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Novel Approach for Nontargeted Data Analysis for Metabolomics. Large-Scale Profiling of Tomato Fruit Volatiles
by
Tikunov, Yury
, Bovy, Arnaud G
, Bino, Raoul J
, Hall, Robert D
, Verhoeven, Harrie A
, Lommen, Arjen
, Vos, C.H. Ric de
in
Agronomy. Soil science and plant productions
/ Automation
/ biochemical pathways
/ Biological and medical sciences
/ Breakthrough Technologies
/ chemical analysis
/ chemistry
/ chemometric analysis
/ chromatography-mass spectrometry
/ computer software
/ Data analysis
/ Datasets
/ Economic plant physiology
/ flavor volatiles
/ Fructification, ripening. Postharvest physiology
/ Fruit
/ Fruit - chemistry
/ Fruit - metabolism
/ Fruits
/ fruits (plant anatomy)
/ Fundamental and applied biological sciences. Psychology
/ gas chromatography
/ Gas Chromatography-Mass Spectrometry
/ genetics
/ Genotype
/ Genotypes
/ Growth and development
/ identification
/ Lycopersicon esculentum
/ Lycopersicon esculentum - chemistry
/ Lycopersicon esculentum - genetics
/ Lycopersicon esculentum - metabolism
/ Mass spectra
/ mass spectrometry
/ Mass spectroscopy
/ Metabolism
/ Metabolites
/ metabolome
/ Metabolomics
/ methyl salicylate
/ multivariate analysis
/ organization
/ plant biochemistry
/ plant functional genomics
/ Plant Structures
/ Plant Structures - chemistry
/ Plant Structures - metabolism
/ Plants
/ rapid analysis
/ ripening
/ Solanum lycopersicum
/ Solanum lycopersicum var. lycopersicum
/ solid-phase microextraction
/ Statistics as Topic
/ tomatoes
/ volatile compounds
/ Volatilization
2005
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Novel Approach for Nontargeted Data Analysis for Metabolomics. Large-Scale Profiling of Tomato Fruit Volatiles
by
Tikunov, Yury
, Bovy, Arnaud G
, Bino, Raoul J
, Hall, Robert D
, Verhoeven, Harrie A
, Lommen, Arjen
, Vos, C.H. Ric de
in
Agronomy. Soil science and plant productions
/ Automation
/ biochemical pathways
/ Biological and medical sciences
/ Breakthrough Technologies
/ chemical analysis
/ chemistry
/ chemometric analysis
/ chromatography-mass spectrometry
/ computer software
/ Data analysis
/ Datasets
/ Economic plant physiology
/ flavor volatiles
/ Fructification, ripening. Postharvest physiology
/ Fruit
/ Fruit - chemistry
/ Fruit - metabolism
/ Fruits
/ fruits (plant anatomy)
/ Fundamental and applied biological sciences. Psychology
/ gas chromatography
/ Gas Chromatography-Mass Spectrometry
/ genetics
/ Genotype
/ Genotypes
/ Growth and development
/ identification
/ Lycopersicon esculentum
/ Lycopersicon esculentum - chemistry
/ Lycopersicon esculentum - genetics
/ Lycopersicon esculentum - metabolism
/ Mass spectra
/ mass spectrometry
/ Mass spectroscopy
/ Metabolism
/ Metabolites
/ metabolome
/ Metabolomics
/ methyl salicylate
/ multivariate analysis
/ organization
/ plant biochemistry
/ plant functional genomics
/ Plant Structures
/ Plant Structures - chemistry
/ Plant Structures - metabolism
/ Plants
/ rapid analysis
/ ripening
/ Solanum lycopersicum
/ Solanum lycopersicum var. lycopersicum
/ solid-phase microextraction
/ Statistics as Topic
/ tomatoes
/ volatile compounds
/ Volatilization
2005
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Novel Approach for Nontargeted Data Analysis for Metabolomics. Large-Scale Profiling of Tomato Fruit Volatiles
by
Tikunov, Yury
, Bovy, Arnaud G
, Bino, Raoul J
, Hall, Robert D
, Verhoeven, Harrie A
, Lommen, Arjen
, Vos, C.H. Ric de
in
Agronomy. Soil science and plant productions
/ Automation
/ biochemical pathways
/ Biological and medical sciences
/ Breakthrough Technologies
/ chemical analysis
/ chemistry
/ chemometric analysis
/ chromatography-mass spectrometry
/ computer software
/ Data analysis
/ Datasets
/ Economic plant physiology
/ flavor volatiles
/ Fructification, ripening. Postharvest physiology
