The metabolic flux phenotype of heterotrophic Arabidopsis cells reveals a complex response to changes in nitrogen supply.
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Plant metabolic modeling: achieving new insight into metabolism and metabolic engineeringAnalysis of isotopic labeling in peptide fragments by tandem mass spectrometryIntegration of transcriptomics and metabolomics data specifies the metabolic response of Chlamydomonas to rapamycin treatment.Linking metabolomics data to underlying metabolic regulation.Isotopically nonstationary 13C flux analysis of changes in Arabidopsis thaliana leaf metabolism due to high light acclimationEffects of varying nitrogen sources on amino acid synthesis costs in Arabidopsis thaliana under different light and carbon-source conditions.Quantitative proteomics reveals the importance of nitrogen source to control glucosinolate metabolism in Arabidopsis thaliana and Brassica oleracea.Quantification of peptide m/z distributions from 13C-labeled cultures with high-resolution mass spectrometry.Nitrogen-use efficiency in maize (Zea mays L.): from 'omics' studies to metabolic modelling.Fluxes through plant metabolic networks: measurements, predictions, insights and challenges.Interactions between nitrate and ammonium in their uptake, allocation, assimilation, and signaling in plants.Fluxomics links cellular functional analyses to whole-plant phenotyping.Lipogenesis and Redox Balance in Nitrogen-Fixing Pea Bacteroids.Characterization of metabolic states of Arabidopsis thaliana under diverse carbon and nitrogen nutrient conditions via targeted metabolomic analysis.Flux and reflux: metabolite reflux in plant suspension cells and its implications for isotope-assisted metabolic flux analysis.Cell-Type Specific Metabolic Flux Analysis: A Challenge for Metabolic Phenotyping and a Potential Solution in Plants.Assessing Metabolic Flux in Plants with Radiorespirometry.The Arabidopsis thiamin-deficient mutant pale green1 lacks thiamin monophosphate phosphatase of the vitamin B1 biosynthesis pathway.Gene chip analysis of Arabidopsis thaliana genomic DNA methylation and gene expression in response to carbendazim.The metabolic flux phenotype of heterotrophic Arabidopsis cells reveals a flexible balance between the cytosolic and plastidic contributions to carbohydrate oxidation in response to phosphate limitation.A method for accounting for maintenance costs in flux balance analysis improves the prediction of plant cell metabolic phenotypes under stress conditions.The intertwined metabolism during symbiotic nitrogen fixation elucidated by metabolic modelling
P2860
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P2860
The metabolic flux phenotype of heterotrophic Arabidopsis cells reveals a complex response to changes in nitrogen supply.
description
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name
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@en
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@nl
type
label
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@en
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@nl
prefLabel
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@en
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@nl
P2093
P2860
P356
P1433
P1476
The metabolic flux phenotype o ...... to changes in nitrogen supply.
@en
P2093
Nicholas J Kruger
R George Ratcliffe
Shyam K Masakapalli
P2860
P304
P356
10.1111/TPJ.12142
P577
2013-02-28T00:00:00Z