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Molecular recognition and response in pollen and pistil interactions
A. G. McCubbin
,
T. H. Kao
Biochemistry & Molecular Biology
Plant Institute
Research output
:
Contribution to journal
›
Review article
›
peer-review
195
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Scopus citations
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Keyphrases
Pistil
100%
Self-incompatibility
100%
Molecular Response
100%
Molecular Recognition
100%
Signal Transduction Pathway
66%
Female Function
66%
Receptor-interacting Protein Kinase 1 (RIPK1)
33%
Flowering Plants
33%
Solanaceae
33%
S-locus
33%
Ribonuclease
33%
Non-self
33%
Pollen Tube
33%
Gene Polymorphism
33%
Brassica Oleracea
33%
Ca2+
33%
Protein Phosphorylation
33%
Protein-based
33%
Reproductive Strategy
33%
Fertilization
33%
S-RNase Alleles
33%
Male Function
33%
Highly Polymorphic
33%
Biochemistry, Genetics and Molecular Biology
Self Incompatibility
100%
Molecular Recognition
100%
Signal Transduction
66%
Ribonuclease
66%
RNA
33%
Surface Property
33%
Eicosanoid Receptor
33%
Kinase
33%
Phosphotransferase
33%
Solanaceae
33%
Brassicaceae
33%
Angiosperm
33%
Dephosphorylation
33%
Protein Phosphorylation
33%
Protein S
33%
Papaveraceae
33%
Agricultural and Biological Sciences
Signal Transduction
100%
Ribonuclease
100%
Pistil
100%
Reproductives
50%
Receptor
50%
Eicosanoid Receptor
50%
Angiosperm
50%
Solanaceae
50%
Brassicaceae
50%
Pollen Tube
50%
Protein Phosphorylation
50%
Pharmacology, Toxicology and Pharmaceutical Science
Ribonuclease
100%
Receptor
50%
Phosphotransferase
50%
Angiosperm
50%
Calcium Ion
50%
Papaveraceae
50%
Brassicaceae
50%
Protein S
50%
Solanaceae
50%