A metabolomics approach to unravel the regulating role of phytohormones towards carotenoid metabolism in tomato fruit

被引:0
作者
Lieven Van Meulebroek
Julie Vanden Bussche
Nathalie De Clercq
Kathy Steppe
Lynn Vanhaecke
机构
[1] Ghent University,Laboratory of Chemical Analysis, Department of Veterinary Public Health and Food Safety, Faculty of Veterinary Medicine
[2] Ghent University,Laboratory of Plant Ecology, Department of Applied Ecology and Plant Biology, Faculty of Bioscience Engineering
来源
Metabolomics | 2015年 / 11卷
关键词
Metabolomics; Tomato; Carotenoids; Phytohormones; Metabolism;
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中图分类号
学科分类号
摘要
Carotenoids are important secondary metabolites, which have been recognized as an essential component of the human diet because of their valuable beneficial health effects. With this rationale, there is a continuous aim to define the distribution of these compounds in plants, to better understand their metabolism and to increase their concentration levels in fruits and vegetables. This study aimed at deepening the knowledge on the regulatory role of phytohormones in carotenoid metabolism. More specifically, it was envisaged to reveal the phytohormones involved in the metabolism of α-carotene, β-carotene, lycopene, lutein and zeaxanthin. To this purpose, the phytohormone profiles of 50 tomato fruits were determined by high-resolution Orbitrap mass spectrometry and evaluated towards the associated carotenoid levels. Data mining was performed by differential expression and orthogonal partial least squares analyses. This metabolomics approach revealed 5 phytohormonal metabolites, which significantly influenced (Variable Importance in Projection scores ≥0.80) carotenoid metabolism. These metabolites were identified as cis-12-oxo-phytodienoic acid, cucurbic acid, 2-oxindole-3-acetic acid, 1-acetylindole-3-carboxaldehyde, and cis-zeatin-O-glucoside. The involvement of the individual phytohormones towards carotenoid metabolism was investigated by regression analysis (P values ≤0.05, R2 varying between 0.280 and 0.760) and statistical correlation (P values ≤0.01, correlation varying between 0.403 and 0.846). It was concluded that these phytohormones all have significant contributing value in the regulation of carotenoid metabolism, thereby exhibiting down- and up-regulating influences. As a result, this knowledge encloses the potential for improving tomato fruit nutritional quality by targeted control of agronomic conditions, exogenous use of plant bioregulators, or genetic engineering.
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页码:667 / 683
页数:16
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  • [1] Allwood J(2010)An introduction to liquid chromatography-mass spectrometry instrumentation applied in metabolomic analyses Phytochemical Analysis 21 33-47
  • [2] Goodacre R(1995)Plant carotenoids: Pigments for photoprotection, visual attraction, and human health The Plant Cell 7 1027-1038
  • [3] Bartley GE(2008)Current and emerging mass-spectrometry technologies for metabolomics Trends in Analytical Chemistry 27 238-250
  • [4] Scolnik PA(2013)Unravelling ionization and fragmentation pathways of carotenoids using orbitrap technology: a first step towards identification of unknowns Journal of Mass Spectrometry 48 740-754
  • [5] Bedair M(2008)Plant oxylipins: Plant responses to 12-oxo-phytodienoic acid are governed by its specific structural and functional properties The FEBS Journal 276 4693-4704
  • [6] Sumner L(2002)Regulation of carotenoid formation during tomato fruit ripening and development Journal of Experimental Botany 53 2107-2113
  • [7] Bijttebier SKA(2005)Indirect estimation of lycopene concentration in fruits of tomato genotypes viachromaticity values Horticultura Brasileira 23 819-825
  • [8] D’Hondt E(2010)Source to sink: Regulation of carotenoid biosynthesis in plants Trends in Plant Science 15 1360-1385
  • [9] Hermans N(2001)Metabolism of indole-3-acetic acid by orange ( Phytochemistry 57 179-187
  • [10] Apers S(2009) flavedo tissue during fruit development Analytica Chimica Acta 650 3-9