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Complete mitochondrial genomes reveal robust phylogenetic signals and evidence of positive selection in horseshoe bats
by
Csorba, Gábor
, Sun, Keping
, Hughes, Alice Catherine
, Feng, Jiang
, Zhang, Lin
, Xiao, Yanhong
, Jin, Longru
in
Amino acids
/ Analysis
/ Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bats
/ Biomedical and Life Sciences
/ Chiroptera - genetics
/ Codon
/ Comparative analysis
/ Diseases
/ Echolocation
/ Echolocation (Physiology)
/ Entomology
/ Evolution, Molecular
/ Evolutionary Biology
/ Genes
/ Genes, Mitochondrial
/ Genetic aspects
/ Genetics and Population Dynamics
/ Genome, Mitochondrial
/ Genomes
/ Genomics
/ Growth
/ Health aspects
/ Life Sciences
/ Mitochondrial DNA
/ Mitogenome
/ Natural selection
/ Oxidoreductases
/ Phylogeny
/ Positive selection
/ Rhinolophus
/ Selection, Genetic
2021
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Complete mitochondrial genomes reveal robust phylogenetic signals and evidence of positive selection in horseshoe bats
by
Csorba, Gábor
, Sun, Keping
, Hughes, Alice Catherine
, Feng, Jiang
, Zhang, Lin
, Xiao, Yanhong
, Jin, Longru
in
Amino acids
/ Analysis
/ Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bats
/ Biomedical and Life Sciences
/ Chiroptera - genetics
/ Codon
/ Comparative analysis
/ Diseases
/ Echolocation
/ Echolocation (Physiology)
/ Entomology
/ Evolution, Molecular
/ Evolutionary Biology
/ Genes
/ Genes, Mitochondrial
/ Genetic aspects
/ Genetics and Population Dynamics
/ Genome, Mitochondrial
/ Genomes
/ Genomics
/ Growth
/ Health aspects
/ Life Sciences
/ Mitochondrial DNA
/ Mitogenome
/ Natural selection
/ Oxidoreductases
/ Phylogeny
/ Positive selection
/ Rhinolophus
/ Selection, Genetic
2021
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Complete mitochondrial genomes reveal robust phylogenetic signals and evidence of positive selection in horseshoe bats
by
Csorba, Gábor
, Sun, Keping
, Hughes, Alice Catherine
, Feng, Jiang
, Zhang, Lin
, Xiao, Yanhong
, Jin, Longru
in
Amino acids
/ Analysis
/ Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bats
/ Biomedical and Life Sciences
/ Chiroptera - genetics
/ Codon
/ Comparative analysis
/ Diseases
/ Echolocation
/ Echolocation (Physiology)
/ Entomology
/ Evolution, Molecular
/ Evolutionary Biology
/ Genes
/ Genes, Mitochondrial
/ Genetic aspects
/ Genetics and Population Dynamics
/ Genome, Mitochondrial
/ Genomes
/ Genomics
/ Growth
/ Health aspects
/ Life Sciences
/ Mitochondrial DNA
/ Mitogenome
/ Natural selection
/ Oxidoreductases
/ Phylogeny
/ Positive selection
/ Rhinolophus
/ Selection, Genetic
2021
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Complete mitochondrial genomes reveal robust phylogenetic signals and evidence of positive selection in horseshoe bats
Journal Article
Complete mitochondrial genomes reveal robust phylogenetic signals and evidence of positive selection in horseshoe bats
2021
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Overview
Background
In genus
Rhinolophus
, species in the
Rhinolophus philippinensis
and
R. macrotis
groups are unique because the horseshoe bats in these group have relatively low echolocation frequencies and flight speeds compared with other horseshoe bats with similar body size. The different characteristics among bat species suggest particular evolutionary processes may have occurred in this genus. To study the adaptive evidence in the mitochondrial genomes (mitogenomes) of rhinolophids, especially the mitogenomes of the species with low echolocation frequencies, we sequenced eight mitogenomes and used them for comparative studies of molecular phylogeny and adaptive evolution.
Results
Phylogenetic analysis using whole mitogenome sequences produced robust results and provided phylogenetic signals that were better than those obtained using single genes. The results supported the recent establishment of the separate
macrotis
group. The signals of adaptive evolution discovered in the
Rhinolophus
species were tested for some of the codons in two genes (
ND2
and
ND6
) that encode NADH dehydrogenases in oxidative phosphorylation system complex I. These genes have a background of widespread purifying selection. Signals of relaxed purifying selection and positive selection were found in
ND2
and
ND6
, respectively, based on codon models and physicochemical profiles of amino acid replacements. However, no pronounced overlap was found for non-synonymous sites in the mitogenomes of all the species with low echolocation frequencies. A signal of positive selection for
ND5
was found in the branch-site model when
R. philippinensis
was set as the foreground branch.
Conclusions
The mitogenomes provided robust phylogenetic signals that were much more informative than the signals obtained using single mitochondrial genes. Two mitochondrial genes that encoding proteins in the oxidative phosphorylation system showed some evidence of adaptive evolution in genus
Rhinolophus
and the positive selection signals were tested for
ND5
in
R. philippinensis
. These results indicate that mitochondrial protein-coding genes were targets of adaptive evolution during the evolution of
Rhinolophus
species, which might have contributed to a diverse range of acoustic adaptations in this genus.
Publisher
BioMed Central,BioMed Central Ltd,BMC
Subject
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