support@kaust.edu.sa
+966 (12) 808-3463
  • العربية
BioActives-icon-01
  • Home
  • People
    • Former members
  • Research
  • Publications
    • 2023
    • 2022
    • 2021
    • 2020
    • 2019
    • 2017
    • 2016
    • 2015
    • 2014
    • 2013
  • Collaborators
  • News
  • Contact us
breadcrumb-bg

A novel carotenoid cleavage activity involved in the biosynthesis of Citrus fruit-specific apocarotenoid pigments.

  1. Home
  2. Publications
  • Clear filters

A novel carotenoid cleavage activity involved in the biosynthesis of Citrus fruit-specific apocarotenoid pigments.

by María J. Rodrigo, Berta Alquézar, Enriqueta Alós, Víctor Medina, Lourdes Carmona, Mark Bruno, Salim Al-Babili, Lorenzo Zacarías
Scientific Year: 2013 ISSN: 0022-0957 DOI: 10.1093/jxb/ert260

Bibliography

María J. Rodrigo, Berta Alquézar, Enriqueta Alós, Víctor Medina, Lourdes Carmona, Mark Bruno, Salim Al-Babili​ and Lorenzo Zacarías. A novel carotenoid cleavage activity involved in the biosynthesis of Citrus fruit-specific apocarotenoid pigments. Journal of Experimental Botany. https://doi.org/10.1093/jxb/ert260

Abstract

Citrus is the first tree crop in terms of fruit production. The colour of Citrus fruit is one of the main quality attributes, caused by the accumulation of carotenoids and their derivative C30 apocarotenoids, mainly β-citraurin (3-hydroxy- β-apo-8′-carotenal), which provide an attractive orange-reddish tint to the peel of oranges and mandarins. Though carotenoid biosynthesis and its regulation have been extensively studied in Citrus fruits, little is known about the formation of C30 apocarotenoids. The aim of this study was to the identify carotenoid cleavage enzyme(s) [CCD(s)] involved in the peel-specific C30 apocarotenoids. In silico data mining revealed a new family of five CCD4-type genes in Citrus. One gene of this family, CCD4b1, was expressed in reproductive and vegetative tissues of different Citrus species in a pattern correlating with the accumulation of C30 apocarotenoids. Moreover, developmental processes and treatments which alter Citrus fruit peel pigmentation led to changes of β-citraurin content and CCD4b1 transcript levels. These results point to the involvement of CCD4b1 in β-citraurin formation and indicate that the accumula- tion of this compound is determined by the availability of the presumed precursors zeaxanthin and β-cryptoxanthin. Functional analysis of CCD4b1 by in vitro assays unequivocally demonstrated the asymmetric cleavage activity at the 7′,8′ double bond in zeaxanthin and β-cryptoxanthin, confirming its role in C30 apocarotenoid biosynthesis. Thus, a novel plant carotenoid cleavage activity targeting the 7′,8′ double bond of cyclic C40 carotenoids has been identified. These results suggest that the presented enzyme is responsible for the biosynthesis of C30 apocarotenoids in Citrus which are key pigments in fruit coloration.

Keywords

apocarotenoid carotenoid cleavage dioxygenase carotenoid β-citraurin citrus fruit coloration
logo-white

"KAUST shall be a beacon for peace, hope and reconciliation, and shall serve the people of the Kingdom and the world."

King Abdullah bin Abdulaziz Al Saud, 1924 – 2015

Contact Us

  • +966 (12) 808-2565
  • salim.babili@kaust.edu.sa 

4700 King Abdullah University of Science and Technology

Thuwal 23955-6900

Kingdom of Saudi Arabia

Quick links

  • Contact us
Flag Counter

© King Abdullah University of Science and Technology. All rights reserved

Privacy Policy
Terms of Use
Loading...