4.4 Article

A Comprehensive Analysis of Carotenoid Cleavage Dioxygenases Genes in Solanum Lycopersicum

Journal

PLANT MOLECULAR BIOLOGY REPORTER
Volume 34, Issue 2, Pages 512-523

Publisher

SPRINGER
DOI: 10.1007/s11105-015-0943-1

Keywords

Carotenoids; Tandemduplication; Expression analysis; Bioinformatics

Funding

  1. State Key Laboratory Breeding Base for Zhejiang Sustainable Pest and Disease Control [2010DS700124-KF1518]
  2. Young Talent Training Program of Zhejiang Academy of Agricultural Sciences [2015R23R08E09]
  3. Zhejiang Provincial Natural Science Foundation of China [LQ12C150020]
  4. General Program from the National Natural Science Foundation of China [31301774, 31272156, 31071800]
  5. Public Agricultural Technology Application Research Project for Zhejiang Province [2013C32G4010256]
  6. Breeding of Vegetable Varieties in Zhejiang Province [2009C02006-1]
  7. Technological System of Ordinary Vegetable Industry [CARS-25-G-16]
  8. Zhejiang Provincial Vegetable Industry Innovation Team [2009R50026]
  9. Zhejiang Provincial major Agricultural Science and Technology Projects of New Varieties Breeding [2012C12903]
  10. Molecular Breeding of Major Vegetable and Functional Genomics Research [2012AA1001]

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Carotenoid cleavage dioxygenases (CCDs) in plant species is one of the most important enzymes in the carotenoid metabolism. In this study, we performed a comprehensive analysis for the CCDs family in Solanum lycopersicum based on the whole tomato genome sequences and explored their expression pattern. At least seven CCD genes were discovered in the tomato genome sequence. Two pairs of them were arranged in tandem. The tandem duplication events could be dating to approximately 14 and 21 Mya, and the tandem duplication genes experienced a purifying selection during the course of evolution after diversification. Additionally, subcellular localization revealed that four members were predicted to be cytoplasm-localized and the three remaining members plastids-localized. Subsequently, a number of cis-regulatory elements, which were involved in light responsiveness, hormone regulation, and abiotic and biotic stresses, were identified in the promoter sequences of SlCCD genes. Phylogenetic tree revealed that the CCDs from Solanaceae crops have a closer genetic relationship. The difference in abundance and distinct expression patterns during the vegetative and reproductive development suggests different functions for these seven SlCCDs. Our findings suggest that SlCCDs family play important roles throughout the whole life course and will lay the foundation for further elaborating the regulatory mechanism of each member in tomato.

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