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Literature summary for 2.4.1.99 extracted from

  • De Roover, J.; Vandenbranden, K.; Van Laere, A.; Van den Ende, W.
    Drought induces fructan synthesis and 1-SST (sucrose: sucrose fructosyltransferase) in roots and leaves of chicory seedlings (Cichorium intybus L.) (2000), Planta, 210, 808-814.
    View publication on PubMed

Natural Substrates/ Products (Substrates)

Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
sucrose + sucrose Cichorium intybus key enzyme in fructan biosynthesis. After 1 month of growth plantelets do not contain the enzyme. The onset of fructan synthesis coincides with the increase in 1-SST activity in roots. Expression of the 1-SST gene can be observed in roots and leaves of stressed plants D-glucose + 1F-beta-D-fructosylsucrose
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Organism

Organism UniProt Comment Textmining
Cichorium intybus O24459 L. var. foliosum cv.
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Source Tissue

Source Tissue Comment Organism Textmining
leaf expression of the 1-SST gene can be observed in roots and leaves of stressed plants Cichorium intybus
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leaf of the seedling Cichorium intybus
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root of the seedling Cichorium intybus
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root the onset of fructan synthesis coincides with the increase in 1-SST activity in roots. Expression of the 1-SST gene can be observed in roots and leaves of stressed plants Cichorium intybus
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seedling
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Cichorium intybus
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Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
sucrose + sucrose
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Cichorium intybus D-glucose + 1F-beta-D-fructosylsucrose
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?
sucrose + sucrose key enzyme in fructan biosynthesis. After 1 month of growth plantelets do not contain the enzyme. The onset of fructan synthesis coincides with the increase in 1-SST activity in roots. Expression of the 1-SST gene can be observed in roots and leaves of stressed plants Cichorium intybus D-glucose + 1F-beta-D-fructosylsucrose
-
?