Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants

Carotenoids are coloured compounds beneficial to plants and humans. Some of the major health benefits carotenoids provide include Vitamin A precursors and, antioxidants besides being involved in several physiological functions. Even though several carotenoids are synthesised by plants, only a few li...

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Main Authors: P Shilpa, K V Ravishankar, K S Shivashankara, A T Sadashiva, N Sunil Kumar
Format: Article
Language:English
Published: Society for Promotion of Horticulture 2016-12-01
Series:Journal of Horticultural Sciences
Subjects:
Online Access:https://jhs.iihr.res.in/index.php/jhs/article/view/78
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spelling doaj-e807e594eefc42b6bbbde1a581768f552020-11-25T03:55:51ZengSociety for Promotion of HorticultureJournal of Horticultural Sciences0973-354X2582-48992016-12-011129110378Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in PlantsP ShilpaK V RavishankarK S ShivashankaraA T SadashivaN Sunil KumarCarotenoids are coloured compounds beneficial to plants and humans. Some of the major health benefits carotenoids provide include Vitamin A precursors and, antioxidants besides being involved in several physiological functions. Even though several carotenoids are synthesised by plants, only a few like beta/ alpha carotenes and cryptoxanthin serve as Vitamin A precursors. The rest are useful as antioxidants. To draw maximum benefits from carotenoids, we need to incorporate these in crop improvement programmes for enhancing available Vitamin A precursor carotenoids. Therefore, it is essential to study biosynthesis of carotenoids, their genetics and their control. In this review, we focus on factors regulating carotenoid biosynthesis, metabolism and storage in plastids. Transcriptional and genetic control of carotenoid production in plants is discussed in the review using several mutants too. Further, environmental regulation of carotenoid biosynthesis is also highlighted. Carotenoid-rich fruits and vegetables have greater economic value owing to their health-promoting effects. Besides,carotenoids have several industrial applications. Therefore, knowledge of regulation mechanism in carotenoid production in plants can help develop crop varieties or technologies, thus generating carotene-rich fruits and vegetables.https://jhs.iihr.res.in/index.php/jhs/article/view/78carotenoid biosynthesisregulationplastidfruittranscription factor
collection DOAJ
language English
format Article
sources DOAJ
author P Shilpa
K V Ravishankar
K S Shivashankara
A T Sadashiva
N Sunil Kumar
spellingShingle P Shilpa
K V Ravishankar
K S Shivashankara
A T Sadashiva
N Sunil Kumar
Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
Journal of Horticultural Sciences
carotenoid biosynthesis
regulation
plastid
fruit
transcription factor
author_facet P Shilpa
K V Ravishankar
K S Shivashankara
A T Sadashiva
N Sunil Kumar
author_sort P Shilpa
title Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
title_short Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
title_full Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
title_fullStr Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
title_full_unstemmed Molecular Mechanisms Involved in Biosynthesis and Regulation of Carotenoids in Plants
title_sort molecular mechanisms involved in biosynthesis and regulation of carotenoids in plants
publisher Society for Promotion of Horticulture
series Journal of Horticultural Sciences
issn 0973-354X
2582-4899
publishDate 2016-12-01
description Carotenoids are coloured compounds beneficial to plants and humans. Some of the major health benefits carotenoids provide include Vitamin A precursors and, antioxidants besides being involved in several physiological functions. Even though several carotenoids are synthesised by plants, only a few like beta/ alpha carotenes and cryptoxanthin serve as Vitamin A precursors. The rest are useful as antioxidants. To draw maximum benefits from carotenoids, we need to incorporate these in crop improvement programmes for enhancing available Vitamin A precursor carotenoids. Therefore, it is essential to study biosynthesis of carotenoids, their genetics and their control. In this review, we focus on factors regulating carotenoid biosynthesis, metabolism and storage in plastids. Transcriptional and genetic control of carotenoid production in plants is discussed in the review using several mutants too. Further, environmental regulation of carotenoid biosynthesis is also highlighted. Carotenoid-rich fruits and vegetables have greater economic value owing to their health-promoting effects. Besides,carotenoids have several industrial applications. Therefore, knowledge of regulation mechanism in carotenoid production in plants can help develop crop varieties or technologies, thus generating carotene-rich fruits and vegetables.
topic carotenoid biosynthesis
regulation
plastid
fruit
transcription factor
url https://jhs.iihr.res.in/index.php/jhs/article/view/78
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