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Genetic and Epigenetic Strategies Potentiate Gal4 Activation to Enhance Fitness in Recently Diverged Yeast Species
Varun Sood,
Jason H. Brickner
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Corresponding author for this work
Molecular Biosciences
Research output
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Contribution to journal
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Article
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peer-review
11
Scopus citations
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Dive into the research topics of 'Genetic and Epigenetic Strategies Potentiate Gal4 Activation to Enhance Fitness in Recently Diverged Yeast Species'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Yeast
100%
Memory
100%
Species
100%
Genetics
100%
Epigenetics
100%
Fitness
100%
Nested Gene
85%
Genetic Code
85%
Galactose
57%
Growth
42%
Defense Mechanism
42%
Gene Expression
28%
Gene Activation
28%
Mutation
14%
Transcription Factor
14%
Saccharomyces
14%
Saccharomyces cerevisiae
14%
Point Mutation
14%
Genetic Screen
14%
Gene Induction
14%
Adaptation
14%
Introspection
14%
Regulatory Mechanism
14%
Mutant
14%
INIS
genetics
100%
genes
100%
yeasts
100%
galactose
36%
growth
27%
induction
18%
screens
18%
interactions
9%
regulations
9%
mutations
9%
mutants
9%
transcription factors
9%
point mutations
9%
reactivation
9%
saccharomyces cerevisiae
9%
saccharomyces
9%