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Developmental changes in the metabolic network of snapdragon flowers
Joëlle K. Muhlemann
, Hiroshi Maeda
, Ching Yun Chang
, Phillip San Miguel
,
Ivan Baxter
, Bruce Cooper
, M. Ann Perera
, Basil J. Nikolau
, Olga Vitek
, John A. Morgan
, Natalia Dudareva
Department of Biology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Plant and Microbial Biosciences
DBBS - Computational and Systems Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
82
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Scopus citations
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Keyphrases
Amino Acid Transport
50%
Angiosperms
50%
Cell Growth
50%
Cell Wall Formation
50%
Developmental Changes
100%
Developmental Gene Expression
50%
Developmental Regulation
100%
Diverse Groups
50%
Downregulated Genes
50%
Evolutionary Success
50%
Fatty Acid Biosynthesis
50%
Fatty Acid Catabolism
50%
Flower Development
50%
Flower pigments
50%
Gene Expression Pattern
50%
Gene Expression Profile
50%
Glycolysis
50%
Integrative Analysis
50%
Land Plants
50%
Metabolic Network
100%
Metabolic Pathways
50%
Metabolite Profile
50%
Olfactory Cues
50%
Pentose Phosphate Pathway
50%
Petal Development
100%
Pollinator Attraction
50%
Pollinators
100%
Primary Metabolic Pathways
50%
Regulation of Secondary Metabolism
50%
Reproductive Success
50%
Scent Compounds
50%
Secondary Metabolism
50%
Secondary Metabolites
50%
Secondary Primary
50%
Sepal
100%
Snapdragon
100%
Visual Cues
50%
Biochemistry, Genetics and Molecular Biology
Amino Acid Transport
25%
Angiosperm
25%
Catabolism
25%
Cell Growth
25%
Developmental Gene
25%
Embryophyta
25%
Fatty Acid Metabolism
25%
Fatty Acid Synthesis
25%
Flower Development
25%
Gene Expression
50%
Glycolysis
25%
Hexose Monophosphate Shunt
25%
Metabolic Network
100%
Metabolite
100%
Pollinator
75%
Reproductive Success
25%
Secondary Metabolism
50%
Secondary Metabolite
25%