EC Number   |
Title   |
Organism   |
|---|
  1.1.1.319 | A pinoresinol-lariciresinol reductase homologue from the creosote bush (Larrea tridentata) catalyzes the efficient in vitro conversion of p-coumaryl/coniferyl alcohol esters into the allylphenols chavicol/eugenol, but not the propenylphenols p-anol/isoeug |
no activity in Larrea tridentata |
  1.1.1.319 | Biosynthesis of methyleugenol and methylisoeugenol in Daucus carota leaves characterization of eugenol/isoeugenol synthase and O-methyltransferase |
Daucus carota subsp. sativus |
  1.1.1.319 | Biosynthesis of t-anethole in anise: characterization of t-anol/isoeugenol synthase and an O-methyltransferase specific for a C7-C8 propenyl side chain |
Pimpinella anisum |
  1.1.1.319 | Eugenol and isoeugenol, characteristic aromatic constituents of spices, are biosynthesized via reduction of a coniferyl alcohol ester |
Petunia x hybrida |
  1.1.1.319 | Metabolic engineering in strawberry fruit uncovers a dormant biosynthetic pathway |
Petunia x hybrida |
  1.1.1.319 | The lack of floral synthesis and emission of isoeugenol in Petunia axillaris subsp. parodii is due to a mutation in the isoeugenol synthase gene |
Petunia axillaris subsp. parodii |
  1.1.1.319 | The lack of floral synthesis and emission of isoeugenol in Petunia axillaris subsp. parodii is due to a mutation in the isoeugenol synthase gene |
Petunia x hybrida |
  1.1.1.319 | The multiple phenylpropene synthases in both Clarkia breweri and Petunia hybrida represent two distinct protein lineages |
Clarkia breweri |
  1.1.1.319 | The multiple phenylpropene synthases in both Clarkia breweri and Petunia hybrida represent two distinct protein lineages |
Petunia x hybrida |