An estimate of the average number of recessive lethal mutations carried by humans.
about
Human Knockout Carriers: Dead, Diseased, Healthy, or Improved?Genetic disruption of voltage-gated calcium channels in psychiatric and neurological disordersHealth and population effects of rare gene knockouts in adult humans with related parentsPritchard, Stephens, and Donnelly on Population Structure.Obstruction of adaptation in diploids by recessive, strongly deleterious alleles.Distance from sub-Saharan Africa predicts mutational load in diverse human genomes.The Role of Deleterious Substitutions in Crop Genomes.Hermann Muller on Measuring Mutation Rates.NGS-based reverse genetic screen for common embryonic lethal mutations compromising fertility in livestock.Model Organisms Facilitate Rare Disease Diagnosis and Therapeutic Research.Na Li and Matthew Stephens on Modeling Linkage Disequilibrium.Candidate lethal haplotypes and causal mutations in Angus cattle.Are minor alleles more likely to be risk alleles?Close inbreeding and low genetic diversity in Inner Asian human populations despite geographical exogamy.
P2860
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P2860
An estimate of the average number of recessive lethal mutations carried by humans.
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2015 nî lūn-bûn
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An estimate of the average number of recessive lethal mutations carried by humans.
@en
An estimate of the average number of recessive lethal mutations carried by humans.
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An estimate of the average number of recessive lethal mutations carried by humans.
@en
An estimate of the average number of recessive lethal mutations carried by humans.
@nl
prefLabel
An estimate of the average number of recessive lethal mutations carried by humans.
@en
An estimate of the average number of recessive lethal mutations carried by humans.
@nl
P2093
P2860
P1433
P1476
An estimate of the average number of recessive lethal mutations carried by humans.
@en
P2093
Darrel Waggoner
Matthew Stephens
Molly Przeworski
P2860
P304
P356
10.1534/GENETICS.114.173351
P407
P50
P577
2015-02-18T00:00:00Z