scholarly article | Q13442814 |
P50 | author | Rainer Hoefgen | Q64482011 |
Victoria J Nikiforova | Q114736588 | ||
P2093 | author name string | Stefan Kempa | |
Holger Hesse | |||
Jens Freitag | |||
Monika Adamik | |||
P2860 | cites work | Selection and Characterization of [alpha]-Methyltryptophan-Resistant Lines of Lemna gibba Showing a Rapid Rate of Indole-3-Acetic Acid Turnover | Q52354804 |
Sucrose Modulation of Soybean Vsp Gene Expression Is Inhibited by Auxin | Q74789420 | ||
P433 | issue | 4 | |
P921 | main subject | Arabidopsis thaliana | Q158695 |
transcriptome | Q252857 | ||
P304 | page(s) | 633-650 | |
P577 | publication date | 2003-02-01 | |
P1433 | published in | The Plant Journal | Q15766987 |
P1476 | title | Transcriptome analysis of sulfur depletion in Arabidopsis thaliana: interlacing of biosynthetic pathways provides response specificity | |
P478 | volume | 33 |
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Q26801728 | Ethylene and the Regulation of Physiological and Morphological Responses to Nutrient Deficiencies |
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Q39934763 | Functional analysis of Arabidopsis mutants points to novel roles for glutathione in coupling H(2)O(2) to activation of salicylic acid accumulation and signaling. |
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Q39544299 | Genome-wide identification and expression analysis of sulfate transporter (SULTR) genes in potato (Solanum tuberosum L.). |
Q36935730 | Getting to the roots of it: Genetic and hormonal control of root architecture |
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Q37335361 | Glucosinolates in Brassica vegetables: the influence of the food supply chain on intake, bioavailability and human health. |
Q37903382 | Glutathione in plants: an integrated overview. |
Q36331491 | Glutathione, photosynthesis and the redox regulation of stress-responsive gene expression |
Q30412518 | Glutathione. |
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Q38711506 | Hormonal control of sulfate uptake and assimilation |
Q42110999 | How does sulphur availability modify N acquisition of white clover (Trifolium repens L.)? |
Q39002589 | Immunolocalization of cell wall polymers in grapevine (Vitis vinifera) internodes under nitrogen, phosphorus or sulfur deficiency |
Q45280695 | Impact of reduced O-acetylserine(thiol)lyase isoform contents on potato plant metabolism |
Q36257978 | Improving the levels of essential amino acids and sulfur metabolites in plants |
Q38943059 | Increased glutathione contributes to stress tolerance and global translational changes in Arabidopsis. |
Q52564621 | Integrative Transcriptomic Analysis Uncovers Novel Gene Modules That Underlie the Sulfate Response in Arabidopsis thaliana. |
Q57908329 | Integrative gene-metabolite network with implemented causality deciphers informational fluxes of sulphur stress response |
Q87274620 | Interactive effects of sulfur and chromium on antioxidative defense systems and BnMP1 gene expression in canola (Brassica napus L.) cultivars differing in Cr(VI) tolerance |
Q54604638 | Interplay of SLIM1 and miR395 in the regulation of sulfate assimilation in Arabidopsis |
Q33603983 | Isolation and characterization of low-sulphur-tolerant mutants of Arabidopsis |
Q33515606 | Isolation of a low-sulfur tolerance gene from Eichhornia crassipes using a functional gene-mining approach |
Q33358388 | L-Cysteine inhibits root elongation through auxin/PLETHORA and SCR/SHR pathway in Arabidopsis thaliana |
Q33719578 | LSU network hubs integrate abiotic and biotic stress responses via interaction with the superoxide dismutase FSD2 |
Q48168228 | Large Cellular Inclusions Accumulate in Arabidopsis Roots Exposed to Low-Sulfur Conditions. |
Q45802356 | Legume adaptation to sulfur deficiency revealed by comparing nutrient allocation and seed traits in Medicago truncatula |
Q26773113 | Links Between Ethylene and Sulfur Nutrition-A Regulatory Interplay or Just Metabolite Association? |
Q43947426 | Local and systemic regulation of sulfur homeostasis in roots of Arabidopsis thaliana |
Q46710871 | Localization and function of SulP, a nuclear-encoded chloroplast sulfate permease in Chlamydomonas reinhardtii |
Q36642372 | Managing sulphur metabolism in plants |
Q38370335 | Metabolic responses to sulfur dioxide in grapevine (Vitis vinifera L.): photosynthetic tissues and berries |
Q35767364 | Molecular analysis and control of cysteine biosynthesis: integration of nitrogen and sulphur metabolism. |
Q34850889 | Morphological and proteomic responses of Eruca sativa exposed to silver nanoparticles or silver nitrate |
Q48186794 | NO3- , PO43- and SO42- deprivation reduced LKT1-mediated low-affinity K+ uptake and SKOR-mediated K+ translocation in tomato and Arabidopsis plants. |
Q38530654 | NPKS uptake, sensing, and signaling and miRNAs in plant nutrient stress |
Q42617796 | Natural variation in the ATPS1 isoform of ATP sulfurylase contributes to the control of sulfate levels in Arabidopsis |
Q37785403 | New Insights into the Shikimate and Aromatic Amino Acids Biosynthesis Pathways in Plants |
Q57661824 | Nicotiana tabacum EIL2 directly regulates expression of at least one tobacco gene induced by sulphur starvation |
Q57259933 | Nutritional regulation of ANR1 and other root-expressed MADS-box genes in Arabidopsis thaliana |
Q36539130 | On the way to understand biological complexity in plants: S-nutrition as a case study for systems biology |
