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Cophylogeny of Quill Mites from the Genus Syringophilopsis (Acari: Syringophilidae) and their North American Passerine Hosts
by
Flannery, Maureen E.
, Hendricks, Sarah A.
, Spicer, Greg S.
in
Acari
/ Animal feathers
/ Animals
/ Bayes Theorem
/ Biological Evolution
/ Biological taxonomies
/ Bird Diseases - parasitology
/ Bird migration
/ Birds
/ Cryptic species
/ Cytochrome
/ cytochrome-c oxidase
/ DNA, Mitochondrial - chemistry
/ DNA, Ribosomal - chemistry
/ Electron Transport Complex IV - genetics
/ Evolution
/ feathers
/ Feathers - parasitology
/ Flycatchers
/ genes
/ genetic distance
/ Genetic Speciation
/ Host-Parasite Interactions
/ hosts
/ Mite Infestations - parasitology
/ Mite Infestations - veterinary
/ Mites
/ Mites - anatomy & histology
/ Mites - classification
/ Mites - genetics
/ Mitochondria - enzymology
/ Mitochondrial DNA
/ Morphology
/ North America
/ Parasite hosts
/ Parasites
/ Passeriformes
/ Passeriformes - classification
/ Passeriformes - genetics
/ Passeriformes - parasitology
/ Phylogenetics
/ Phylogeny
/ ribosomal RNA
/ RNA, Ribosomal, 28S - genetics
/ Sequence Alignment
/ Syringophilidae
/ SYSTEMATICS-PHYLOGENETICS
/ Taxa
2013
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Cophylogeny of Quill Mites from the Genus Syringophilopsis (Acari: Syringophilidae) and their North American Passerine Hosts
by
Flannery, Maureen E.
, Hendricks, Sarah A.
, Spicer, Greg S.
in
Acari
/ Animal feathers
/ Animals
/ Bayes Theorem
/ Biological Evolution
/ Biological taxonomies
/ Bird Diseases - parasitology
/ Bird migration
/ Birds
/ Cryptic species
/ Cytochrome
/ cytochrome-c oxidase
/ DNA, Mitochondrial - chemistry
/ DNA, Ribosomal - chemistry
/ Electron Transport Complex IV - genetics
/ Evolution
/ feathers
/ Feathers - parasitology
/ Flycatchers
/ genes
/ genetic distance
/ Genetic Speciation
/ Host-Parasite Interactions
/ hosts
/ Mite Infestations - parasitology
/ Mite Infestations - veterinary
/ Mites
/ Mites - anatomy & histology
/ Mites - classification
/ Mites - genetics
/ Mitochondria - enzymology
/ Mitochondrial DNA
/ Morphology
/ North America
/ Parasite hosts
/ Parasites
/ Passeriformes
/ Passeriformes - classification
/ Passeriformes - genetics
/ Passeriformes - parasitology
/ Phylogenetics
/ Phylogeny
/ ribosomal RNA
/ RNA, Ribosomal, 28S - genetics
/ Sequence Alignment
/ Syringophilidae
/ SYSTEMATICS-PHYLOGENETICS
/ Taxa
2013
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Cophylogeny of Quill Mites from the Genus Syringophilopsis (Acari: Syringophilidae) and their North American Passerine Hosts
by
Flannery, Maureen E.
, Hendricks, Sarah A.
, Spicer, Greg S.
in
Acari
/ Animal feathers
/ Animals
/ Bayes Theorem
/ Biological Evolution
/ Biological taxonomies
/ Bird Diseases - parasitology
/ Bird migration
/ Birds
/ Cryptic species
/ Cytochrome
/ cytochrome-c oxidase
/ DNA, Mitochondrial - chemistry
/ DNA, Ribosomal - chemistry
/ Electron Transport Complex IV - genetics
/ Evolution
/ feathers
/ Feathers - parasitology
/ Flycatchers
/ genes
/ genetic distance
/ Genetic Speciation
/ Host-Parasite Interactions
/ hosts
/ Mite Infestations - parasitology
/ Mite Infestations - veterinary
/ Mites
/ Mites - anatomy & histology
/ Mites - classification
/ Mites - genetics
/ Mitochondria - enzymology
/ Mitochondrial DNA
/ Morphology
/ North America
/ Parasite hosts
/ Parasites
/ Passeriformes
/ Passeriformes - classification
/ Passeriformes - genetics
/ Passeriformes - parasitology
/ Phylogenetics
/ Phylogeny
/ ribosomal RNA
/ RNA, Ribosomal, 28S - genetics
/ Sequence Alignment
/ Syringophilidae
/ SYSTEMATICS-PHYLOGENETICS
/ Taxa
2013
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Cophylogeny of Quill Mites from the Genus Syringophilopsis (Acari: Syringophilidae) and their North American Passerine Hosts
Journal Article
Cophylogeny of Quill Mites from the Genus Syringophilopsis (Acari: Syringophilidae) and their North American Passerine Hosts
2013
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Overview
Species of Syringophilopsis quill mites are found in the flight feathers of passerine birds. A phylogeny of species from this genus infecting North American passerines was inferred from the mitochondrial cytochrome oxidase I gene and the nuclear 28S ribosomal RNA gene. Based on the large genetic distance among lineages, the genus appears to be composed of several cryptic species. A reconciliation analysis of these mites and their avian hosts indicates a limited, but significant, degree of cophylogeny. However, strict cospeciation is not found to be occurring in this system.
Publisher
American Society of Parasitologists,Allen Press Inc
Subject
/ Animals
/ Bird Diseases - parasitology
/ Birds
/ DNA, Mitochondrial - chemistry
/ Electron Transport Complex IV - genetics
/ feathers
/ genes
/ hosts
/ Mite Infestations - parasitology
/ Mite Infestations - veterinary
/ Mites
/ Passeriformes - classification
/ Passeriformes - parasitology
/ RNA, Ribosomal, 28S - genetics
/ Taxa
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