Keyphrases
Amino Acids
10%
Angiosperms
7%
Anthocyanin Accumulation
6%
Arabidopsis
37%
Arabidopsis Thaliana
10%
AtSUC1
10%
AtSUC2
18%
Barley
9%
Coumarin Glucoside
6%
Esculin
12%
Flowering Plants
6%
Functional Analysis
10%
Glucoside
21%
Heat Shock
7%
High Affinity
12%
Long-range Transport
6%
Low Affinity
6%
Maltose
8%
Marchantia Polymorpha
9%
Membrane Potential
7%
Membrane Protein
6%
Monocots
6%
Mutant Phenotype
6%
OsSUT1
13%
Permease
6%
Phloem
16%
Phloem Loading
15%
Plasma Membrane
18%
Protein-protein Interaction
6%
Rice
21%
Saccharomyces Cerevisiae
18%
Schizosaccharomyces Pombe
11%
Sieve Element
8%
Sink Tissues
7%
Split Ubiquitin System
11%
Substrate Specificity
17%
Sucralose
5%
Sucrose Transport
100%
Sucrose Uptake
14%
Symbiotic Interaction
9%
Thermotolerance
10%
TPS1
16%
Transport Activity
34%
Transport Function
7%
Trehalose
7%
Trehalose Synthesis
10%
Trehalose-6-phosphate Synthase
13%
Uptake Transporter
10%
Vacuole
6%
Xenopus Oocytes
10%
Biochemistry, Genetics and Molecular Biology
Amino Acids
13%
Angiosperm
7%
Anthocyanin
6%
Arabidopsis
38%
Arabidopsis thaliana
10%
Binding Protein
5%
Carrier Protein
6%
Cell Membrane
18%
Cotransporter
5%
Coumarin
7%
Enzyme Specificity
13%
Glucoside
12%
Green Fluorescent Protein
5%
Maltose
7%
Marchantia
9%
Membrane Potential
5%
Permease
6%
Phosphatase
6%
Potassium Channel
5%
Promoter Region
5%
Protein-Protein Interaction
5%
Saccharomyces cerevisiae
16%
Saccharum Officinarum
6%
Sucrose
77%
Symbiotic Interaction
9%
Synthase
9%
Transmembrane Protein
7%
Trehalose
10%
Ubiquitin
14%
Agricultural and Biological Sciences
Angiosperm
9%
Anthesis
5%
Arabidopsis
17%
Arabidopsis thaliana
8%
Arbutin
8%
Cell Membrane
12%
Fructose
6%
Gametocyte
21%
Maltose
13%
Membrane Potential
14%
Methylglucoside
5%
Monocotyledon
9%
Phloem
23%
Plasma Membrane
12%
Saccharum Officinarum
8%
Salicin
7%
Schizosaccharomyces Pombe
6%
Sieve Elements
5%
Sorghum Bicolor
6%
Subcellular Localization
6%
Substrate Specificity
16%
Sucralose
6%
Tonoplast
8%
Transportation
19%
Vacuole
8%
Vascular Tissue
5%
Xenopus
9%
Xenopus laevis
5%