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Titlebook: Sulfur Assimilation and Abiotic Stress in Plants; Nafees A. Khan,Sarvajeet Singh,Shahid Umar Book 2008 Springer-Verlag Berlin Heidelberg 2

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Glutathione Metabolism in Bryophytes under Abiotic Stress,he cells of plants under abiotic stress. Although numerous studies have investigated the impact of abiotic stress on the cells of higher plants, far fewer studies have investigated the impact on the cells of bryophytes. In this chapter the importance of glutathione for the survival of bryophytes exposed to selected abiotic stressors is discussed.
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Sulfur Nutrition and Assimilation in Crop Plants,h S-deficiency and increase in the environment (Air pollution). Plant responses to S-supply are examined. The importance of sulfur assimilation pathways, which have pivotal role in influencing plant S-metabolism, is discussed.
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nts necessary for the plant life cycle. Its assimilation in higher plants and its reduction in metabolically important sulfur compounds are crucial factors determining plant growth and vigor and resistance to stresses. The range of biological compounds that contain sulfur is wide. The information on
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Feasibility of Elemental S Fertilizers for Optimum Seed Yield and Quality of Canola in the Parklandd moisture until lack of aeration above field capacity inhibits S oxidation. Oxidation of elemental S to sulfate-S is positively related to pH, organic matter content, nutrient- supplying power, and microbial activity, while it is inversely related to clay content of soil. Techniques that increase t
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Impact of Sulfur on N2 Fixation of Legumes,lement in plant nutrition. With legumes, limitation of S can reduce N. fixation by affecting nodule development and function. The present report deals with the influence of S on yield formation and N. fixation of legumes and tries to explain the lower yield formation and reduced N. fixation of S-sta
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Regulatory Protein-Protein Interactions in Primary Metabolism: The Case of the Cysteine Synthase Conorganic sulfur from the environment into the metabolic precursor for cellular thiol- containing compounds. A key regulatory feature of this process is the physical association of the two enzymes involved in cysteine biosynthesis (serine acetyltransferase, SAT, and O-acetylserine sulfhydrylase, OASS
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