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W. Hamilton (1967)
Extraordinary Sex RatiosScience, 156
S. A. Frank (1984)
The behaviour and morphology of the fig wasps Pegoscapus aseutus and P. jiminezi: descriptions and suggested behaviors for phylogenetic studies, 91
S. Frank (1985)
HIERARCHICAL SELECTION THEORY AND SEX RATIOS. II. ON APPLYING THE THEORY, AND A TEST WITH FIG WASPSEvolution, 39
C. Nagelkerke (1996)
Discrete clutch sizes, local mate competition, and the evolution of precise sex allocation.Theoretical population biology, 49 3
Carlos Machado, E. Herre, S. McCafferty, E. Bermingham (1996)
Molecular phylogenies of fig pollinating and non‐pollinating wasps and the implications for the origin and evolution of the fig‐fig wasp mutualismJournal of Biogeography, 23
E. Herre, C. Machado, E. Bermingham, J. Nason, D. Windsor, S. McCafferty, W. Houten, K. Bachmann (1996)
Molecular phylogenies of figs and their pollinator waspsBritish Journal of Haematology
J. Cook (1993)
Sex determination in the Hymenoptera: a review of models and evidenceHeredity, 71
A. Purvis, A. Rambaut (1995)
Comparative analysis by independent contrasts (CAIC): an Apple Macintosh application for analysing comparative dataComputer applications in the biosciences : CABIOS, 11 3
W. Hamilton (1979)
WINGLESS AND FIGHTING MALES IN FIG WASPS AND OTHER INSECTS
C. Pennycuick (1975)
Chapter 1 – MECHANICS OF FLIGHT
West, Compton, Vincent, Herre, Cook (1998)
Virginity in haplodiploid populations: a comparison of estimation methodsEcological Entomology, 23
E. Herre, S. West (1997)
Conflict of interest in a mutualism: documenting the elusive fig wasp–seed trade–offProceedings of the Royal Society of London. Series B: Biological Sciences, 264
W. Scharloo, M. Hoogmoed, A. Kuile (1967)
Stabilizing and disruptive selection on a mutant character in Drosophila. I. The phenotypic variance and its components.Genetics, 56 4
C. Nagelkerke, I. Hardy (1994)
The influence of developmental mortality on optimal sex allocation under local mate competition .Behavioral Ecology, 5
Mark Pagel (1993)
Seeking the evolutionary regression coefficient: an analysis of what comparative methods measure.Journal of theoretical biology, 164 2
S. Orzack, E. Parker, Jean Gladstone (1991)
The comparative biology of genetic variation for conditional sex ratio behavior in a parasitic wasp, Nasonia vitripennis.Genetics, 127 3
E. A. Herre (1989)
Coevolution of reproductive characteristics in twelve species of new world figs and their pollinator wasps, 45
K. Flanagan, Stuart West, Stuart West, H. Godfray, H. Godfray (1998)
Local mate competition, variable fecundity and information use in a parasitoidAnimal Behaviour, 56
E. Ranta, H. Rita, M. Crawley (1994)
GLIM for EcologistsJournal of Animal Ecology, 63
A. Kondrashov, L. Yampolsky (1996)
HIGH GENETIC VARIABILITY UNDER THE BALANCE BETWEEN SYMMETRIC MUTATION AND FLUCTUATING STABILIZING SELECTIONGenetics Research, 68
T. Garland, P. Harvey, A. Ives (1992)
Procedures for the Analysis of Comparative Data Using Phylogenetically Independent ContrastsSystematic Biology, 41
S. Stearns, T. Kawecki (1994)
FITNESS SENSITIVITY AND THE CANALIZATION OF LIFE‐HISTORY TRAITSEvolution, 48
E. Martins (1992)
The Comparative Method in Evolutionary Biology, Paul H. Harvey, Mark D. Pagel. Oxford University Press, Oxford (1991), vii, + 239 Price $24.95 paperbackAnimal Behaviour, 44
J. Gibson, B. Bradley (1974)
Stabilising selection in constant and fluctuating environmentsHeredity, 33
H. Godfray (1990)
The causes and consequences of constrained sex allocation in haplodiploid animalsJournal of Evolutionary Biology, 3
D. Morgan, J. Cook (1994)
Extremely precise sex ratios in small clutches of a bethylid waspOikos, 71
J. Rosenheim (1993)
Single-Sex Broods and the Evolution of Nonsiblicidal Parasitoid WaspsThe American Naturalist, 141
