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The Chlamydomonas cell cycle
Frederick R. Cross
,
James G. Umen
Department of Biology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Plant and Microbial Biosciences
DBBS - Molecular Genetics and Genomics
Research output
:
Contribution to journal
›
Article
›
peer-review
163
Scopus citations
Overview
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Keyphrases
Chlamydomonas
100%
Cell Cycle Control
42%
Cell Growth
28%
Cell Biology
28%
Cell Division
14%
Loss Function
14%
Cell Cycle Progression
14%
Unanswered Questions
14%
Genetic Studies
14%
Regulatory Mechanism
14%
Genetic Tools
14%
Genetic Approach
14%
Microbes
14%
Basal Body
14%
Centriole
14%
Cell Cycle Regulation
14%
Genetic System
14%
Photosynthetic Organisms
14%
Flagellar
14%
Microbial Genes
14%
Eukaryotic Cell Cycle
14%
Temporal Separation
14%
Cell Division Cycle
14%
Support Model
14%
Land Plants
14%
Diurnal Cycle
14%
Phylogenetic Position
14%
Green Lineage
14%
Multiple Fission Cell Cycle
14%
Gene Duplicates
14%
Last Eukaryotic Common Ancestor
14%
Plant Life Cycle
14%
Functional Separation
14%
Experimental Genetics
14%
Eukaryotic Phylogeny
14%
Immunology and Microbiology
Cell Cycle
100%
Chlamydomonas
100%
Cell Cycle Regulation
57%
Lineages
42%
Cell Biology
42%
Cytotechnology
42%
Cytology
42%
Cell Growth
28%
Cell Division
14%
Cell Cycle Progression
14%
Eukaryotic Cell
14%
Centriole
14%
Circadian Rhythm
14%
Plant Cell
14%
Microbial Genetics
14%
Duplicate Gene
14%
Embryophyta
14%
Microorganism
14%
Cladistics
14%
Medicine and Dentistry
Cell Cycle
100%
Cell Cycle Regulation
57%
Cytotechnology
42%
Cell Growth
28%
Cell Cycle Progression
14%
Basal Body
14%
Cell Division
14%
Centriole
14%
Duplicate Gene
14%
Circadian Rhythm
14%
Eukaryotic Cell
14%