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ACTN3 Allele Frequency in Humans Covaries with Global Latitudinal Gradient
by
Herrmann, Amanda L.
, Lowry, Daniel P.
, Mepham, Emily R.
, Friedlander, Scott M.
, North, Kathryn N.
, Lek, Monkol
, Organ, Chris L.
in
Actinin - genetics
/ Alleles
/ Annual temperatures
/ Athletes
/ Biodiversity
/ Biological evolution
/ Biology
/ Childrens health
/ Codon, Terminator
/ Codons
/ Ecology
/ Evolution
/ Evolutionary adaptation
/ Evolutionary biology
/ Gene expression
/ Gene flow
/ Gene Frequency
/ Genes
/ Genetic research
/ Genotype & phenotype
/ Geography
/ Humans
/ Hypotheses
/ Hypothesis testing
/ Linkage disequilibrium
/ Mammals
/ Markov analysis
/ Medicine
/ Metabolism
/ Monte Carlo simulation
/ Muscles
/ Musculoskeletal system
/ Neurosciences
/ Nonsense mutation
/ Observations
/ Phylogeny
/ Physiology
/ Population
/ Positive selection
/ Properties
/ Quantitative genetics
/ Science
/ Skeletal muscle
/ Species richness
/ Sports medicine
/ Stop codon
/ α-Actinin
2013
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ACTN3 Allele Frequency in Humans Covaries with Global Latitudinal Gradient
by
Herrmann, Amanda L.
, Lowry, Daniel P.
, Mepham, Emily R.
, Friedlander, Scott M.
, North, Kathryn N.
, Lek, Monkol
, Organ, Chris L.
in
Actinin - genetics
/ Alleles
/ Annual temperatures
/ Athletes
/ Biodiversity
/ Biological evolution
/ Biology
/ Childrens health
/ Codon, Terminator
/ Codons
/ Ecology
/ Evolution
/ Evolutionary adaptation
/ Evolutionary biology
/ Gene expression
/ Gene flow
/ Gene Frequency
/ Genes
/ Genetic research
/ Genotype & phenotype
/ Geography
/ Humans
/ Hypotheses
/ Hypothesis testing
/ Linkage disequilibrium
/ Mammals
/ Markov analysis
/ Medicine
/ Metabolism
/ Monte Carlo simulation
/ Muscles
/ Musculoskeletal system
/ Neurosciences
/ Nonsense mutation
/ Observations
/ Phylogeny
/ Physiology
/ Population
/ Positive selection
/ Properties
/ Quantitative genetics
/ Science
/ Skeletal muscle
/ Species richness
/ Sports medicine
/ Stop codon
/ α-Actinin
2013
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ACTN3 Allele Frequency in Humans Covaries with Global Latitudinal Gradient
by
Herrmann, Amanda L.
, Lowry, Daniel P.
, Mepham, Emily R.
, Friedlander, Scott M.
, North, Kathryn N.
, Lek, Monkol
, Organ, Chris L.
in
Actinin - genetics
/ Alleles
/ Annual temperatures
/ Athletes
/ Biodiversity
/ Biological evolution
/ Biology
/ Childrens health
/ Codon, Terminator
/ Codons
/ Ecology
/ Evolution
/ Evolutionary adaptation
/ Evolutionary biology
/ Gene expression
/ Gene flow
/ Gene Frequency
/ Genes
/ Genetic research
/ Genotype & phenotype
/ Geography
/ Humans
/ Hypotheses
/ Hypothesis testing
/ Linkage disequilibrium
/ Mammals
/ Markov analysis
/ Medicine
/ Metabolism
/ Monte Carlo simulation
/ Muscles
/ Musculoskeletal system
/ Neurosciences
/ Nonsense mutation
/ Observations
/ Phylogeny
/ Physiology
/ Population
/ Positive selection
/ Properties
/ Quantitative genetics
/ Science
/ Skeletal muscle
/ Species richness
/ Sports medicine
/ Stop codon
/ α-Actinin
2013
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ACTN3 Allele Frequency in Humans Covaries with Global Latitudinal Gradient
Journal Article
ACTN3 Allele Frequency in Humans Covaries with Global Latitudinal Gradient
2013
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Overview
A premature stop codon in ACTN3 resulting in α-actinin-3 deficiency (the ACTN3 577XX genotype) is common in humans and reduces strength, muscle mass, and fast-twitch fiber diameter, but increases the metabolic efficiency of skeletal muscle. Linkage disequilibrium data suggest that the ACTN3 R577X allele has undergone positive selection during human evolution. The allele has been hypothesized to be adaptive in environments with scarce resources where efficient muscle metabolism would be selected. Here we test this hypothesis by using recently developed comparative methods that account for evolutionary relatedness and gene flow among populations. We find evidence that the ACTN3 577XX genotype evolved in association with the global latitudinal gradient. Our results suggest that environmental variables related to latitudinal variation, such as species richness and mean annual temperature, may have influenced the adaptive evolution of ACTN3 577XX during recent human history.
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