The conversion of variance and the evolutionary potential of restricted recombination
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[1] B. Christensen,et al. Genetic variation in coexisting sexual diploid and parthenogenetic triploid forms of Fridericia galba (Enchytraeidae, Oligochaeta) in a heterogeneous environment , 2008 .
[2] D. Somers,et al. Genetic characterization of QTL associated with resistance to Fusarium head blight in a doubled-haploid spring wheat population. , 2005, Genome.
[3] Kirk A. Stowe,et al. Epistasis and genotype-environment interaction for quantitative trait loci affecting flowering time in Arabidopsis thaliana , 2005, Genetica.
[4] W. Bradshaw,et al. Epistasis Underlying a Fitness Trait Within a Natural Population of the Pitcher-Plant Mosquito, Wyeomyia smithii , 2005, Genetics.
[5] D. Charlesworth,et al. A Gradual Process of Recombination Restriction in the Evolutionary History of the Sex Chromosomes in Dioecious Plants , 2004, PLoS biology.
[6] C. Petropoulos,et al. Evidence for Positive Epistasis in HIV-1 , 2004, Science.
[7] T. Pankiw,et al. Pleiotropy, epistasis and new QTL: the genetic architecture of honey bee foraging behavior. , 2004, The Journal of heredity.
[8] Rafael Sanjuán,et al. The contribution of epistasis to the architecture of fitness in an RNA virus. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[9] N. Barton,et al. EFFECTS OF GENETIC DRIFT ON VARIANCE COMPONENTS UNDER A GENERAL MODEL OF EPISTASIS , 2004, Evolution; international journal of organic evolution.
[10] A. Hoffmann,et al. Genetic correlations, tradeoffs and environmental variation , 2004, Heredity.
[11] X. Vekemans,et al. INVITED REVIEW: Plant self‐incompatibility in natural populations: a critical assessment of recent theoretical and empirical advances , 2004, Molecular ecology.
[12] Chris S. Haley,et al. Epistasis: too often neglected in complex trait studies? , 2004, Nature Reviews Genetics.
[13] M. Toro,et al. EPISTASIS AND THE TEMPORAL CHANGE IN THE ADDITIVE VARIANCE‐COVARIANCE MATRIX INDUCED BY DRIFT , 2004, Evolution; international journal of organic evolution.
[14] O. Gaggiotti,et al. Metapopulation biology: past, present, and future , 2004 .
[15] Jianzhi Zhang,et al. Testing the chromosomal speciation hypothesis for humans and chimpanzees. , 2004, Genome research.
[16] J. Cheverud,et al. Epistasis affecting litter size in mice , 2004, Journal of evolutionary biology.
[17] L. Rieseberg,et al. Chromosomal evolution and speciation: a recombination-based approach. , 2003, The New phytologist.
[18] Wen-Hsiung Li,et al. Comment on "Chromosomal Speciation and Molecular Divergence-Accelerated Evolution in Rearranged Chromosomes" , 2003, Science.
[19] E. J. Bowers. Chromosomal Speciation , 2003, Science.
[20] Deborah Charlesworth,et al. Effects of inbreeding on the genetic diversity of populations. , 2003, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[21] W. Anderson,et al. Evolutionary genomics of inversions in Drosophila pseudoobscura: Evidence for epistasis , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[22] J. Mallet,et al. Mimicry: developmental genes that contribute to speciation , 2003, Evolution & development.
[23] A. Wilson,et al. Heritable genetic variation and potential for adaptive evolution in asexual aphids (Aphidoidea) , 2003 .
[24] N. Barton,et al. Chromosomal Speciation and Molecular Divergence--Accelerated Evolution in Rearranged Chromosomes , 2003, Science.
[25] J. Goudet,et al. THE ADDITIVE GENETIC VARIANCE AFTER BOTTLENECKS IS AFFECTED BY THE NUMBER OF LOCI INVOLVED IN EPISTATIC INTERACTIONS , 2003, Evolution; international journal of organic evolution.
[26] N. Barton,et al. ACCUMULATING POSTZYGOTIC ISOLATION GENES IN PARAPATRY: A NEW TWIST ON CHROMOSOMAL SPECIATION , 2003, Evolution; international journal of organic evolution.
[27] E. H. Bryant,et al. A direct experimental test of founder‐flush effects on the evolutionary potential for assortative mating , 2003, Journal of evolutionary biology.
[28] B. Sinervo,et al. Correlational selection and the evolution of genomic architecture , 2002, Heredity.
[29] M. Wade,et al. A gene's eye view of epistasis, selection and speciation , 2002 .
