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Molecular breeding of carotenoid biosynthetic pathways
Claudia Schmidt-Dannert
, Daisuke Umeno
, Frances H. Arnold
Synthetic Biology and Biotechnology Division
Research output
:
Contribution to journal
›
Article
›
peer-review
311
Scopus citations
Overview
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Keyphrases
Agrochemicals
33%
Applied Principles
33%
Bacterial Species
33%
Biologically Active Substances
33%
Biosynthetic Pathway
33%
Carotenoid Pathway
100%
Carotenoids
100%
Catalytic Function
33%
Chimera
33%
Consumer Products
33%
Desaturase
33%
Double Bond
33%
Escherichia Coli
66%
In Vitro Evolution
33%
Lycopene Cyclase
33%
Materials Science
33%
Microorganisms
33%
Molecular Breeding
100%
Natural Products
33%
Natural Sources
33%
New Metabolic Pathway
33%
Pathway Assembly
33%
Phytoene
33%
Phytoene Desaturase
33%
Synthetic Chemistry
33%
Torulene
33%
Biochemistry, Genetics and Molecular Biology
Anabolism
100%
Carotenoid
100%
Cyclase
20%
Escherichia coli
40%
Lycopene
20%
Microorganism
20%
Molecular Breeding
100%
Phytoene
40%
Agricultural and Biological Sciences
Biologically Active Compound
20%
Carotenoid
100%
Escherichia coli
40%
Microorganism
20%
Molecular Breeding
100%
Phytoene
40%
Chemistry
Carotenoid
100%
Chemistry
20%
Double Bond
20%
Lycopene
20%
Metabolic
20%
Natural Product
20%
Phytoene
40%
Torulene
20%
Immunology and Microbiology
Escherichia coli
100%
In Vitro
50%
Lycopene
50%
Microorganism
50%