Principles of Population Genetics¶
Hartl, D. L., & Clark, A. G. (2007). Principles of Population Genetics. Sinauer Associates.
Cited by¶
4 citations across 4 artifacts.
Each citation links to the sentence it supports in the citing article.
Primes¶
- Eventual Realisation of Possibility
- Evolution: any beneficial or harmful mutation within the mutation rate's reach will appear in some genome over evolutionary time.
This sourceStandard population-genetics text treating mutation as a force whose rate, compounded over generations, makes the appearance of any reachable mutation effectively certain over evolutionary time.
- Evolution: any beneficial or harmful mutation within the mutation rate's reach will appear in some genome over evolutionary time.
- Founder Effect
- The parent population carries a recessive allele at frequency \(p = 0.001\).
This sourceStandard reference deriving binomial sampling of allele frequencies, sampling variance scaling with 1/(2N), and the genetics of founder events and bottlenecks.
- The parent population carries a recessive allele at frequency \(p = 0.001\).
- Zero-Force Null Baseline
- A researcher finding that observed genotype frequencies at a locus depart from Hardy-Weinberg, with heterozygotes under-represented, treats the deficit not as model failure but as a named-attribution problem: it is consistent with assortative mating, population substructure (the Wahlund effect), selection against heterozygotes, or inbreeding, each a specific perturbing force investigable by a targeted experiment — spatial sampling for Wahlund, mate-choice observation for assortative mating, fitness assays for selection.
This sourceStandard text: reads Hardy-Weinberg departures (heterozygote deficit) as attributable to inbreeding (F), the Wahlund effect, assortative mating, or selection, each testable by a targeted method.
- A researcher finding that observed genotype frequencies at a locus depart from Hardy-Weinberg, with heterozygotes under-represented, treats the deficit not as model failure but as a named-attribution problem: it is consistent with assortative mating, population substructure (the Wahlund effect), selection against heterozygotes, or inbreeding, each a specific perturbing force investigable by a targeted experiment — spatial sampling for Wahlund, mate-choice observation for assortative mating, fitness assays for selection.
Domain-specific¶
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Links previously used in the corpus¶
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