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Results 1 - 10 of 262 > >>
EC Number
Substrates
Commentary Substrates
Organism
Products
Commentary (Products)
Reversibility
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L-sorbose, 5-keto-D-fructose, D-tagatose, fructose 6-phosphate, levanbiose can replace fructose to a small extent, no glucosyl acceptors are D-xylulose, L-rhamnulose, D-glucoheptulose, D-mannoheptulose, turanose, inulobiose, melibiulose, lactulose, cellobiulose, 3,4-di-O-methylfructose, dihydroxyacetone, pyruvate
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it is possible that sucrose synthase provides monosaccharide precursors for mucilage synthesis
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it is supposed that the sucrose synthase activity in sugar-beet roots is controlled by sucrose synthesized in leaves rather than by phytohormones
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mtSUS plays a non-sucrolytic role
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sucrose synthase appears to be largely responsible for feeding assimilated carbon into sink metabolism
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sucrose synthase appears to be largely responsible for feeding assimilated carbon into sink metabolism
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sucrose synthase appears to be largely responsible for feeding assimilated carbon into sink metabolism. SH1 isozyme preferentially provides the substrate for cellulose biosynthesis, whereas SUS1 generates precursors for starch biosynthesis
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SUS2 may function to regulate SUS1 membrane association by formation of SUS1–SUS2 hetero-oligomers
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nitrogen fixation can occur in Lotus japonicus nodules even in the absence of LjSUS3 (the major nodule-induced isoform of SUS), so LjSUS1 must also contribute to the maintenance of nitrogen assimilation
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results support the model that nodule-enhanced Suc synthase 1 of the model legume Medicago truncatula is required for the establishment and maintenance of an efficient N-fixing symbiosis
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Results 1 - 10 of 262 > >>