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Transcriptome modulations due to A/C2 plasmid acquisition
Kevin S. Lang
,
Timothy J. Johnson
Genetics Mechanisms of Cancer
Veterinary and Biomedical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
27
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Scopus citations
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Keyphrases
Plasmid
100%
Transcriptional Modulation
100%
Plasmid Acquisition
100%
Transcriptome
28%
Host Chromosome
28%
Gene Expression
14%
Genetic Diversity
14%
Host Specificity
14%
Antimicrobial Resistance Genes
14%
Metabolism
14%
Energy Production
14%
Chromosomal Genes
14%
Environmental Factors
14%
Plasmid Genes
14%
RNA Sequencing (RNA-seq)
14%
Bacterial Hosts
14%
Epistatic Interactions
14%
Horizontal Gene Transfer
14%
Bacterial Population
14%
Bacterial Diversity
14%
Content Factors
14%
Plasmid Host
14%
Biochemistry, Genetics and Molecular Biology
Plasmid
100%
Transcriptome
100%
Chromosome
20%
Genetic Divergence
10%
Metabolic Pathway
10%
Horizontal Gene Transfer
10%
RNA Sequencing
10%
Gene Expression
10%
Energy Yield
10%
Antibiotic Resistance
10%
Bacterium
10%
Chromosomal Gene
10%
Immunology and Microbiology
Transcriptome
100%
Plasmid
100%
Chromosome
20%
Bacterial Population
10%
RNA Sequencing
10%
Genetic Variability
10%
Gene Expression
10%
Horizontal Gene Transfer
10%
Energy Yield
10%
Bacterium
10%
Antimicrobial Resistance Genes
10%