front cover of Evolution and the Genetics of Populations, Volume 1
Evolution and the Genetics of Populations, Volume 1
Genetic and Biometric Foundations
Sewall Wright
University of Chicago Press, 1968
"Wright's views about population genetics and evolution are so fundamental and so comprehensive that every serious student must examine these books firsthand. . . . Publication of this treatise is a major event in evolutionary biology."-Daniel L. Hartl, BioScience
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front cover of Evolution and the Genetics of Populations, Volume 2
Evolution and the Genetics of Populations, Volume 2
Theory of Gene Frequencies
Sewall Wright
University of Chicago Press, 1969
"Wright's views about population genetics and evolution are so fundamental and so comprehensive that every serious student must examine these books firsthand. . . . Publication of this treatise is a major event in evolutionary biology."-Daniel L. Hartl, BioScience
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front cover of Evolution and the Genetics of Populations, Volume 3
Evolution and the Genetics of Populations, Volume 3
Experimental Results and Evolutionary Deductions
Sewall Wright
University of Chicago Press, 1977
"Wright's views about population genetics and evolution are so fundamental and so comprehensive that every serious student must examine these books firsthand. . . . Publication of this treatise is a major event in evolutionary biology."-Daniel L. Hartl, BioScience
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front cover of Evolution and the Genetics of Populations, Volume 4
Evolution and the Genetics of Populations, Volume 4
Variability Within and Among Natural Populations
Sewall Wright
University of Chicago Press, 1978
"Wright's views about population genetics and evolution are so fundamental and so comprehensive that every serious student must examine these books firsthand. . . . Publication of this treatise is a major event in evolutionary biology."-Daniel L. Hartl, BioScience
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front cover of Mammalian Dispersal Patterns
Mammalian Dispersal Patterns
The Effects of Social Structure on Population Genetics
Edited by B. Diane Chepko-Sade and Zuleyma Tang Halpin
University of Chicago Press, 1987
Mammalian Dispersal Patterns examines the ways that social structure affects population genetics and, in turn, rates of evolution, in mammalian groups. It brings together fieldwork in animal behavior and wildlife biology with theoretical work in demography and population genetics. The focus here is dispersal—whether, how, and when individuals leave the areas where they are born.

Theoretical work in population genetics indicates that such social factors as skewed sex ratios, restrictive mating patterns, and delayed age of first reproduction will lower the reproductive variability of a population by reducing the number of genotypes passed from one generation to the next. Field studies have shown that many mammalian species do exhibit many such social characteristics. Among horses, elephant seals, and a number of primates, the majority of females are inseminated by only a fraction of the males. In pacts of wolves and mongooses, usually only the highest-ranking male and female breed in a given season. Although socially restricted mating tends to lower genetic variability in isolated populations, it actually tends to increase genetic variability in subdivided populations with low rates of migration between subunits. Among some species there is little dispersal and thus little gene flow between subpopulations; other species travel far afield before mating.

The contributors to this volume examine actual data from populations of mammals, the way patterns of dispersal correlate with the genetic structure of individuals and populations, and mathematical models of population structure. This interdisciplinary approach has an important bearing on work in conservation of both wildlife and zoo populations, for it shows that the home range and the population size needed to maintain genetic variability can differ greatly from one species to the next. The volume also offers a fruitful model for future research.
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front cover of The Origins of Theoretical Population Genetics
The Origins of Theoretical Population Genetics
With a New Afterword
William B. Provine
University of Chicago Press, 2001
Tracing the development of population genetics through the writings of such luminaries as Darwin, Galton, Pearson, Fisher, Haldane, and Wright, William B. Provine sheds light on this complex field as well as its bearing on other branches of biology.
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Population Genetics, Molecular Evolution, and the Neutral Theory
Selected Papers
Motoo Kimura
University of Chicago Press, 1994
One of this century's leading evolutionary biologists, Motoo Kimura revolutionized the field with his random drift theory of molecular evolution—the neutral theory—and his groundbreaking theoretical work in population genetics. This volume collects 57 of Kimura's most important papers and covers forty years of his diverse and original contributions to our understanding of how genetic variation affects evolutionary change.

Kimura's neutral theory, first presented in 1968, challenged the notion that natural selection was the sole directive force in evolution. Arguing that mutations and random drift account for variations at the level of DNA and amino acids, Kimura advanced a theory of evolutionary change that was strongly challenged at first and that eventually earned the respect and interest of evolutionary biologists throughout the world. This volume includes the seminal papers on the neutral theory, as well as many others that cover such topics as population structure, variable selection intensity, the genetics of quantitative characters, inbreeding systems, and reversibility of changes by random drift.

Background essays by Naoyuki Takahata examine Kimura's work in relation to its effects and recent developments in each area.
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