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Eukaryotic association module in phage WO genomes from Wolbachia
Sarah R. Bordenstein
,
Seth R. Bordenstein
Biology
Entomology
Huck Institutes of the Life Sciences
Cancer Institute, Cancer Control
Penn State Cancer Institute
One Health Microbiome Center
Research output
:
Contribution to journal
›
Article
›
peer-review
130
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Scopus citations
Overview
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Dive into the research topics of 'Eukaryotic association module in phage WO genomes from Wolbachia'. Together they form a unique fingerprint.
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Keyphrases
Bacteriophage
100%
Wolbachia
100%
Phage WO
100%
Eukaryotes
33%
Genome Analysis
16%
Virus
16%
Genome Sequencing
16%
Genetic Manipulation
16%
Sequence Diversity
16%
Phylogeny
16%
Archaeal
16%
Eukaryotic Genes
16%
Attachment Site
16%
Trifurcated
16%
DNA Transfer
16%
Prophage
16%
Obligate Intracellular Bacteria
16%
Genetic Identification
16%
Bacterial Genes
16%
Protease Cleavage Sites
16%
Animal Genomes
16%
Eukaryotic Viruses
16%
Lateral Transfer
16%
Black Widow
16%
Immunology and Microbiology
Bacteriophage
100%
Wolbachia
100%
Eukaryote
22%
Metagenomics
11%
Carboxy Terminal Sequence
11%
Genetic Manipulation
11%
Intracellular Bacterium
11%
Prophage
11%
Bacterial Gene
11%
DNA Transfer
11%
Eukaryotic Virus
11%
Cladistics
11%
Virus
11%
Biochemistry, Genetics and Molecular Biology
Wolbachia
100%
Bacteriophage
100%
Eukaryote
22%
Metagenomics
11%
Genetic Manipulation
11%
C-Terminus
11%
Prophage
11%
Intracellular Bacterium
11%
Bacterial Gene
11%
Transfer DNA
11%
Cladistics
11%
Protease
11%