I. Hardy (1992)
Non-binomial sex allocation and brood sex ratio variances in the parasitoid HymenopteraOikos, 65
M. Antolin, P. Ode, M. Strand (1995)
Variable sex ratios and ovicide in an outbreeding parasitic waspAnimal Behaviour, 49
Charles Darwin (1930)
The Genetical Theory of Natural SelectionNature, 126
J. Werren (1980)
Sex Ratio Adaptations to Local Mate Competition in a Parasitic WaspScience, 208
J. Greeff, S. Compton (1996)
Sequential oviposition and optimal sex ratios in pollinating fig waspsEcological Entomology, 21
N. Barton, M. Turelli (1989)
Evolutionary quantitative genetics: how little do we know?Annual review of genetics, 23
S. Frank (1984)
The Behavior and Morphology of the Fig Wasps Pegoscapus Assuetus and P. Jimenezi:Descriptions and Suggested Behavioral Characters for Phylogenetic StudiesPsyche, 91
E. A. Herre, S. A. West, J. M. Cook, S. G. Compton, F. Kiellberg (1997)
Fig wasp mating systems: pollinators and parasites, sex ratio adjustment and male polymorphism, population structure and its consequences
A. Burt (1989)
Comparative methods using phylogenetically independent contrasts
S. West, E. Herre (1994)
The ecology of the New World fig-parasitizing wasps Idarnes and implications for the evolution of the fig–pollinator mutualismProceedings of the Royal Society of London. Series B: Biological Sciences, 258
J. Pickering (1980)
Larval competition and brood sex ratios in the gregarious parasitoid Pachysomoides stupidusNature, 283
E. Herre (1987)
Optimality, plasticity and selective regime in fig wasp sex ratiosNature, 329
A. Pomiankowski, A. P. M⊘ller (1995)
A resolution of the lek paradox, 260
K. E. Flanagan, S. A. West, H. C. J. Godfray
Local mate competition, variable fucundity, and information utilization in a parasitoid
E. Herre (1996)
An overview of studies on a community of Panamanian figsJournal of Biogeography, 23
Robert Colwell (1981)
Group selection is implicated in the evolution of female-biased sex ratiosNature, 290
S. West, E. Herre, D. Windsor, P. Green (1996)
The ecology and evolution of the New World non-pollinating fig wasp communitiesJournal of Biogeography, 23
S. Frank (1986)
Hierarchical selection theory and sex ratios. I. General solutions for structured populations.Theoretical population biology, 29 3
D. M. Windsor, D. W. Morrison, M. A. Estribi, B. Leon (1989)
Phenology of fruit and leaf production by “strangler” figs on Barro Colorado Island, Panama, 45
H. Godfray (1988)
Virginity in haplodiploid populations: a study on fig waspsEcological Entomology, 13
N. T. Griffiths, H. C. J. Godfray (1988)
Local mate competition, sex ratio and clutch size in bethylid wasps, 22
J. Felsenstein (1985)
Phylogenies and the Comparative MethodThe American Naturalist, 125
E. G. Leigh, J. B. S. Haldane (1990)
Afterword
S. Stearns, M. Kaiser, T. Kawecki (1995)
The differential genetic and environmental canalization of fitness components in Drosophila melanogasterJournal of Evolutionary Biology, 8
(1995)
Agaonidae ( Hymenoptera Chalcidoidea ) and Ficus ( Moraceae ) : fig wasps and their figs , xv ( MesoAmerican Pe - goscapus )
L. Caren, J. Haldane (1933)
The Causes of EvolutionBioScience
W. Ritter (1923)
AS TO THE CAUSES OF EVOLUTION.Science, 57 1481
R. Elston (1982)
The mathematical theory of quantitative genetics
E. Herre (1985)
Sex Ratio Adjustment in Fig WaspsScience, 228
J. Nason, E. Herre, J. Hamrick (1996)
Paternity analysis of the breeding structure of strangler fig populations: evidence for substantial long-distance wasp dispersalJournal of Biogeography, 23
P. H. Harvey, M. Pagel (1991)
The comparative method in evolutionary biology
P. Phillips (1996)
MAINTENANCE OF POLYGENIC VARIATION VIA A MIGRATION–SELECTION BALANCE UNDER UNIFORM SELECTIONEvolution, 50
M. Turelli, N. Barton (1994)
