Offspring size variation within broods as a bet-hedging strategy in unpredictable environments.
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Luc F Bussière | Russell Bonduriansky | R. Bonduriansky | D. Marshall | L. Bussière | Dustin J Marshall
[1] Peculiar Constraints on Life Histories Imposed by Protective or Nutritive Devices for Embryos , 1995 .
[2] J. J.,et al. EVOLUTION OF PHENOTYPIC VARIANCE , 2022 .
[3] M. Keough,et al. Intraspecific co-variation between egg and body size affects fertilisation kinetics of free-spawning marine invertebrates , 2000 .
[4] C. M. Lessells,et al. The Evolution of Life Histories , 1994 .
[5] C. Fox,et al. Evolutionary ecology of progeny size in arthropods. , 2000, Annual review of entomology.
[6] J. Gillespie. Natural Selection for Variances in Offspring Numbers: A New Evolutionary Principle , 1977, The American Naturalist.
[7] R. Alford,et al. Patterns and fitness consequences of intraclutch variation in egg provisioning in tropical Australian frogs , 2005, Oecologia.
[8] M. Hadfield,et al. Variability, flexibility and plasticity in life histories of marine invertebrates , 1996 .
[9] K. Berven,et al. The relationship among egg size, density and food level on larval development in the wood frog (Rana sylvatica) , 1988, Oecologia.
[10] F. Perron,et al. Life history and biogeography : patterns in Conus , 1994 .
[11] S. Goldhor. Ecology , 1964, The Yale Journal of Biology and Medicine.
[12] S. Einum,et al. Highly fecund mothers sacrifice offspring survival to maximize fitness , 2000, Nature.
[13] M. Keough,et al. Sperm environment affects offspring quality in broadcast spawning marine invertebrates , 2002 .
[14] C. Styan. Polyspermy, Egg Size, and the Fertilization Kinetics of Free‐Spawning Marine Invertebrates , 1998, The American Naturalist.
[15] M. Hart. What Aare the Costs of Small Egg Size for a Marine Invertebrate with Feeding Planktonic Larvae? , 1995, The American Naturalist.
[16] S. Kudo. Intraclutch egg-size variation in acanthosomatid bugs: adaptive allocation of maternal investment? , 2001 .
[17] H. A. Orr,et al. ABSOLUTE FITNESS, RELATIVE FITNESS, AND UTILITY , 2007, Evolution; international journal of organic evolution.
[18] G. Quinn,et al. Experimental Design and Data Analysis for Biologists , 2002 .
[19] J. Gibbons,et al. Morphological constraint on egg size: a challenge to optimal egg size theory? , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[20] R. Collin. Sex change, reproduction, and development of Crepidula adunca and Crepidula lingulata (Gastropoda : Calyptraeidae) , 2000 .
[21] D. Marshall,et al. Offspring size effects mediate competitive interactions in a colonial marine invertebrate. , 2006, Ecology.
[22] R. Emlet,et al. OFFSPRING SIZE AND PERFORMANCE IN VARIABLE ENVIRONMENTS: FIELD STUDIES ON A MARINE SNAIL , 2001 .
[23] A. Hendry,et al. When bigger is not better: selection against large size, high condition and fast growth in juvenile lemon sharks , 2007, Journal of evolutionary biology.
[24] M. Keough,et al. OFFSPRING SIZE AFFECTS THE POST-METAMORPHIC PERFORMANCE OF A COLONIAL MARINE INVERTEBRATE , 2003 .
[25] D. Levitan. Effects of gamete traits on fertilization in the sea and the evolution of sexual dimorphism , 1996, Nature.
[26] Joel P. Brockman,et al. What is Bet-Hedging , 1987 .
[27] Y. Harada,et al. Why Do Large Mothers Produce Large Offspring? Theory and a Test , 2001, The American Naturalist.
[28] T. Laaksonen. Hatching asynchrony as a bet-hedging strategy – an offspring diversity hypothesis , 2004 .
[29] S. Einum,et al. Does Within‐Population Variation in Fish Egg Size Reflect Maternal Influences on Optimal Values? , 2002, The American Naturalist.
[30] M. Keough,et al. The evolutionary ecology of offspring size in marine invertebrates. , 2007, Advances in marine biology.