[30] C. A. Machado,et al. Inferring the history of speciation from multilocus DNA sequence data: the case of Drosophila pseudoobscura and close relatives. , 2002, Molecular biology and evolution.
[31] R. Kassen. The experimental evolution of specialists, generalists, and the maintenance of diversity , 2002 .
[32] M. Wade,et al. Alternative definitions of epistasis: dependence and interaction , 2001 .
[33] L H. Rieseberg,et al. Chromosomal rearrangements and speciation. , 2001, Trends in ecology & evolution.
[34] H. Ellegren,et al. Multiple and independent cessation of recombination between avian sex chromosomes. , 2001, Genetics.
[35] P. Kover,et al. The genetic architecture of disease resistance in plants and the maintenance of recombination by parasites , 2001, Molecular ecology.
[36] L. Hurst. Epistasis and the Evolutionary Process , 2000, Heredity.
[37] C. Haley,et al. Single QTL effects, epistasis, and pleiotropy account for two-thirds of the phenotypic F(2) variance of growth and obesity in DU6i x DBA/2 mice. , 2000, Genome research.
[38] E. Hasson,et al. Contrasting population genetic structures using allozymes and the inversion polymorphism in Drosophila buzzatii , 2000 .
[39] M. Toro,et al. Epistasis and the conversion of non-additive to additive genetic variance at population bottlenecks. , 2000, Theoretical population biology.
[40] A. Wilson,et al. Microevolution, low clonal diversity and genetic affinities of parthenogenetic Sitobion aphids in New Zealand , 1999, Molecular ecology.
[41] A. D. Peters,et al. The Red Queen and Fluctuating Epistasis: A Population Genetic Analysis of Antagonistic Coevolution , 1999, The American Naturalist.
[42] M. Cáceres,et al. Recombination rate predicts inversion size in Diptera. , 1999, Genetics.
[43] B. Sheldon,et al. Genetic architecture of fitness and nonfitness traits: empirical patterns and development of ideas , 1999, Heredity.
[44] J. Cheverud,et al. EPISTASIS AND THE EVOLUTION OF ADDITIVE GENETIC VARIANCE IN POPULATIONS THAT PASS THROUGH A BOTTLENECK , 1999, Evolution; international journal of organic evolution.
[45] W. Delden,et al. A long‐term study on interactions between the Adh and αGpdh allozyme polymorphisms and the chromosomal inversion In(2L)t in a seminatural population of D. melanogaster , 1999 .
[46] Keith A. Gardner,et al. Hybrid zones and the genetic architecture of a barrier to gene flow between two sunflower species. , 1999, Genetics.
[47] M. Whitlock,et al. The changes in genetic and environmental variance with inbreeding in Drosophila melanogaster. , 1999, Genetics.
[48] M W Bruford,et al. Inbreeding of bottlenecked butterfly populations. Estimation using the likelihood of changes in marker allele frequencies. , 1999, Genetics.
[49] M. Toro,et al. THE ROLE OF EPISTASIS IN THE INCREASE IN THE ADDITIVE GENETIC VARIANCE AFTER POPULATION BOTTLENECKS , 1999 .
[50] M. Wade,et al. PERSPECTIVE: THE THEORIES OF FISHER AND WRIGHT IN THE CONTEXT OF METAPOPULATIONS: WHEN NATURE DOES MANY SMALL EXPERIMENTS , 1998, Evolution; international journal of organic evolution.
[51] P. Sunnucks,et al. Evolution of an ecological trait in parthenogenetic Sitobion aphids , 1998, Heredity.
[52] P. Armbruster,et al. EFFECTS OF POSTGLACIAL RANGE EXPANSION ON ALLOZYME AND QUANTITATIVE GENETIC VARIATION OF THE PITCHER‐PLANT MOSQUITO, WYEOMYIA SMITHII , 1998, Evolution; international journal of organic evolution.
[53] A. Weeks,et al. INTENSE SELECTION OF MITE CLONES IN A HETEROGENEOUS ENVIRONMENT , 1998, Evolution; international journal of organic evolution.
[54] W. G. Hill,et al. Bottleneck effect on genetic variance. A theoretical investigation of the role of dominance. , 1998, Genetics.
[55] W. G. Hill,et al. The effect of linkage disequilibrium and deviation from Hardy–Weinberg proportions on the changes in genetic variance with bottlenecking , 1998, Heredity.
[56] K. P. Lair,et al. Evolutionary divergence of the genetic architecture underlying photoperiodism in the pitcher-plant mosquito, Wyeomyia smithii. , 1997, Genetics.
