Literature DB >> 23973661

Genetic and chemical characterization of an EMS induced mutation in Cucumis melo CRTISO gene.

Navot Galpaz1, Yosi Burger, Tamar Lavee, Galil Tzuri, Amir Sherman, Tal Melamed, Ravit Eshed, Ayala Meir, Vitaly Portnoy, Einat Bar, Einav Shimoni-Shor, Ari Feder, Yuval Saar, Uzi Saar, Fabian Baumkoler, Efraim Lewinsohn, Arthur A Schaffer, Nurit Katzir, Yaakov Tadmor.   

Abstract

In order to broaden the available genetic variation of melon, we developed an ethyl methanesulfonate mutation library in an orange-flesh 'Charentais' type melon line that accumulates β-carotene. One mutagenized M2 family segregated for a novel recessive trait, a yellow-orange fruit flesh ('yofI'). HPLC analysis revealed that 'yofI' accumulates pro-lycopene (tetra-cis-lycopene) as its major fruit pigment. The altered carotenoid composition of 'yofI' is associated with a significant change of the fruit aroma since cleavage of β-carotene yields different apocarotenoids than the cleavage of pro-lycopene. Normally, pro-lycopene is further isomerized by CRTISO (carotenoid isomerase) to yield all-trans-lycopene, which is further cyclized to β-carotene in melon fruit. Cloning and sequencing of 'yofI' CRTISO identified two mRNA sequences which lead to truncated forms of CRTISO. Sequencing of the genomic CRTISO identified an A-T transversion in 'yofI' which leads to a premature STOP codon. The early carotenoid pathway genes were up regulated in yofI fruit causing accumulation of other intermediates such as phytoene and ζ-carotene. Total carotenoid levels are only slightly increased in the mutant. Mutants accumulating pro-lycopene have been reported in both tomato and watermelon fruits, however, this is the first report of a non-lycopene accumulating fruit showing this phenomenon.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Apocarotenoids; Carotenoid isomerase; Cucumis melo; Ethyl methanesulfonate; Gene expression; Pro-lycopene

Mesh:

Substances:

Year:  2013        PMID: 23973661     DOI: 10.1016/j.abb.2013.08.006

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  21 in total

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2.  A cis-carotene derived apocarotenoid regulates etioplast and chloroplast development.

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3.  Distinct Mechanisms of the ORANGE Protein in Controlling Carotenoid Flux.

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4.  Carotenogenesis Is Regulated by 5'UTR-Mediated Translation of Phytoene Synthase Splice Variants.

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Journal:  Plant Physiol       Date:  2016-10-11       Impact factor: 8.340

5.  Characterization of BoaCRTISO Reveals Its Role in Carotenoid Biosynthesis in Chinese Kale.

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6.  Systems approach for exploring the intricate associations between sweetness, color and aroma in melon fruits.

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7.  Assessment of Suitable Reference Genes for Quantitative Gene Expression Studies in Melon Fruits.

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Review 9.  Carotenoid metabolism and regulation in horticultural crops.

Authors:  Hui Yuan; Junxiang Zhang; Divyashree Nageswaran; Li Li
Journal:  Hortic Res       Date:  2015-08-26       Impact factor: 6.793

10.  Establishment of an Arabidopsis callus system to study the interrelations of biosynthesis, degradation and accumulation of carotenoids.

Authors:  Patrick Schaub; Marta Rodriguez-Franco; Christopher Ian Cazzonelli; Daniel Álvarez; Florian Wüst; Ralf Welsch
Journal:  PLoS One       Date:  2018-02-02       Impact factor: 3.240

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