000 05167cam a2200469Li 4500
001 ocn893672775
003 OCoLC
005 20240726105336.0
008 141010t20132013njua ob 001 0 eng d
040 _aE7B
_beng
_erda
_epn
_cE7B
_dOCLCO
_dNT
_dOCLCF
_dEBLCP
_dDEBSZ
_dYDXCP
_dS9I
_dOCLCQ
_dJSTOR
020 _a9781400847242
_q((electronic)l(electronic)ctronic)
050 0 4 _aQH455
_b.G464 2013
049 _aMAIN
100 1 _aRousset, François,
_d1967-
_e1
245 1 0 _aGenetic structure and selection in subdivided populations /François Rousset.
260 _aPrinceton, New Jersey ;
_aOxford, England :
_bPrinceton University Press,
_c(c)2013.
300 _a1 online resource (281 pages) :
_billustrations.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
347 _adata file
_2rda
490 1 _aMonographs in Population Biology ;
_v40
504 _a2
505 0 0 _aCover; Title; Contents; List of Figures and Tables; Acknowledgments; Preface; What Is and Is Not There; Assumed Background; Of Gene and Fitness; 1. Introduction; Genetic Structure in Relation to Selection; Plan of the Book; 2. Selection and Drift; Selection in Panmictic Populations; Evolution in Spatially Structured Populations; Selection and Local Drift; Effective Size in Subdivided Populations; Measuring Population Structure; Genetic Identity; Statistical Concepts of Equilibrium and Population; Summary; 3. Spatially Homogeneous Dispersal: The Island Model and Isolation by Distance.
505 0 0 _aIsland ModelsIsolation by Distance; Dispersal in Natural Populations; The Lattice Models; Differentiation under Isolation by Distance; Summary; Appendix 1: General Analysis of the Lattice Model; Appendix 2: Miscellaneous Results ; Diversity in a Deme; Average Diversity in a Population; Differentiation under Low Dispersal; 4. Interpretations of Inbreeding and Relatedness Coefficients in Subdivided Populations; Probabilities of Coalescence in Migration Matrix Models; Migration Matrix Models: Formulation; Probabilities of Coalescence; Interpretations of FST; Coalescence before Dispersal.
505 0 0 _aSeparation of Time ScalesAn Ancestral Reference Population?; Differences between Distributions of Coalescence Times; Properties of Inbreeding Coefficients; Sensitivity to Mutation and to Past Demographic Events; No Mutation; Alternative Measures of Allelic Divergence; 5. Evolutionary Dynamics; Fitness in a Panmictic Population; Example: Resource Competition; Convergence Stability; Evolutionary Stability; Applicability of This Framework; Fitness in a Subdivided Population; Frequency Dependence in Subdivided Populations; How to Measure Selection?; Conclusion.
505 0 0 _aAppendix: The Prisoner's Dilemma GameNoniterated Game; Iterated Game; 6. Convergence Stability in a Spatially Homogeneous Population; Weak Selection Effects on Probability of Fixation; Fixation Probability as Allele Frequency Change; Fitness Functions; Fixation Probability: Direct Fitness Expansion; Expression in Terms of Parameters of Population Structure ; Practical Computation of Convergence Stability; Island Model; Isolation by Distance; Conclusions; Direct Fitness Method; Fitness Maximization; 7. Inclusive Fitness, Cooperation, and Altruism; What Inclusive Fitness Does Measure.
505 0 0 _aInclusive and Direct FitnessHamilton's Derivation of Inclusive Fitness; Isolation by Distance; Altruism in Spatially Subdivided Populations; Cost, Benefit, and Relatedness; Helping Neighbors; Other Examples; The Importance of Kin Competition; Kin Recognition; Implications for Modeling Approaches; Inclusive Fitness Theory; Other Frameworks; Appendix: Helping Neighbors under Isolation by Distance; 8. Diploidy (and Sex); Population Structure of Diploid Populations; Analysis of Pollen and Seed Dispersal; Joint Effects of Selfing and Selection on Population Structure.
520 0 _aVarious approaches have been developed to evaluate the consequences of spatial structure on evolution in subdivided populations. This book is both a review and new synthesis of several of these approaches, based on the theory of spatial genetic structure. François Rousset examines Sewall Wright''s methods of analysis based on F-statistics, effective size, and diffusion approximation; coalescent arguments; William Hamilton''s inclusive fitness theory; and approaches rooted in game theory and adaptive dynamics. Setting these in a framework that reveals their common features, he demonstrates how.
530 _a2
_ub
650 0 _aPopulation genetics.
650 0 _aPopulation biology.
650 4 _aGenetics, Population.
650 4 _aPopulation biology.
650 4 _aPopulation dynamics.
650 4 _aPopulation genetics.
655 1 _aElectronic Books.
856 4 0 _uhttps://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=529488&site=eds-live&custid=s3260518
_zClick to access digital title | log in using your CIU ID number and my.ciu.edu password
942 _cOB
_D
_eEB
_hQH
_m2013
_QOL
_R
_x
_8NFIC
_2LOC
994 _a92
_bNT
999 _c97153
_d97153
902 _a1
_bCynthia Snell
_c1
_dCynthia Snell