Pages that link to "Q34337620"
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The following pages link to Understanding in vivo benzenoid metabolism in petunia petal tissue (Q34337620):
Displaying 50 items.
- Eugenol and isoeugenol, characteristic aromatic constituents of spices, are biosynthesized via reduction of a coniferyl alcohol ester (Q24550955) (← links)
- The multiple phenylpropene synthases in both Clarkia breweri and Petunia hybrida represent two distinct protein lineages (Q24657472) (← links)
- Herbivore induced plant volatiles: Their role in plant defense for pest management (Q27016575) (← links)
- Metabolic cartography: experimental quantification of metabolic fluxes from isotopic labelling studies (Q27026207) (← links)
- Role and structural characterization of plant aldehyde dehydrogenases from family 2 and family 7 (Q27698090) (← links)
- Branched-chain and aromatic amino acid catabolism into aroma volatiles in Cucumis melo L. fruit (Q28270018) (← links)
- Vanillin formation from ferulic acid in Vanilla planifolia is catalysed by a single enzyme (Q28656193) (← links)
- Exploiting members of the BAHD acyltransferase family to synthesize multiple hydroxycinnamate and benzoate conjugates in yeast. (Q28820960) (← links)
- Unraveling the regulation of floral fragrance biosynthesis (Q33351555) (← links)
- Peroxisomal ATP-binding cassette transporter COMATOSE and the multifunctional protein abnormal INFLORESCENCE MERISTEM are required for the production of benzoylated metabolites in Arabidopsis seeds (Q33357142) (← links)
- A role for differential glycoconjugation in the emission of phenylpropanoid volatiles from tomato fruit discovered using a metabolic data fusion approach. (Q33514989) (← links)
- Validation of reference genes for quantitative real-time PCR during leaf and flower development in Petunia hybrida (Q33522477) (← links)
- Floral benzenoid carboxyl methyltransferases: from in vitro to in planta function (Q33829846) (← links)
- A petunia chorismate mutase specialized for the production of floral volatiles. (Q33876403) (← links)
- Differential phylogenetic expansions in BAHD acyltransferases across five angiosperm taxa and evidence of divergent expression among Populus paralogues. (Q33898925) (← links)
- Expressed sequence tag analysis of khat (Catha edulis) provides a putative molecular biochemical basis for the biosynthesis of phenylpropylamino alkaloids (Q34116788) (← links)
- Contribution of CoA ligases to benzenoid biosynthesis in petunia flowers. (Q34287239) (← links)
- Cinnamate:CoA ligase initiates the biosynthesis of a benzoate-derived xanthone phytoalexin in Hypericum calycinum cell cultures (Q34418435) (← links)
- Structural studies of cinnamoyl-CoA reductase and cinnamyl-alcohol dehydrogenase, key enzymes of monolignol biosynthesis. (Q34438336) (← links)
- Biosynthesis of plant volatiles: nature's diversity and ingenuity (Q34493293) (← links)
- Plant glandular trichomes as targets for breeding or engineering of resistance to herbivores (Q34509803) (← links)
- Characterization of a BAHD acyltransferase responsible for producing the green leaf volatile (Z)-3-hexen-1-yl acetate in Arabidopsis thaliana (Q34590172) (← links)
- Aphid-repellent pheromone E-β-farnesene is generated in transgenic Arabidopsis thaliana over-expressing farnesyl diphosphate synthase2. (Q35129430) (← links)
- Transcriptional profiling of Petunia seedlings reveals candidate regulators of the cold stress response (Q35135435) (← links)
- Diverse functional evolution of serine decarboxylases: identification of two novel acetaldehyde synthases that uses hydrophobic amino acids as substrates. (Q35259375) (← links)
- Transcriptome profiling provides new insights into the formation of floral scent in Hedychium coronarium (Q35666634) (← links)
- Floral scent diversity is differently expressed in emitted and endogenous components in Petunia axillaris lines (Q35796775) (← links)
- Biochemistry of plant volatiles (Q35869793) (← links)
- Completion of the core β-oxidative pathway of benzoic acid biosynthesis in plants (Q36342866) (← links)
- Dynamics of Positional Enrichment: Theoretical Development and Application to Carbon Labeling in Zymomonas mobilis (Q36946763) (← links)
- Quantitative patterns between plant volatile emissions induced by biotic stresses and the degree of damage (Q37034496) (← links)
- De novo Sequencing and Transcriptome Analysis of Pinellia ternata Identify the Candidate Genes Involved in the Biosynthesis of Benzoic Acid and Ephedrine (Q37179737) (← links)
- Transcriptomic analysis of flower development in wintersweet (Chimonanthus praecox) (Q37529526) (← links)
- Comparison of quantitative metabolite imaging tools and carbon-13 techniques for fluxomics. (Q37545678) (← links)
- Comparative Transcriptome Reveals Benzenoid Biosynthesis Regulation as Inducer of Floral Scent in the Woody Plant Prunus mume. (Q37692522) (← links)
- Reverse engineering of metabolic networks, a critical assessment (Q37808633) (← links)
- Metabolic engineering of novel lignin in biomass crops (Q38049338) (← links)
- Analysis of metabolic flux using dynamic labelling and metabolic modelling (Q38082829) (← links)
- Arabidopsis peroxisome proteomics (Q38102992) (← links)
- Metabolic engineering of aroma components in fruits. (Q38135782) (← links)
- Floral volatiles: from biosynthesis to function (Q38192701) (← links)
- Biogenic volatile emissions from the soil. (Q38201142) (← links)
- Recent Advances in the Application of Metabolomics to Studies of Biogenic Volatile Organic Compounds (BVOC) Produced by Plant (Q38254533) (← links)
- Improving our chemistry: challenges and opportunities in the interdisciplinary study of floral volatiles. (Q38424626) (← links)
- BAHD or SCPL acyltransferase? What a dilemma for acylation in the world of plant phenolic compounds (Q38520274) (← links)
- Volatile terpenoids: multiple functions, biosynthesis, modulation and manipulation by genetic engineering. (Q38643292) (← links)
- Green pathways: Metabolic network analysis of plant systems (Q38679523) (← links)
- Physiological and metabolomic analysis of Punica granatum (L.) under drought stress (Q38934854) (← links)
- Proteomes and Ubiquitylomes Analysis Reveals the Involvement of Ubiquitination in Protein Degradation in Petunias. (Q39218608) (← links)
- Metabolic networking in Brunfelsia calycina petals after flower opening (Q39580669) (← links)