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The evolution of bat nucleic acid-sensing Toll-like receptors
Marina Escalera-zamudio
, M. Lisandra Zepeda-mendoza
, Elizabeth Loza-rubio
, Edith Rojas-anaya
, Maria L. Méndez-ojeda
, Carlos F. Arias
, Alex D. Greenwood
*
*
Corresponding author for this work
Microbes, Infection and Microbiomes
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Citations (Scopus)
Overview
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Keyphrases
Toll-like
100%
Nucleic Acid Sensing
100%
Purifying Selection
66%
Bat Species
66%
Chiropteran
66%
Protein Function
33%
Positive Selection
33%
Nonconservative
33%
Evolutionary Approach
33%
Molecular Genetic Analysis
33%
Binding Properties
33%
Nuclear Genes
33%
Amino Acid Variation
33%
Nucleic Acids
33%
Adaptation Pattern
33%
Ecological Niche
33%
Binding Motif
33%
Divergence Pattern
33%
Protein-ligand
33%
Nucleic Acid Binding
33%
Evolutionary Patterns
33%
Potential Functional
33%
Ligand Binding Site
33%
Long-term Adaptation
33%
Desmodus Rotundus
33%
Vampire Bat
33%
Pteropodidae
33%
Species Tree
33%
Unique mutation
33%
Vespertilionidae
33%
Phyllostomidae
33%
Pathogen Profile
33%
New World Bats
33%
Immunology and Microbiology
Infectious Agent
100%
Desmodus rotundus
100%
Ligand Binding
100%
Toll-Like Receptor
100%
Lineages
50%
Binding Site
50%
TLR9
50%
Diversifying Selection
50%
Purifying Selection
50%
Vespertilionidae
50%
Phyllostomidae
50%
Flying Fox
50%
Protein Function
50%
Amino Acid
50%
Biochemistry, Genetics and Molecular Biology
Nucleic Acid
100%
Toll-Like Receptor
100%
Ligand Binding
50%
Infectious Agent
50%
Desmodus rotundus
50%
Binding Site
25%
Amino Acids
25%
Protein Function
25%
Nuclear Gene
25%
Nucleic Acid Binding
25%
Negative Selection (Natural Selection)
25%
TLR9
25%
Diversifying Selection
25%
Flying Fox
25%
Phyllostomidae
25%
Vespertilionidae
25%