[57] J. Cheverud,et al. GENE EFFECTS ON A QUANTITATIVE TRAIT: TWO‐LOCUS EPISTATIC EFFECTS MEASURED AT MICROSATELLITE MARKERS AND AT ESTIMATED QTL , 1997, Evolution; international journal of organic evolution.
[58] A. Ruíz,et al. On the fertility effects of pericentric inversions. , 1997, Genetics.
[59] Antonio Barbadilla,et al. INVERSION LENGTH AND BREAKPOINT DISTRIBUTION IN THE DROSOPHILA BUZZATII SPECIES COMPLEX: IS INVERSION LENGTH A SELECTED TRAIT? , 1997, Evolution; international journal of organic evolution.
[60] C. Goodnight,et al. Experimental Studies of Group Selection: What Do They Tell US About Group Selection in Nature? , 1997, The American Naturalist.
[61] N. Barton,et al. PERSPECTIVE: A CRITIQUE OF SEWALL WRIGHT'S SHIFTING BALANCE THEORY OF EVOLUTION , 1997, Evolution; international journal of organic evolution.
[62] L. Pray,et al. THE EFFECT OF INBREEDING ON PHENOTYPIC VARIANCE IN THE RED FLOUR BEETLE TRIBOLIUM CASTANEUM , 1997, Evolution; international journal of organic evolution.
[63] A. Long,et al. Genetic interactions between naturally occurring alleles at quantitative trait loci and mutant alleles at candidate loci affecting bristle number in Drosophila melanogaster. , 1996, Genetics.
[64] N. Schork,et al. Who's afraid of epistasis? , 1996, Nature Genetics.
[65] J. Willis. MEASURES OF PHENOTYPIC SELECTION ARE BIASED BY PARTIAL INBREEDING , 1996, Evolution; international journal of organic evolution.
[66] E. H. Bryant,et al. Nonadditive genetic structuring of morphometric variation in relation to a population bottleneck , 1996, Heredity.
[67] R. Frankham. Introduction to quantitative genetics (4th edn): by Douglas S. Falconer and Trudy F.C. Mackay Longman, 1996. £24.99 pbk (xv and 464 pages) ISBN 0582 24302 5 , 1996 .
[68] A. Prevosti,et al. TEMPORAL CHANGES IN CHROMOSOMAL POLYMORPHISM OF DROSOPHILA SUBOBSCURA RELATED TO CLIMATIC CHANGES , 1996, Evolution; international journal of organic evolution.
[69] J. Cheverud,et al. EPISTASIS AS A SOURCE OF INCREASED ADDITIVE GENETIC VARIANCE AT POPULATION BOTTLENECKS , 1996, Evolution; international journal of organic evolution.
[70] P. Gibson. Correcting for inbreeding in parent-offspring regression estimates of heritability with non-additive and genotype × environment effects present , 1996 .
[71] Michael C. Whitlock. Two-locus drift with sex chromosomes: the partitioning and conversion of variance in subdivided populations. , 1995, Theoretical population biology.
[72] E. H. Bryant,et al. AN ANALYSIS OF SELECTIONAL RESPONSE IN RELATION TO A POPULATION BOTTLENECK , 1995, Evolution; international journal of organic evolution.
[73] B. Roitberg,et al. Rapid response to intraclonal selection in the pea aphid (Acyrthosiphon pisum) , 1995, Evolutionary Ecology.
[74] C. Goodnight. EPISTASIS AND THE INCREASE IN ADDITIVE GENETIC VARIANCE: IMPLICATIONS FOR PHASE 1 OF WRIGHT'S SHIFTING‐BALANCE PROCESS , 1995, Evolution; international journal of organic evolution.
[75] J. Cheverud,et al. Epistasis and its contribution to genetic variance components. , 1995, Genetics.
[76] C. Kyriacou,et al. Genetic variability of courtship song in a population of Drosophila melanogaster , 1994, Animal Behaviour.
[77] M. Lynch,et al. Mutational divergence of life-history traits in an obligate parthenogen. , 1994, Genome.
[78] M. Whitlock,et al. GENE INTERACTION AFFECTS THE ADDITIVE GENETIC VARIANCE IN SUBDIVIDED POPULATIONS WITH MIGRATION AND EXTINCTION , 1993, Evolution; international journal of organic evolution.
[79] L. Silver,et al. The peculiar journey of a selfish chromosome: mouse t haplotypes and meiotic drive. , 1993, Trends in genetics : TIG.
[80] H. A. Orr,et al. INCREASED HERITABLE VARIATION FOLLOWING POPULATION BOTTLENECKS: THE ROLE OF DOMINANCE , 1993, Evolution; international journal of organic evolution.
