Combinatorial biosynthesis in plants: a (p)review on its potential and future exploitation.
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Synthetic biology for pharmaceutical drug discoveryMulti-SNP analysis of GWAS data identifies pathways associated with nonalcoholic fatty liver diseaseThe ancient CYP716 family is a major contributor to the diversification of eudicot triterpenoid biosynthesisCombinatorial biosynthesis of sapogenins and saponins in Saccharomyces cerevisiae using a C-16α hydroxylase from Bupleurum falcatum.Multivariate statistical models of metabolomic data reveals different metabolite distribution patterns in isonitrosoacetophenone-elicited Nicotiana tabacum and Sorghum bicolor cellsOleanane triterpenoids in the prevention and therapy of breast cancer: current evidence and future perspectives.When plants produce not enough or at all: metabolic engineering of flavonoids in microbial hosts.Marketed marine natural products in the pharmaceutical and cosmeceutical industries: tips for successPutting bugs to the blush: metabolic engineering for phenylpropanoid-derived products in microorganisms.Synthetic biological approaches to natural product biosynthesis.The impact of structural biology on alkaloid biosynthesis research.Bioengineering of plant (tri)terpenoids: from metabolic engineering of plants to synthetic biology in vivo and in vitro.Natural products - modifying metabolite pathways in plants.Synthetic biology for production of natural and new-to-nature terpenoids in photosynthetic organisms.Progress in terpene synthesis strategies through engineering of Saccharomyces cerevisiae.Overcoming the plasticity of plant specialized metabolism for selective diterpene production in yeastComparative analysis of the biosynthetic systems for fungal bicyclo[2.2.2]diazaoctane indole alkaloids: the (+)/(-)-notoamide, paraherquamide and malbrancheamide pathways.Biotransformation of isonitrosoacetophenone (2-keto-2-phenyl-acetaldoxime) in tobacco cell suspensions.Biosynthesis of helvolic acid and identification of an unusual C-4-demethylation process distinct from sterol biosynthesis.Saponins from soy bean and mung bean inhibit the antigen specific activation of helper T cells by blocking cell cycle progression.Plant terpenes: defense responses, phylogenetic analysis, regulation and clinical applications.Synthetic Biology of Antibiotic Production
P2860
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P2860
Combinatorial biosynthesis in plants: a (p)review on its potential and future exploitation.
description
article científic
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article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
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artikull shkencor
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artículo científico
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name
Combinatorial biosynthesis in ...... ntial and future exploitation.
@en
Combinatorial biosynthesis in plants: a
@nl
type
label
Combinatorial biosynthesis in ...... ntial and future exploitation.
@en
Combinatorial biosynthesis in plants: a
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prefLabel
Combinatorial biosynthesis in ...... ntial and future exploitation.
@en
Combinatorial biosynthesis in plants: a
@nl
P2860
P50
P356
P1476
Combinatorial biosynthesis in ...... ntial and future exploitation.
@en
P2860
P304
P356
10.1039/C1NP00049G
P577
2011-09-28T00:00:00Z