Q46729742 | Oxidative pentose phosphate pathway-dependent sugar sensing as a mechanism for regulation of root ion transporters by photosynthesis |
Q48089679 | Phloem-Specific Methionine Recycling Fuels Polyamine Biosynthesis in a Sulfur-Dependent Manner and Promotes Flower and Seed Development |
Q51299148 | Phosphate Deficiency Induces the Jasmonate Pathway and Enhances Resistance to Insect Herbivory |
Q42624327 | Phosphoinositide 5-phosphate and phosphoinositide 4-phosphate trigger distinct specific responses of Arabidopsis genes: genome-wide expression analyses |
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Q37238424 | Plant hormones and nutrient signaling. |
Q26771923 | Plant sulfur and Big Data |
Q26797485 | Plant sulfur nutrition: From Sachs to Big Data |
Q26781808 | Plant transcriptomics and responses to environmental stress: an overview |
Q48078014 | Posttranscriptional regulation of high-affinity sulfate transporters in Arabidopsis by sulfur nutrition |
Q33654805 | Potassium deficiency induces the biosynthesis of oxylipins and glucosinolates in Arabidopsis thaliana |
Q42772636 | RNA-seq analysis of sulfur-deprived Chlamydomonas cells reveals aspects of acclimation critical for cell survival |
Q38243992 | Reactivity and stability of glucosinolates and their breakdown products in foods |
Q37772018 | Recent progress in plant nutrition research: cross-talk between nutrients, plant physiology and soil microorganisms. |
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Q33579419 | Regulation of sulfate assimilation in Arabidopsis and beyond |
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Q37749053 | Regulation of sulfate transport and assimilation in plants |
Q37282149 | Remobilization of leaf S compounds and senescence in response to restricted sulphate supply during the vegetative stage of oilseed rape are affected by mineral N availability |
Q34163756 | Responsibility of regulatory gene expression and repressed protein synthesis for triacylglycerol accumulation on sulfur-starvation in Chlamydomonas reinhardtii |
Q45999358 | Role of SulP, a nuclear-encoded chloroplast sulfate permease, in sulfate transport and H2 evolution in Chlamydomonas reinhardtii. |
Q36321890 | Selenium uptake, translocation, assimilation and metabolic fate in plants |
Q36358420 | Significance of flavonoids in plant resistance and enhancement of their biosynthesis |
Q37352502 | Specific functions of individual class III peroxidase genes |
Q43172338 | SuMoToRI, an Ecophysiological Model to Predict Growth and Sulfur Allocation and Partitioning in Oilseed Rape (Brassica napus L.) Until the Onset of Pod Formation. |
Q58783903 | Sulfate Metabolism in C Species Is Controlled by the Root and Connected to Serine Biosynthesis |
Q58831246 | Sulfur Nutrition of Oil Palm for Enhancing Oil Yield in Tropics |
Q34563070 | Sulfur assimilation and the role of sulfur in plant metabolism: a survey |
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Q37321601 | Sulfur deficiency-induced repressor proteins optimize glucosinolate biosynthesis in plants |
Q33358452 | Sulfur nutrient availability regulates root elongation by affecting root indole-3-acetic acid levels and the stem cell niche |
Q51628050 | Sulfur starvation and restoration affect nitrate uptake and assimilation in rapeseed. |
Q48204431 | Sulfur-Responsive Elements in the 3'-Nontranscribed Intergenic Region Are Essential for the Induction of SULFATE TRANSPORTER 2;1 Gene Expression in Arabidopsis Roots under Sulfur Deficiency |
Q58418622 | Sulphur dioxide evokes a large scale reprogramming of the grape berry transcriptome associated with oxidative signalling and biotic defence responses |
Q33577782 | Sulphur flux through the sulphate assimilation pathway is differently controlled by adenosine 5'-phosphosulphate reductase under stress and in transgenic poplar plants overexpressing gamma-ECS, SO, or APR |
Q35807934 | Sulphur limitation and early sulphur deficiency responses in poplar: significance of gene expression, metabolites, and plant hormones |
Q34580475 | Sulphur limitation provokes physiological and leaf proteome changes in oilseed rape that lead to perturbation of sulphur, carbon and oxidative metabolisms |
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Q33567220 | Sultr4;1 mutant seeds of Arabidopsis have an enhanced sulphate content and modified proteome suggesting metabolic adaptations to altered sulphate compartmentalization |
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Q46440424 | Systems rebalancing of metabolism in response to sulfur deprivation, as revealed by metabolome analysis of Arabidopsis plants |
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Q48124154 | The Interplay between Sulfur and Iron Nutrition in Tomato. |
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Q36939799 | The effect of sulfur nutrition on plant glucosinolate content: physiology and molecular mechanisms. |
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Q34608265 | Transcriptional responses of Medicago truncatula upon sulfur deficiency stress and arbuscular mycorrhizal symbiosis. |
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Q33594298 | Transcriptome profiling of sulfate deprivation responses in two agarophytes Gracilaria changii and Gracilaria salicornia (Rhodophyta). |
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