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Titlebook: Sulfur Metabolism in Plants; Mechanisms and Appli Luit J. De Kok,Linda Tabe,Ewald Schnug Conference proceedings 2012 Springer Science+Busin

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Regulation of Expression of Sulfate Transporters and APS Reductase in Leaf Tissue of Chinese Cabbager 24 h in the light. Sultr4;1 was the sole constitutively expressed sulfate transporter present in sulfur-sufficient leaf discs and its expression was enhanced upon incubation at ≤8 mM and decreased at higher sulfate concentrations. Leaf discs from sulfate-deprived plants were characterized by a hig
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Response of Amino Acid Metabolism to Sulfur Starvation in , sp. PCC 6803itions. We investigated this metabolic regulation under sulfur starvation with a focus on amino acid metabolism. Gas chromatography–mass spectrometry (GC-MS) was used to quantify amino acid contents. The results revealed sulfur deprivation-induced temporal changes in the amount of free amino acids i
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Regulation of the Uptake of Sulfate by Chinese Cabbage , at Various Sulfate Concentrations in the Ron its growth even at 5 and 10 μM, concentrations close to the Km of the Group 1 high affinity sulfate transporters. The sulfate uptake capacity of the roots was up-regulated at ≤25 μM sulfate, however, the expression of Sultr1;2, the primary sulfate transporter abundant in the root of Chinese cabbag
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Characterization of Adenosine 5′-Phospho-Sulfate Kinase (,) Genes from Higher Plantsreduced sulfur-containing compounds, which characterize its flavor while glucosinolates and their derivatives accumulate in Brassica species including broccoli. A significant branchpoint in the S-assimilation pathway is catalyzed by adenosine 5′-phosphosulfate (APS) kinase (APSK) which phosphorylate
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Sulfate Uptake, Cysteine and GSH Contents Are Increased by 5-Aminolevulinic Acid in ,on and nitrogen assimilation are promoted by ALA in plants, but the effect on other metabolic pathway has not been elucidated. In this study, we analyzed the effect of ALA on sulfur assimilation. Treatment with 0.3 and 1 mmol. ALA significantly increased the sulfate uptake and the transcript levels
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Interaction Between Atmospheric and Pedospheric Sulfur Nutrition in ,oots is limited. In . seedlings there was a direct interaction between atmospheric H.S exposure and the uptake of sulfate by the root. At an ample sulfate supply, exposure of . to 0.2 μl l. H.S for 1 week resulted in a decrease of the sulfate uptake capacity of the root (up to 70%). Sulfate deprivat
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