/ Fruit
/ Fruit - chemistry
/ Fruit - metabolism
/ Fruits
/ fruits (plant anatomy)
/ Fundamental and applied biological sciences. Psychology
/ gas chromatography
/ Gas Chromatography-Mass Spectrometry
/ genetics
/ Genotype
/ Genotypes
/ Growth and development
/ identification
/ Lycopersicon esculentum
/ Lycopersicon esculentum - chemistry
/ Lycopersicon esculentum - genetics
/ Lycopersicon esculentum - metabolism
/ Mass spectra
/ mass spectrometry
/ Mass spectroscopy
/ Metabolism
/ Metabolites
/ metabolome
/ Metabolomics
/ methyl salicylate
/ multivariate analysis
/ organization
/ plant biochemistry
/ plant functional genomics
/ Plant Structures
/ Plant Structures - chemistry
/ Plant Structures - metabolism
/ Plants
/ rapid analysis
/ ripening
/ Solanum lycopersicum
/ Solanum lycopersicum var. lycopersicum
/ solid-phase microextraction
/ Statistics as Topic
/ tomatoes
/ volatile compounds
/ Volatilization
2005
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Novel Approach for Nontargeted Data Analysis for Metabolomics. Large-Scale Profiling of Tomato Fruit Volatiles
Journal Article
Novel Approach for Nontargeted Data Analysis for Metabolomics. Large-Scale Profiling of Tomato Fruit Volatiles
2005
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Overview
To take full advantage of the power of functional genomics technologies and in particular those for metabolomics, both the analytical approach and the strategy chosen for data analysis need to be as unbiased and comprehensive as possible. Existing approaches to analyze metabolomic data still do not allow a fast and unbiased comparative analysis of the metabolic composition of the hundreds of genotypes that are often the target of modern investigations. We have now developed a novel strategy to analyze such metabolomic data. This approach consists of (1) full mass spectral alignment of gas chromatography (GC)-mass spectrometry (MS) metabolic profiles using the MetAlign software package, (2) followed by multivariate comparative analysis of metabolic phenotypes at the level of individual molecular fragments, and (3) multivariate mass spectral reconstruction, a method allowing metabolite discrimination, recognition, and identification. This approach has allowed a fast and unbiased comparative multivariate analysis of the volatile metabolite composition of ripe fruits of 94 tomato (Lycopersicon esculentum Mill.) genotypes, based on intensity patterns of >20,000 individual molecular fragments throughout 198 GC-MS datasets. Variation in metabolite composition, both between- and within-fruit types, was found and the discriminative metabolites were revealed. In the entire genotype set, a total of 322 different compounds could be distinguished using multivariate mass spectral reconstruction. A hierarchical cluster analysis of these metabolites resulted in clustering of structurally related metabolites derived from the same biochemical precursors. The approach chosen will further enhance the comprehensiveness of GC-MS-based metabolomics approaches and will therefore prove a useful addition to nontargeted functional genomics research.
Publisher
American Society of Plant Biologists,American Society of Plant Physiologists
Subject
Agronomy. Soil science and plant productions
/ Biological and medical sciences
/ chromatography-mass spectrometry
/ Datasets
/ Fructification, ripening. Postharvest physiology
/ Fruit
/ Fruits
/ Fundamental and applied biological sciences. Psychology
/ Gas Chromatography-Mass Spectrometry
/ genetics
/ Genotype
/ Lycopersicon esculentum - chemistry
/ Lycopersicon esculentum - genetics
/ Lycopersicon esculentum - metabolism
/ Plant Structures - chemistry
/ Plant Structures - metabolism
/ Plants
/ ripening
/ Solanum lycopersicum var. lycopersicum
/ tomatoes
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