[81] P. Sniegowski,et al. The fertility effects of pericentric inversions in Drosophila melanogaster. , 1993, Genetics.
[82] R. Browne. Population genetics and ecology of Artemia: Insights into parthenogenetic reproduction. , 1992, Trends in ecology & evolution.
[83] W. Bradshaw,et al. Epistasis and the genetic divergence of photoperiodism between populations of the pitcher-plant mosquito, Wyeomyia smithii. , 1992, Genetics.
[84] Douglas S. Glazier,et al. Effects of Food, Genotype, and Maternal Size and Age on Offspring Investment in Daphnia Magna , 1992 .
[85] D. Stratton. LIFE‐CYCLE COMPONENTS OF SELECTION IN ERIGERON ANNUUS: II. GENETIC VARIATION , 1992, Evolution; international journal of organic evolution.
[86] D. Stratton. Life history variation within populations of an asexual plant, Erigeron annuus (Asteraceae) , 1991 .
[87] B. Charlesworth,et al. The evolution of sex chromosomes. , 1991, Science.
[88] E. H. Bryant,et al. Fitness Rebound in Serially Bottlenecked Populations of the House Fly , 1990, The American Naturalist.
[89] H. Carson. Increased genetic variance after a population bottleneck. , 1990, Trends in ecology & evolution.
[90] C. López-Fanjul,et al. INBREEDING INCREASES GENETIC VARIANCE FOR VIABILITY IN DROSOPHILA MELANOGASTER , 1989, Evolution; international journal of organic evolution.
[91] H. Carson,et al. Increase in Genetic Variance Following a Population Bottleneck , 1989, The American Naturalist.
[92] J. B. Walsh,et al. Effects of linkage on rates of molecular evolution. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[93] M. Aguadé,et al. Colonization of America by Drosophila subobscura: Experiment in natural populations that supports the adaptive role of chromosomal-inversion polymorphism. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[94] C. Goodnight. EPISTASIS AND THE EFFECT OF FOUNDER EVENTS ON THE ADDITIVE GENETIC VARIANCE , 1988, Evolution; international journal of organic evolution.
[95] C. Cockerham,et al. Permanency of response to selection for quantitative characters in finite populations. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[96] W. Rice. THE ACCUMULATION OF SEXUALLY ANTAGONISTIC GENES AS A SELECTIVE AGENT PROMOTING THE EVOLUTION OF REDUCED RECOMBINATION BETWEEN PRIMITIVE SEX CHROMOSOMES , 1987, Evolution; international journal of organic evolution.
[97] C. Goodnight. ON THE EFFECT OF FOUNDER EVENTS ON EPISTATIC GENETIC VARIANCE , 1987, Evolution; international journal of organic evolution.
[98] E. H. Bryant,et al. The Effect of an Experimental Bottleneck upon Quantitative Genetic Variation in the Housefly. , 1986, Genetics.
[99] J. Powell,et al. FOUNDER‐FLUSH SPECIATION: AN UPDATE OF EXPERIMENTAL RESULTS WITH DROSOPHILA , 1985, Evolution; international journal of organic evolution.
[100] C. Cockerham,et al. Selection with partial selfing. I. Mass selection. , 1985, Genetics.
[101] M. Lynch. Destabilizing Hybridization, General-Purpose Genotypes and Geographic Parthenogenesis , 1984, The Quarterly Review of Biology.
[102] R. Lande. THE EXPECTED FIXATION RATE OF CHROMOSOMAL INVERSIONS , 1984, Evolution; international journal of organic evolution.
[103] Y. Inoue,et al. EVOLUTIONARY CHANGE OF THE CHROMOSOMAL POLYMORPHISM IN DROSOPHILA MELANOGASTER POPULATIONS , 1984, Evolution; international journal of organic evolution.
[104] M. Lynch. THE LIMITS TO LIFE HISTORY EVOLUTION IN DAPHNIA , 1984, Evolution; international journal of organic evolution.
[105] M. Lynch. THE GENETIC STRUCTURE OF A CYCLICAL PARTHENOGEN , 1984, Evolution; international journal of organic evolution.
[106] M. Lynch,et al. Phenotypic Evolution and Parthenogenesis , 1983, The American Naturalist.
[107] P. G. Williamson. Palaeontological documentation of speciation in Cenozoic molluscs from Turkana Basin , 1981, Nature.
[108] R. Lande,et al. Genetic Variation and Phenotypic Evolution During Allopatric Speciation , 1980, The American Naturalist.
[109] E. Parker. PHENOTYPIC CONSEQUENCES OF PARTHENOGENESIS IN CNEMIDOPHORUS LIZARDS. I. VARIABILITY IN PARTHENOGENETIC AND SEXUAL POPULATIONS , 1979, Evolution; international journal of organic evolution.
