scholarly article | Q13442814 |
review article | Q7318358 |
P50 | author | Rob Verpoorte | Q2040722 |
Johan Memelink | Q46861570 | ||
P2093 | author name string | Verpoorte R | |
Memelink J | |||
P2860 | cites work | Engineering the provitamin A (beta-carotene) biosynthetic pathway into (carotenoid-free) rice endosperm | Q28142588 |
Isochorismate synthase is required to synthesize salicylic acid for plant defence | Q28209340 | ||
Flavonoids and isoflavonoids - a gold mine for metabolic engineering. | Q30322980 | ||
Activation tagging identifies a conserved MYB regulator of phenylpropanoid biosynthesis. | Q30646171 | ||
Suppression of a P450 hydroxylase gene in plant trichome glands enhances natural-product-based aphid resistance. | Q30662365 | ||
Identification and expression of isoflavone synthase, the key enzyme for biosynthesis of isoflavones in legumes | Q30836228 | ||
Manipulation of salicylate content in Arabidopsis thaliana by the expression of an engineered bacterial salicylate synthase. | Q31908655 | ||
Genetic engineering of essential oil production in mint | Q33632579 | ||
A novel jasmonate- and elicitor-responsive element in the periwinkle secondary metabolite biosynthetic gene Str interacts with a jasmonate- and elicitor-inducible AP2-domain transcription factor, ORCA2. | Q33871182 | ||
Evaluation of transgenic tomato plants expressing an additional phytoene synthase in a fruit-specific manner | Q33894958 | ||
Elevation of the provitamin A content of transgenic tomato plants | Q33903968 | ||
Plant aromatic L-amino acid decarboxylases: evolution, biochemistry, regulation, and metabolic engineering applications | Q33907374 | ||
Transcriptional repression by AtMYB4 controls production of UV-protecting sunscreens in Arabidopsis | Q33925419 | ||
Progress in plant metabolic engineering | Q33928988 | ||
Geraniol 10-hydroxylase, a cytochrome P450 enzyme involved in terpenoid indole alkaloid biosynthesis | Q34102776 | ||
Engineering the plant cell factory for secondary metabolite production | Q34114607 | ||
Plant metabolic engineering | Q34129010 | ||
Alkaloid Biosynthesis[mdash]The Basis for Metabolic Engineering of Medicinal Plants | Q34150389 | ||
Metabolic engineering and applications of flavonoids. | Q34208109 | ||
ORCAnization of jasmonate-responsive gene expression in alkaloid metabolism. | Q34240341 | ||
ALKALOID BIOSYNTHESIS IN PLANTS: Biochemistry, Cell Biology, Molecular Regulation, and Metabolic Engineering Applications | Q34241532 | ||
Natural products and plant disease resistance | Q34311181 | ||
Twenty-five years of chemical ecology | Q34362907 | ||
Effects of over-expression of strictosidine synthase and tryptophan decarboxylase on alkaloid production by cell cultures of Catharanthus roseus. | Q34473307 | ||
Modeling and simulation: tools for metabolic engineering | Q34495082 | ||
Metabolic engineering of plant alkaloid biosynthesis | Q34601266 | ||
Regulation of plant gene expression by antisense RNA | Q36590785 | ||
Metabolic engineering of essential oil yield and composition in mint by altering expression of deoxyxylulose phosphate reductoisomerase and menthofuran synthase | Q37121634 | ||
Isoprenoid biosynthesis: the evolution of two ancient and distinct pathways across genomes. | Q37285967 | ||
Metabolic engineering of astaxanthin production in tobacco flowers | Q40753696 | ||
ORCA3, a jasmonate-responsive transcriptional regulator of plant primary and secondary metabolism | Q40868493 | ||
Genetic engineering of shikonin biosynthesis hairy root cultures of Lithospermum erythrorhizon transformed with the bacterial ubiC gene. | Q40951441 | ||
Overexpression of petunia chalcone isomerase in tomato results in fruit containing increased levels of flavonols | Q43592471 | ||
Resistance to an herbivore through engineered cyanogenic glucoside synthesis. | Q43688621 | ||
Characterization of transgenic Arabidopsis thaliana with metabolically engineered high levels of p-hydroxybenzylglucosinolate | Q43721847 | ||
The strawberry FaMYB1 transcription factor suppresses anthocyanin and flavonol accumulation in transgenic tobacco | Q43808827 | ||
Overproduction of salicylic acid in plants by bacterial transgenes enhances pathogen resistance. | Q54045043 | ||
Metabolic engineering of p-hydroxybenzylglucosinolate in Arabidopsis by expression of the cyanogenic CYP79A1 from Sorghum bicolor | Q55113261 | ||
Salicylic acid produced by isochorismate synthase and isochorismate pyruvate lyase in various parts of constitutive salicylic acid producing tobacco plants | Q57058286 | ||
Chapter 12 Plant Biotechnology and the Production of Alkaloids: Prospects of Metabolic Engineering | Q57058411 | ||
Expression of two consecutive genes of a secondary metabolic pathway in transgenic tobacco: molecular diversity influences levels of expression and product accumulation | Q57058431 | ||
Suspension cultured transgenic cells of Nicotiana tabacum expressing tryptophan decarboxylase and strictosidine synthase cDNAs from Catharanthus roseus produce strictosidine upon secologanin feeding | Q57058504 | ||
Metabolic engineering of beta-carotene and lycopene content in tomato fruit | Q60017723 | ||
Production of the isoflavones genistein and daidzein in non-legume dicot and monocot tissues | Q73067581 | ||
Metabolic engineering of plant carotenoids | Q73109490 | ||
Seed-specific overexpression of phytoene synthase: increase in carotenoids and other metabolic effects | Q73294364 | ||
Combinatorial biochemistry in plants: the case of O-methyltransferases | Q73489230 | ||
Expression of a chimeric farnesyl diphosphate synthase gene in Artemisia annua L. transgenic plants via Agrobacterium tumefaciens-mediated transformation | Q73800937 | ||
Elevating the vitamin E content of plants through metabolic engineering | Q77677265 | ||
P433 | issue | 2 | |
P921 | main subject | secondary metabolite | Q522244 |
P304 | page(s) | 181-187 | |
P577 | publication date | 2002-04-01 | |
P1433 | published in | Current Opinion in Biotechnology | Q15763085 |
P1476 | title | Engineering secondary metabolite production in plants | |
P478 | volume | 13 |
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