Genetic and statistical analyses of strong selection on polygenic traits: what, me normal?Genetics, 138 3
P. McCullagh, J. A. Nelder (1989)
Generalized linear models
M. Turelli (1984)
Heritable genetic variation via mutation-selection balance: Lerch's zeta meets the abdominal bristle.Theoretical population biology, 25 2
S. West, E. Herre, S. Compton, H. Godfray, J. Cook (1997)
A comparative study of virginity in fig waspsAnimal Behaviour, 54
R. Lande, S. Arnold (1983)
THE MEASUREMENT OF SELECTION ON CORRELATED CHARACTERSEvolution, 37
I. C. W. Hardy, J. M. Cook (1995)
Brood sex ratio variance, developmental mortality and virginity in a gregarious parasitoid wasp, 103
P. Taylor (1981)
Intra-sex and inter-sex sibling interactions as sex ratio determinantsNature, 291
G. Williams (1979)
The question of adaptive sex ratio in outcrossed vertebratesProceedings of the Royal Society of London. Series B. Biological Sciences, 205
M. Pagel (1992)
A method for the analysis of comparative dataJournal of Theoretical Biology, 156
A. Kondrashov, D. Houle (1994)
Genotype—environment interactions and the estimation of the genomic mutation rate in Drosophila melanogasterProceedings of the Royal Society of London. Series B: Biological Sciences, 258
A. Grafen (1989)
The phylogenetic regression.Philosophical transactions of the Royal Society of London. Series B, Biological sciences, 326 1233
R. Green, G. Gordh, B. Hawkins (1982)
Precise Sex Ratios in Highly Inbred Parasitic WaspsThe American Naturalist, 120
E. A. Herre (1996)
Implications of studies on a community of Panamanian figs: emerging patterns and future directions, 23
R. Lande (1975)
The maintenance of genetic variability by mutation in a polygenic character with linked loci, 26
K. Lythgoe (1997)
CONSEQUENCES OF GENE FLOW IN SPATIALLY STRUCTURED POPULATIONSGenetics Research, 69
J. Wiebes (1979)
CO-EVOLUTION OF FIGS AND THEIR INSECT POLLINATORSAnnual Review of Ecology, Evolution, and Systematics, 10
E. Herre, S. West, J. Cook, S. Compton, F. Kjellberg (1997)
The Evolution of Mating Systems in Insects and Arachnids: Fig–associated wasps: pollinators and parasites, sex–ratio adjustment and male polymorphism, population structure and its consequences
Theory predicts that the phenotypic variance observed in a trait subject to stabilizing selection should be negatively correlated with the trait's impact on fitness. However, this relationship has rarely been tested directly. The offspring sex ratios produced by pollinating fig wasp foundresses upon entrance to a fruit and oviposition alone (single foundress sex ratios) are subject to stabilizing selection because too many males reduce the total number of dispersing females and too few males will result in unmated females or complete loss of the brood. Furthermore, we argue that the impact on fitness of, and therefore the intensity of stabilizing intensity on, single foundress sex ratios are correlated to how frequently a species produces single foundress broods in nature. Specifically, the intensity of stabilizing selection will be greater in species that encounter single foundress broods more frequently, both because the trait is expressed more often and because fitness shows a greater sensitivity to variation (narrower fitness profile) when that trait is expressed. Across 16 species of Panamanian pollinating fig wasps, the phenotypic variance in single foundress sex ratios was negatively correlated with the frequency with which that species encounters single foundress broods in nature. In addition, a formal comparative analysis based upon a molecular phylogeny of the wasps gave results that were the same as when species were used as independent data points.
Evolution – Oxford University Press
Published: Apr 1, 1998
Keywords: ; ; ; ;
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