[110] E. Parker. PHENOTYPIC CONSEQUENCES OF PARTHENOGENESIS IN CNEMIDOPHORUS LIZARDS. II. SIMILARITY OF C. TESSELATUS TO ITS SEXUAL PARENTAL SPECIES , 1979, Evolution; international journal of organic evolution.
[111] I. Mackay,et al. Evolution of dominance , 1979, Nature.
[112] E. Parker. Ecological Implications of Clonal Diversity in Parthenogenetic Morphospecies , 1979 .
[113] S. Wright. Evolution and the Genetics of Populations, Volume 3: Experimental Results and Evolutionary Deductions , 1977 .
[114] B. Clarke,et al. Supergenes in polymorphic land snails , 1976, Heredity.
[115] R. Lande. NATURAL SELECTION AND RANDOM GENETIC DRIFT IN PHENOTYPIC EVOLUTION , 1976, Evolution; international journal of organic evolution.
[116] C. Clarke,et al. Further Studies on the Genetics of the Mimetic Butterfly Papilio memnon L. , 1971 .
[117] M. Kimura,et al. An introduction to population genetics theory , 1971 .
[118] T. P. Maslin. Taxonomic Problems in Parthenogenetic Vertebrates , 1968 .
[119] J. Turner. On Supergenes. I. The Evolution of Supergenes , 1967, The American Naturalist.
[120] W. G. Hill,et al. The effect of linkage on limits to artificial selection. , 1966, Genetical research.
[121] Cedric A. B. Smith,et al. Introduction to Quantitative Genetics , 1960 .
[122] C. Pigott. Genetics and the Origin of Species , 1959, Nature.
[123] M. Kimura. A MODEL OF A GENETIC SYSTEM WHICH LEADS TO CLOSER LINKAGE BY NATURAL SELECTION , 1956 .
[124] T. Dobzhansky. GENETICS OF NATURAL POPULATIONS. XXV. GENETIC CHANGES IN POPULATIONS OF DROSOPHILA ***PSEUDOOBSCURA AND DROSOPHILA PERSIMILIS IN SOME LOCALITIES IN CALIFORNIA , 1956 .
[125] C. Waddington,et al. “Animal Cytology and Evolution” , 1955, Nature.
[126] A. Robertson,et al. The Effect of Inbreeding on the Variation Due to Recessive Genes. , 1952, Genetics.
[127] S WRIGHT,et al. Genetical Structure of Populations , 1950, British medical journal.
[128] H. Muller. Some Genetic Aspects of Sex , 1932, The American Naturalist.
[129] R. Punnett,et al. The Genetical Theory of Natural Selection , 1930, Nature.
[130] L. Meffert,et al. The genetic architecture of house fly mating behavior. , 2005, Current topics in developmental biology.
[131] Michael J. Wade,et al. Epistasis, complex traits, and mapping genes , 2004, Genetica.
[132] O. Gaggiotti,et al. 1 – Metapopulation Biology: Past, Present, and Future , 2004 .
[133] Xi Wang,et al. S-RNase-mediated self-incompatibility. , 2003, Journal of experimental botany.
[134] M. Whitlock,et al. MULTIPLE FITNESS PEAKS AND EPISTASIS , 1995 .
[135] Gabriel Moreno. GENETIC ARCHITECTURE, GENETIC BEHAVIOR, AND CHARACTER EVOLUTION , 1994 .
[136] A. Hastings,et al. Metapopulation Dynamics and Genetics , 1994 .
[137] N. Barton,et al. Evolutionary quantitative genetics: how little do we know? , 1989, Annual review of genetics.
[138] M. Turelli,et al. Genotype-environment interactions and the maintenance of polygenic variation. , 1989, Genetics.
[139] D. Falconer. Introduction to quantitative genetics. 1. ed. , 1984 .
[140] J. Bull. Evolution of sex determining mechanisms , 1983 .
[141] M. Coluzzi,et al. Chromosomal differentiation and adaptation to human environments in the Anopheles gambiae complex. , 1979, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[142] B. Clarke,et al. Supergenes in polymorphic land snails. I. Partula taeniata. , 1976, Heredity.
[143] R. Fisher. XV.—The Correlation between Relatives on the Supposition of Mendelian Inheritance. , 1919, Transactions of the Royal Society of Edinburgh.
[144] L. Penrose,et al. THE CORRELATION BETWEEN RELATIVES ON THE SUPPOSITION OF MENDELIAN INHERITANCE , 2022 .