2019
DOI: 10.2503/hortj.utd-r003
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Molecular Basis of Carotenoid Accumulation in Horticultural Crops

Abstract: Carotenoids are isoprenoid pigments, which are widely distributed in nature. In fruits and flowers, carotenoids are responsible for bright yellow, orange, and red colors and provide a substrate to form flavor compounds, which attract pollinators and seed dispersers. In leaves, carotenoids play an essential role in photosynthesis. When carotenoids are ingested in the diet, they play a vital role in human nutrition and health as a precursor of vitamin A, antioxidants, and anti-inflammatory agents. It is therefor… Show more

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Cited by 35 publications
(27 citation statements)
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References 148 publications
(177 reference statements)
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“…Citrus peel degreening is also complemented by a change in the content and composition of carotenoids having varied colours (Kato, 2012; Ohmiya et al ., 2019). Therefore, we sought to determine the changes in peel carotenoid content triggered by ethylene treatment and storage temperature.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…Citrus peel degreening is also complemented by a change in the content and composition of carotenoids having varied colours (Kato, 2012; Ohmiya et al ., 2019). Therefore, we sought to determine the changes in peel carotenoid content triggered by ethylene treatment and storage temperature.…”
Section: Resultsmentioning
confidence: 99%
“…Phytoene desaturase (PDS) and ζ-carotene desaturase (ZDS) successively convert phytoene to lycopene, which is then converted to either α-carotene or β-carotene by lycopene ε-cyclase (LCYe) and lycopene β-cyclase (LCYb) respectively. α-carotene is later converted to lutein via sequential hydroxylation by ε-ring hydroxylase and β-ring hydroxylase (CHYb), whereas β-carotene is converted to zeaxanthin via β-cryptoxanthin by CHYb (Cunningham et al ., 1996; Ohmiya et al ., 2019). Genes encoding various enzymes for the main steps of chlorophyll degradation and carotenoid metabolism have been isolated and functionally characterized (Rodrigo et al ., 2013).…”
Section: Introductionmentioning
confidence: 99%
“…However, most of the transcripts in the carotenoid pathway, including phytoene synthase (PSY), phytoene dehydrogenase (PDS), ζ-carotene desaturase (ZDS), lycopene β-cyclase (LCYB), β-carotene hydroxylase (BCH), etc., were upregulated in flowers. Carotenoids are one of the most widespread pigment groups responsible for bright red, yellow and orange hues in many fruits, vegetables and ornamental plants [13,14]. Previous reports have focused on carotenoid contents in the flower coloration of O. dubium and O. thyrsoides (two morphologically distinct species).…”
Section: Common and Specific De Transcripts Between O Dubium Leaves mentioning
confidence: 99%
“…For O. dubium, a stable transformation and regeneration system has already been established and used to produce hundreds of transgenic plantlets and plants [2,3]. Moreover, it is a relatively straightforward process to identify target genes in the biosynthetic and regulatory pathways of anthocyanin and carotenoid synthesis, because these genes are well-studied and fairly conserved among different plant species [13][14][15][16]. Nevertheless, the genomic resources for O. dubium are scarce, thus limiting the pigment-related target sequences available for editing.…”
Section: Introductionmentioning
confidence: 99%
“…Фиолетовая окраска обусловлена флавоноидными пигментами антоцианами (Nadeem et al, 2011). Разные системы генов и клеточные механизмы контролируют синтез антоцианов и каротиноидов в плодах перца (Liu et al, 2018;Ohmiya et al, 2019). Все названные соединения входят в антиоксидантный пул, однако каротиноиды относятся к жиро-, а антоцианы -к водорастворимым пигментам.…”
Section: обзор / Reviewunclassified