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Literature summary extracted from

  • Komatsu, S.; Deschamps, T.; Thibaut, D.; Hiraga, S.; Kato, M.; Chiba, M.; Hashiguchi, A.; Tougou, M.; Shimamura, S.; Yasue, H.
    Characterization of a novel flooding stress-responsive alcohol dehydrogenase expressed in soybean roots (2011), Plant Mol. Biol., 77, 309-322.
    View publication on PubMed

Cloned(Commentary)

EC Number Cloned (Comment) Organism
1.1.1.1 gene GmAdh2, quantitative RT-PCR expression analysis, phylogenetic analysis Glycine max

Natural Substrates/ Products (Substrates)

EC Number Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
1.1.1.1 ethanol + NAD+ Glycine max
-
acetaldehyde + NADH + H+
-
r
1.1.1.1 ethanol + NAD+ Glycine max Enrei
-
acetaldehyde + NADH + H+
-
r

Organism

EC Number Organism UniProt Comment Textmining
1.1.1.1 Glycine max Q9ZT38 gene GmAdh2
-
1.1.1.1 Glycine max Enrei Q9ZT38 gene GmAdh2
-

Source Tissue

EC Number Source Tissue Comment Organism Textmining
1.1.1.1 root expression of Adh2 in the root apical meristem Glycine max
-
1.1.1.1 seedling
-
Glycine max
-

Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
1.1.1.1 ethanol + NAD+
-
Glycine max acetaldehyde + NADH + H+
-
r
1.1.1.1 ethanol + NAD+
-
Glycine max Enrei acetaldehyde + NADH + H+
-
r

Synonyms

EC Number Synonyms Comment Organism
1.1.1.1 ADH
-
Glycine max
1.1.1.1 ADH2
-
Glycine max

Cofactor

EC Number Cofactor Comment Organism Structure
1.1.1.1 NAD+
-
Glycine max
1.1.1.1 NADH
-
Glycine max

Expression

EC Number Organism Comment Expression
1.1.1.1 Glycine max osmotic, cold, or drought stress does not induce expression of Adh2 additional information
1.1.1.1 Glycine max expression of Adh is significantly upregulated in 4-day-old soybean seedlings, in in the root apical meristem, subjected to 2 days of flooding up

General Information

EC Number General Information Comment Organism
1.1.1.1 evolution alcohol dehydrogenase is a fermentative enzyme that is highly conserved across species, from prokaryotes to fungi, plants, and animals Glycine max
1.1.1.1 physiological function key enzyme in alcohol fermentation Glycine max