, the transcriptomic analyses of different tissues were performed, and differentially expressed genes related to sucrose metabolism and transport, polysaccharide biosynthesis, and transcription factors were identified. The analyses of the gene expression patterns provided novel regulatory networks for the molecular basis of high accumulation of polysaccharides, especially in the rhizome tissue. Furthermore, our findings explored that polysaccharide accumulation was highly correlated with the expression levels of SUS, INV, SWEET, and PLST, which are mediated by bHLH, bZIP, ERF, ARF, C2H2, and other genes in different tissues of P. cyrtonema Hua. Herein, this study contributes to a comprehensive understanding of the transcriptional regulation of polysaccharide accumulation and provides information regarding valuable genes involved in the tolerance to abiotic stresses in P. cyrtonema Hua. Frontiers Media S.A. 2022-09-29 /pmc/articles/PMC9558278/ /pubmed/36247596 http://dx.doi.org/10.3389/fpls.2022.1012231 Text en Copyright © 2022 Chen, Xu, Liu, Zu, Zhang, Du, Chen, Li, Wang, Wang, Chen, Chen and Du. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Chen, Longsheng
Xu, Shuwen
Liu, Yujun
Zu, Yanhong
Zhang, Fuyuan
Du, Liji
Chen, Jun
Li, Lei
Wang, Kai
Wang, Yating
Chen, Shijin
Chen, Ziping
Du, Xianfeng
Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title_full Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title_fullStr Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title_full_unstemmed Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title_short Identification of key gene networks controlling polysaccharide accumulation in different tissues of Polygonatum cyrtonema Hua by integrating metabolic phenotypes and gene expression profiles
title_sort identification of key gene networks controlling polysaccharide accumulation in different tissues of polygonatum cyrtonema hua by integrating metabolic phenotypes and gene expression profiles
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558278/
https://www.ncbi.nlm.nih.gov/pubmed/36247596
http://dx.doi.org/10.3389/fpls.2022.1012231
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