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Heterotrimeric G-Protein-Coupled Signaling in Higher Plants
Lei Ding
, Jin Gui Chen
, Alan M. Jones
,
Sarah M. Assmann
Biology
Plant Institute
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
2
Link opens in a new tab
Scopus citations
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Dive into the research topics of 'Heterotrimeric G-Protein-Coupled Signaling in Higher Plants'. Together they form a unique fingerprint.
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Keyphrases
G Protein
100%
Higher Plants
100%
Regulator of G Protein Signaling
100%
Eukaryotes
66%
Cell Division
66%
Plant Cells
66%
Plant Growth
33%
Transmembrane
33%
Genetic Approach
33%
Arabidopsis Thaliana
33%
Plant Hormones
33%
G Protein Subunit
33%
Metazoan
33%
Plant Species
33%
Mammalian Genome
33%
Light Signaling
33%
G Protein-coupled Receptor
33%
Pathogen Response
33%
Signal Process
33%
Ion Channel Regulation
33%
Protein Components
33%
Hormonal Response
33%
Plant Survival
33%
Oxidative Stress Response
33%
Plant Genome
33%
Fundamental Building Blocks
33%
Heterotrimeric
33%
Heterotrimeric G Protein Signaling
33%
Signaling Elements
33%
Biochemistry, Genetics and Molecular Biology
Heterotrimeric G Protein
100%
Regulator of G Protein Signalling
100%
Eukaryote
66%
Cell Division
66%
G Protein
66%
Infectious Agent
33%
Genetic Approach
33%
Oxidative Stress
33%
Arabidopsis thaliana
33%
Signaling Protein
33%
Protein Subunit
33%
Animal
33%
G Protein Coupled Receptor
33%
Plant Genome
33%
Light Signaling
33%
Ion Channel
33%
Plant Physiology
33%
Pharmacology, Toxicology and Pharmaceutical Science
Guanine Nucleotide Binding Protein
100%
RGS Protein
60%
Eukaryote
40%
Infectious Agent
20%
Ion Channel
20%
G Protein Coupled Receptor
20%
Animal
20%
Phytohormone
20%
Dimer
20%
Arabidopsis thaliana
20%