scholarly article | Q13442814 |
P2093 | author name string | Jane L Ward | |
Michael H Beale | |||
Malcolm J Hawkesford | |||
John M Baker | |||
Saroj Parmar | |||
Paul J Verrier | |||
Nathan D Hawkins | |||
Peter B Barraclough | |||
Sonia J Miller | |||
Aimee M Galster | |||
Jonathan R Howarth | |||
Delia-Irina Corol | |||
Caroline E Shepherd | |||
Janina Jones | |||
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Molecular and biochemical analysis of the enzymes of cysteine biosynthesis in the plant Arabidopsis thaliana. | Q34706051 | ||
PATHWAYS AND REGULATION OF SULFUR METABOLISM REVEALED THROUGH MOLECULAR AND GENETIC STUDIES. | Q35687112 | ||
Control of sulphate assimilation and glutathione synthesis: interaction with N and C metabolism | Q35852078 | ||
Can less yield more? Is reducing nutrient input into the environment compatible with maintaining crop production? | Q35963329 | ||
Physiology and biochemistry of source-regulated protein accumulation in the wheat grain | Q36475619 | ||
A NAC Gene regulating senescence improves grain protein, zinc, and iron content in wheat | Q36533466 | ||
Systems approach identifies an organic nitrogen-responsive gene network that is regulated by the master clock control gene CCA1 | Q36534251 | ||
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S-methylmethionine plays a major role in phloem sulfur transport and is synthesized by a novel type of methyltransferase | Q42607976 | ||
Sulphur nutrition affects delivery and metabolism of S in developing endosperms of wheat | Q43678758 | ||
Isotopic study of post-anthesis foliar incorporation of sulphur and nitrogen in wheat | Q43816759 | ||
Principal transcriptional programs regulating plant amino acid metabolism in response to abiotic stresses | Q43945485 | ||
The high grain protein content gene Gpc-B1 accelerates senescence and has pleiotropic effects on protein content in wheat | Q43948205 | ||
Transcriptome analysis of sulfur depletion in Arabidopsis thaliana: interlacing of biosynthetic pathways provides response specificity | Q44331914 | ||
Physiological characterization of 'stay green' mutants in durum wheat | Q44412942 | ||
The two nitrogen mobilisation- and senescence-associated GS1 and GDH genes are controlled by C and N metabolites | Q45227275 | ||
Senescence-associated vacuoles with intense proteolytic activity develop in leaves of Arabidopsis and soybean | Q45294960 | ||
Changes in the cellular and subcellular localization of glutamine synthetase and glutamate dehydrogenase during flag leaf senescence in wheat (Triticum aestivum L.). | Q46445916 | ||
Comparative transcriptome analysis reveals significant differences in gene expression and signalling pathways between developmental and dark/starvation-induced senescence in Arabidopsis | Q46462448 | ||
Nitrogen redistribution during grain growth in wheat (Triticum aestivum L.) : III. Enzymology and transport of amino acids from senescing flag leaves | Q47708377 | ||
Two cytosolic glutamine synthetase isoforms of maize are specifically involved in the control of grain production. | Q48083166 | ||
Characterization of the sink/source transition in tobacco ( Nicotiana tabacum L.) shoots in relation to nitrogen management and leaf senescence | Q52164383 | ||
Identification of a promoter region responsible for the senescence-specific expression of SAG12. | Q52172884 | ||
Phloem loading and unloading of sugars and amino acids | Q56639601 | ||
Variation in the Breadmaking Quality and Rheological Properties of Wheat in Relation to Sulphur Nutrition under Field Conditions | Q59107762 | ||
Formation of High Levels of Acrylamide during the Processing of Flour Derived from Sulfate-Deprived Wheat | Q61948463 | ||
Assessment of 1H NMR spectroscopy and multivariate analysis as a technique for metabolite fingerprinting of Arabidopsis thaliana | Q73010089 | ||
Regulation of sulfate assimilation by nitrogen in Arabidopsis | Q73537151 | ||
SO42- Deprivation Has an Early Effect on the Content of Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase and Photosynthesis in Young Leaves of Wheat | Q74770894 | ||
Carbon and amino acids reciprocally modulate the expression of glutamine synthetase in Arabidopsis | Q78247128 | ||
P433 | issue | 13 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | wheat | Q15645384 |
P304 | page(s) | 3675-3689 | |
P577 | publication date | 2008-09-12 | |
P1433 | published in | Journal of Experimental Botany | Q6295179 |
P1476 | title | Co-ordinated expression of amino acid metabolism in response to N and S deficiency during wheat grain filling | |
P478 | volume | 59 |
Q34164219 | An Integrated Approach to Crop Genetic ImprovementF |
Q90266215 | Biochemical Characterization of the Fusarium graminearum Candidate ACC-Deaminases and Virulence Testing of Knockout Mutant Strains |
Q47110642 | Characterization of the Wheat Leaf Metabolome during Grain Filling and under Varied N-Supply |
Q54289089 | Comparative Transcriptome Profiling in Winter Wheat Grown under Different Agricultural Practices |
Q50743443 | Comprehensive dissection of spatiotemporal metabolic shifts in primary, secondary, and lipid metabolism during developmental senescence in Arabidopsis |
Q51388149 | Consumption of wheat aleurone-rich foods increases fasting plasma betaine and modestly decreases fasting homocysteine and LDL-cholesterol in adults |
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Q34428514 | Effect of breadmaking process on in vitro gut microbiota parameters in irritable bowel syndrome |
Q36395783 | Effect of irrigation and nitrogen application on grain amino acid composition and protein quality in winter wheat. |
Q43861473 | Evaluation of the effect of wheat aleurone-rich foods on markers of antioxidant status, inflammation and endothelial function in apparently healthy men and women. |
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Q48215622 | Time-dependent distribution of sulphur, sulphate and glutathione in wheat tissues and grain as affected by three sulphur fertilization levels and late S fertilization |
Q39629798 | Transcriptional and physiological changes in the S assimilation pathway due to single or combined S and Fe deprivation in durum wheat (Triticum durum L.) seedlings. |
Q33682720 | Transcriptomic response of durum wheat to nitrogen starvation |
Q42277382 | Use of the growing environment as a source of variation to identify the quantitative trait transcripts and modules of co-expressed genes that determine chlorogenic acid accumulation |
Q34977252 | Wheat |
Q34992418 | iTRAQ-based quantitative proteome and phosphoprotein characterization reveals the central metabolism changes involved in wheat grain development |
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