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Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora
Ixeris dentata var. albiflora is considered as a potential therapeutic agent against mithridatism, calculous, indigestion, pneumonia, hepatitis, and tumors as well as good seasoned vegetable in Far East countries. Phytoene synthase (PSY), phytoene desaturase (PDS) ξ-carotene desaturase (ZDS), lycope...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151524/ https://www.ncbi.nlm.nih.gov/pubmed/28858245 http://dx.doi.org/10.3390/molecules22091449 |
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author | Reddy, Chinreddy Subramanyam Lee, Sang-Hoon Yoon, Jeong Su Kim, Jae Kwang Lee, Sang Won Hur, Mok Koo, Sung Cheol Kim, Mi Ran Lee, Woo Moon Jang, Jae Ki Hur, Yoonkang Park, Sang Un Kim, Yeon Bok |
author_facet | Reddy, Chinreddy Subramanyam Lee, Sang-Hoon Yoon, Jeong Su Kim, Jae Kwang Lee, Sang Won Hur, Mok Koo, Sung Cheol Kim, Mi Ran Lee, Woo Moon Jang, Jae Ki Hur, Yoonkang Park, Sang Un Kim, Yeon Bok |
author_sort | Reddy, Chinreddy Subramanyam |
collection | PubMed |
description | Ixeris dentata var. albiflora is considered as a potential therapeutic agent against mithridatism, calculous, indigestion, pneumonia, hepatitis, and tumors as well as good seasoned vegetable in Far East countries. Phytoene synthase (PSY), phytoene desaturase (PDS) ξ-carotene desaturase (ZDS), lycopene β-cyclase (LCYB), lycopene ε-cyclase (LCYE), ε-ring carotene hydroxylase (CHXB), and zeaxanthin epoxidase (ZDS) are vital enzymes in the carotenoid biosynthesis pathway. We have examined these seven genes from I. dentata that are participated in carotenoid biosynthesis utilizing an Illumina/Solexa HiSeq 2000 platform. In silico analysis of the seven deduced amino acid sequences were revealed its closest homology with other Asteracea plants. Further, we explored transcript levels and carotenoid accumulation in various organs of I. dentata using quantitative real time PCR and high-performance liquid chromatography, respectively. The highest transcript levels were noticed in the leaf for all the genes while minimal levels were noticed in the root. The maximal carotenoid accumulation was also detected in the leaf. We proposed that these genes expressions are associated with the accumulation of carotenoids. Our findings may suggest the fundamental clues to unravel the molecular insights of carotenoid biosynthesis in various organs of I. dentata. |
format | Online Article Text |
id | pubmed-6151524 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-61515242018-11-13 Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora Reddy, Chinreddy Subramanyam Lee, Sang-Hoon Yoon, Jeong Su Kim, Jae Kwang Lee, Sang Won Hur, Mok Koo, Sung Cheol Kim, Mi Ran Lee, Woo Moon Jang, Jae Ki Hur, Yoonkang Park, Sang Un Kim, Yeon Bok Molecules Article Ixeris dentata var. albiflora is considered as a potential therapeutic agent against mithridatism, calculous, indigestion, pneumonia, hepatitis, and tumors as well as good seasoned vegetable in Far East countries. Phytoene synthase (PSY), phytoene desaturase (PDS) ξ-carotene desaturase (ZDS), lycopene β-cyclase (LCYB), lycopene ε-cyclase (LCYE), ε-ring carotene hydroxylase (CHXB), and zeaxanthin epoxidase (ZDS) are vital enzymes in the carotenoid biosynthesis pathway. We have examined these seven genes from I. dentata that are participated in carotenoid biosynthesis utilizing an Illumina/Solexa HiSeq 2000 platform. In silico analysis of the seven deduced amino acid sequences were revealed its closest homology with other Asteracea plants. Further, we explored transcript levels and carotenoid accumulation in various organs of I. dentata using quantitative real time PCR and high-performance liquid chromatography, respectively. The highest transcript levels were noticed in the leaf for all the genes while minimal levels were noticed in the root. The maximal carotenoid accumulation was also detected in the leaf. We proposed that these genes expressions are associated with the accumulation of carotenoids. Our findings may suggest the fundamental clues to unravel the molecular insights of carotenoid biosynthesis in various organs of I. dentata. MDPI 2017-08-31 /pmc/articles/PMC6151524/ /pubmed/28858245 http://dx.doi.org/10.3390/molecules22091449 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Reddy, Chinreddy Subramanyam Lee, Sang-Hoon Yoon, Jeong Su Kim, Jae Kwang Lee, Sang Won Hur, Mok Koo, Sung Cheol Kim, Mi Ran Lee, Woo Moon Jang, Jae Ki Hur, Yoonkang Park, Sang Un Kim, Yeon Bok Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title | Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title_full | Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title_fullStr | Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title_full_unstemmed | Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title_short | Molecular Cloning and Characterization of Carotenoid Pathway Genes and Carotenoid Content in Ixeris dentata var. albiflora |
title_sort | molecular cloning and characterization of carotenoid pathway genes and carotenoid content in ixeris dentata var. albiflora |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151524/ https://www.ncbi.nlm.nih.gov/pubmed/28858245 http://dx.doi.org/10.3390/molecules22091449 |
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