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Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea

Arachis hypogaea (peanut) is a potential source of bioactive compounds including flavonols and proanthocyanidins, which have gained particular interest of metabolic engineering owing to their significance in the growth, development and defense responses in plants. To gain insight of proanthocyanidin...

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Autores principales: Kubra, Ghulam, Khan, Maryam, Hussain, Sidra, Iqbal, Tooba, Muhammad, Jan, Ali, Hina, Gul, Alvina, Munir, Faiza, Amir, Rabia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071922/
https://www.ncbi.nlm.nih.gov/pubmed/33911945
http://dx.doi.org/10.1016/j.sjbs.2021.01.024
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author Kubra, Ghulam
Khan, Maryam
Hussain, Sidra
Iqbal, Tooba
Muhammad, Jan
Ali, Hina
Gul, Alvina
Munir, Faiza
Amir, Rabia
author_facet Kubra, Ghulam
Khan, Maryam
Hussain, Sidra
Iqbal, Tooba
Muhammad, Jan
Ali, Hina
Gul, Alvina
Munir, Faiza
Amir, Rabia
author_sort Kubra, Ghulam
collection PubMed
description Arachis hypogaea (peanut) is a potential source of bioactive compounds including flavonols and proanthocyanidins, which have gained particular interest of metabolic engineering owing to their significance in the growth, development and defense responses in plants. To gain insight of proanthocyanidins and flavonols production in A. hypogaea, Leucoanthocyanidin reductase (AhLAR) and Flavonol synthase (AhFLS) enzymes responsible for their production, have been structurally, transcriptionally and functionally characterized. Structural and functional analysis of putative protein sequence of AhFLS indicated two functional motifs 2OG-FeII_Oxy and DIOX_N, while six functional motifs belonging to the families of NAD-dependent dehydratase, 3, β hydroxysteroid dehydrogenase and NmrA-like family were observed in case of AhLAR. Promoter sequence analysis unraveled several promoter elements related to the development regulation, environmental stress responses and hormonal signaling. Furthermore, the expression analysis of AhFLS and AhLAR and accumulation pattern analysis of proanthocyanidins and flavonols in three selected cultivars of A. hypogaea under saline environment confirmed their role against salinity in genotype-dependent and stress level-dependent manner. Correlation studies revealed that AhFLS and AhLAR expression is not directly dependent on the antioxidant enzymes activity, biochemical and growth parameters but higher Pearson r value depicted some level of dependency. This detailed study of AhLAR and AhFLS can assist in the metabolic engineering of flavonoid biosynthetic pathway to produce stress tolerant varieties and production of proanthocyanidins and flavonols at an industrial scale.
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spelling pubmed-80719222021-04-27 Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea Kubra, Ghulam Khan, Maryam Hussain, Sidra Iqbal, Tooba Muhammad, Jan Ali, Hina Gul, Alvina Munir, Faiza Amir, Rabia Saudi J Biol Sci Original Article Arachis hypogaea (peanut) is a potential source of bioactive compounds including flavonols and proanthocyanidins, which have gained particular interest of metabolic engineering owing to their significance in the growth, development and defense responses in plants. To gain insight of proanthocyanidins and flavonols production in A. hypogaea, Leucoanthocyanidin reductase (AhLAR) and Flavonol synthase (AhFLS) enzymes responsible for their production, have been structurally, transcriptionally and functionally characterized. Structural and functional analysis of putative protein sequence of AhFLS indicated two functional motifs 2OG-FeII_Oxy and DIOX_N, while six functional motifs belonging to the families of NAD-dependent dehydratase, 3, β hydroxysteroid dehydrogenase and NmrA-like family were observed in case of AhLAR. Promoter sequence analysis unraveled several promoter elements related to the development regulation, environmental stress responses and hormonal signaling. Furthermore, the expression analysis of AhFLS and AhLAR and accumulation pattern analysis of proanthocyanidins and flavonols in three selected cultivars of A. hypogaea under saline environment confirmed their role against salinity in genotype-dependent and stress level-dependent manner. Correlation studies revealed that AhFLS and AhLAR expression is not directly dependent on the antioxidant enzymes activity, biochemical and growth parameters but higher Pearson r value depicted some level of dependency. This detailed study of AhLAR and AhFLS can assist in the metabolic engineering of flavonoid biosynthetic pathway to produce stress tolerant varieties and production of proanthocyanidins and flavonols at an industrial scale. Elsevier 2021-04 2021-01-23 /pmc/articles/PMC8071922/ /pubmed/33911945 http://dx.doi.org/10.1016/j.sjbs.2021.01.024 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Kubra, Ghulam
Khan, Maryam
Hussain, Sidra
Iqbal, Tooba
Muhammad, Jan
Ali, Hina
Gul, Alvina
Munir, Faiza
Amir, Rabia
Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title_full Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title_fullStr Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title_full_unstemmed Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title_short Molecular characterization of Leucoanthocyanidin reductase and Flavonol synthase gene in Arachis hypogaea
title_sort molecular characterization of leucoanthocyanidin reductase and flavonol synthase gene in arachis hypogaea
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071922/
https://www.ncbi.nlm.nih.gov/pubmed/33911945
http://dx.doi.org/10.1016/j.sjbs.2021.01.024
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