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Plant Physiol ; 171(1): 25-41, 2016 05.
Article in English | MEDLINE | ID: mdl-26966172

ABSTRACT

Here, we demonstrate whole-plant metabolic profiling by stable isotope labeling and combustion isotope-ratio mass spectrometry for precise quantification of assimilation, translocation, and molecular reallocation of (13)CO2 and (15)NH4NO3 The technology was applied to rice (Oryza sativa) plants at different growth stages. For adult plants, (13)CO2 labeling revealed enhanced carbon assimilation of the flag leaf from flowering to late grain-filling stage, linked to efficient translocation into the panicle. Simultaneous (13)CO2 and (15)NH4NO3 labeling with hydroponically grown seedlings was used to quantify the relative distribution of carbon and nitrogen. Two hours after labeling, assimilated carbon was mainly retained in the shoot (69%), whereas 7% entered the root and 24% was respired. Nitrogen, taken up via the root, was largely translocated into the shoot (85%). Salt-stressed seedlings showed decreased uptake and translocation of nitrogen (69%), whereas carbon metabolism was unaffected. Coupled to a gas chromatograph, labeling analysis provided enrichment of proteinogenic amino acids. This revealed significant protein synthesis in the panicle of adult plants, whereas protein biosynthesis in adult leaves was 8-fold lower than that in seedling shoots. Generally, amino acid enrichment was similar among biosynthetic families and allowed us to infer labeling dynamics of their precursors. On this basis, early and strong (13)C enrichment of Embden-Meyerhof-Parnas pathway and pentose phosphate pathway intermediates indicated high activity of these routes. Applied to mode-of-action analysis of herbicides, the approach showed severe disturbance in the synthesis of branched-chain amino acids upon treatment with imazapyr. The established technology displays a breakthrough for quantitative high-throughput plant metabolic phenotyping.


Subject(s)
High-Throughput Screening Assays/methods , Isotope Labeling/methods , Metabolome , Oryza/metabolism , Oryza/physiology , Amino Acids/metabolism , Amino Acids, Branched-Chain/drug effects , Amino Acids, Branched-Chain/metabolism , Carbon/chemistry , Carbon/metabolism , Carbon Dioxide/chemistry , Carbon Isotopes/chemistry , Carbon Isotopes/metabolism , Cell Respiration , Chromatography, Gas , Glycolysis , Herbicides/pharmacology , Hydroponics/methods , Imidazoles/pharmacology , Mass Spectrometry , Metabolic Networks and Pathways/drug effects , Metabolic Networks and Pathways/physiology , Metabolomics , Niacin/analogs & derivatives , Niacin/pharmacology , Nitrates/chemistry , Nitrogen/chemistry , Nitrogen/metabolism , Nitrogen Isotopes/chemistry , Nitrogen Isotopes/metabolism , Oryza/drug effects , Oryza/growth & development , Pentose Phosphate Pathway , Plant Leaves/metabolism , Plant Proteins/analysis , Plant Proteins/metabolism , Plant Roots/metabolism , Plant Shoots/metabolism , Salts/metabolism , Seedlings/drug effects , Seedlings/metabolism
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