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Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam

Cissus rotundifolia Lam. is used as a medicinal herb and vegetable. Flavonoids are the major components for the therapeutic effects. However, flavonoids constituents and expression profiles of related genes in C. rotundifolia organs are unknown. Colorimetric assay showed the highest flavonoid concen...

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Autores principales: Gichuki, Duncan Kiragu, Li, Qingyun, Hou, Yujun, Liu, Yuanshuang, Ma, Mengxue, Zhou, Huimin, Xu, Chen, Zhu, Zhenfei, Wang, Lina, Musila, Fredrick Mutie, Wang, Qingfeng, Xin, Haiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621200/
https://www.ncbi.nlm.nih.gov/pubmed/34822399
http://dx.doi.org/10.3390/metabo11110741
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author Gichuki, Duncan Kiragu
Li, Qingyun
Hou, Yujun
Liu, Yuanshuang
Ma, Mengxue
Zhou, Huimin
Xu, Chen
Zhu, Zhenfei
Wang, Lina
Musila, Fredrick Mutie
Wang, Qingfeng
Xin, Haiping
author_facet Gichuki, Duncan Kiragu
Li, Qingyun
Hou, Yujun
Liu, Yuanshuang
Ma, Mengxue
Zhou, Huimin
Xu, Chen
Zhu, Zhenfei
Wang, Lina
Musila, Fredrick Mutie
Wang, Qingfeng
Xin, Haiping
author_sort Gichuki, Duncan Kiragu
collection PubMed
description Cissus rotundifolia Lam. is used as a medicinal herb and vegetable. Flavonoids are the major components for the therapeutic effects. However, flavonoids constituents and expression profiles of related genes in C. rotundifolia organs are unknown. Colorimetric assay showed the highest flavonoid concentration in roots compared to the stem and leaf. Widely target-based metabolome analysis allowed tentative identification of 199 compounds in three organs. Flavonols and flavones were the dominant flavonoids subclasses. Among the metabolites, 171 were common in the three organs. Unique accumulation profile was observed in the root while the stem and leaf exhibited relatively similar patterns. In the root, six unique compounds (jaceosidin, licoagrochalcone D, 8-prenylkaempferol, hesperetin 7-O-(6″malonyl) glucoside, aureusidin, apigenin-4′-O-rhamnoside) that are used for medicinal purposes were detected. In total, 18,427 expressed genes were identified from transcriptome of the three organs covering about 60% of annotated genes in C. rotundifolia genome. Fourteen gene families, including 52 members involved in the main pathway of flavonoids biosynthesis, were identified. Their expression could be found in at least one organ. Most of the genes were highly expressed in roots compared to other organs, coinciding with the metabolites profile. The findings provide fundamental data for exploration of metabolites biosynthesis in C. rotundifolia and diversification of parts used for medicinal purposes.
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spelling pubmed-86212002021-11-27 Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam Gichuki, Duncan Kiragu Li, Qingyun Hou, Yujun Liu, Yuanshuang Ma, Mengxue Zhou, Huimin Xu, Chen Zhu, Zhenfei Wang, Lina Musila, Fredrick Mutie Wang, Qingfeng Xin, Haiping Metabolites Article Cissus rotundifolia Lam. is used as a medicinal herb and vegetable. Flavonoids are the major components for the therapeutic effects. However, flavonoids constituents and expression profiles of related genes in C. rotundifolia organs are unknown. Colorimetric assay showed the highest flavonoid concentration in roots compared to the stem and leaf. Widely target-based metabolome analysis allowed tentative identification of 199 compounds in three organs. Flavonols and flavones were the dominant flavonoids subclasses. Among the metabolites, 171 were common in the three organs. Unique accumulation profile was observed in the root while the stem and leaf exhibited relatively similar patterns. In the root, six unique compounds (jaceosidin, licoagrochalcone D, 8-prenylkaempferol, hesperetin 7-O-(6″malonyl) glucoside, aureusidin, apigenin-4′-O-rhamnoside) that are used for medicinal purposes were detected. In total, 18,427 expressed genes were identified from transcriptome of the three organs covering about 60% of annotated genes in C. rotundifolia genome. Fourteen gene families, including 52 members involved in the main pathway of flavonoids biosynthesis, were identified. Their expression could be found in at least one organ. Most of the genes were highly expressed in roots compared to other organs, coinciding with the metabolites profile. The findings provide fundamental data for exploration of metabolites biosynthesis in C. rotundifolia and diversification of parts used for medicinal purposes. MDPI 2021-10-28 /pmc/articles/PMC8621200/ /pubmed/34822399 http://dx.doi.org/10.3390/metabo11110741 Text en © 2021 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
Gichuki, Duncan Kiragu
Li, Qingyun
Hou, Yujun
Liu, Yuanshuang
Ma, Mengxue
Zhou, Huimin
Xu, Chen
Zhu, Zhenfei
Wang, Lina
Musila, Fredrick Mutie
Wang, Qingfeng
Xin, Haiping
Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title_full Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title_fullStr Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title_full_unstemmed Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title_short Characterization of Flavonoids and Transcripts Involved in Their Biosynthesis in Different Organs of Cissus rotundifolia Lam
title_sort characterization of flavonoids and transcripts involved in their biosynthesis in different organs of cissus rotundifolia lam
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621200/
https://www.ncbi.nlm.nih.gov/pubmed/34822399
http://dx.doi.org/10.3390/metabo11110741
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