[31] M. Johnston,et al. ENVIRONMENTAL AND GENETIC SOURCES OF DIVERSIFICATION IN THE TIMING OF SEED GERMINATION: IMPLICATIONS FOR THE EVOLUTION OF BET HEDGING , 2006, Evolution; international journal of organic evolution.
[32] M. Koops,et al. Environmental predictability and the cost of imperfect information: influences on offspring size variability , 2003 .
[33] G. Parker,et al. Optimal Egg Size and Clutch Size: Effects of Environment and Maternal Phenotype , 1986, The American Naturalist.
[34] S. Einum,et al. Environmental unpredictability and offspring size: conservative versus diversified bet-hedging , 2004 .
[35] M. Keough,et al. Sources of variation in larval quality for free-spawning marine invertebrates: Egg size and the local sperm environment , 2003 .
[36] P. Krug. Poecilogony in an estuarine opisthobranch: planktotrophy, lecithotrophy, and mixed clutches in a population of the ascoglossan Alderia modesta , 1998 .
[37] M. Byrne,et al. Patiriella pseudoexigua (Asteroidea: Asterinidae): a cryptic species complex revealed by molecular and embryological analyses , 2003, Journal of the Marine Biological Association of the United Kingdom.
[38] R. Emlet. Facultative planktotrophy in the tropical echinoid Clypeaster rosaceus (Linnaeus) and a comparison with obligate planktotrophy in Clypeaster subdepressus (Gray) (Clypeasteroida: Echinoidea) , 1986 .
[39] T. B. Bagenal. Relationship between Egg Size and Fry Survival in Brown Trout Salmo trutta L. , 1969 .
[40] R. R. Strathmann,et al. Constraints on egg masses. II. Effect of spacing, size, and number of eggs on ventilation of masses of embryos in jelly, adherent groups, or thin-walled capsules , 1984 .
[41] J. Bernardo. The Particular Maternal Effect of Propagule Size, Especially Egg Size: Patterns, Models, Quality of Evidence and Interpretations , 1996 .
[42] M. Geber,et al. Parental Investment in Offspring in Variable Environments: Theoretical and Empirical Considerations , 1987, The American Naturalist.
[43] M. Johnston,et al. Developmental instability as a bet-hedging strategy , 1997 .
[44] R. Podolsky. Fertilization ecology of egg coats: physical versus chemical contributions to fertilization success of free-spawned eggs. , 2002, The Journal of experimental biology.
[45] M. L. Crump. Variation in Propagule Size as a Function of Environmental Uncertainty for Tree Frogs , 1981, The American Naturalist.
[46] D. Lack. The Significance of Clutch‐size , 2008 .
[47] Does within‐population variation in egg size reduce intraspecific competition in Atlantic Salmon, Salmo salar? , 2004 .
[48] M. Keough,et al. Complex life cycles and offspring provisioning in marine invertebrates. , 2006, Integrative and comparative biology.
[49] P. Taylor,et al. Parental Care and the Evolution of Egg Size in Fishes , 1987, The American Naturalist.
[50] J. Capinera. Qualitative Variation in Plants and Insects: Effect of Propagule Size on Ecological Plasticity , 1979, The American Naturalist.
[51] T. Williams. INTRASPECIFIC VARIATION IN EGG SIZE AND EGG COMPOSITION IN BIRDS: EFFECTS ON OFFSPRING FITNESS , 1994, Biological reviews of the Cambridge Philosophical Society.
[52] R. Vance. On Reproductive Strategies in Marine Benthic Invertebrates , 1973, The American Naturalist.
[53] A. Hendry,et al. Optimal Size and Number of Propagules: Allowance for Discrete Stages and Effects of Maternal Size on Reproductive Output and Offspring Fitness , 2001, The American Naturalist.
[54] W. Hamilton,et al. Egg size variation as a function of environmental variability in parasitic trematodes , 2000 .
[55] J. Havenhand. Evolutionary Ecology of Larval Types , 2020 .
[56] C. Fox,et al. Egg Size Plasticity in a Seed Beetle: An Adaptive Maternal Effect , 1997, The American Naturalist.
[57] S. Stancyk. Reproductive ecology of marine invertebrates , 1979 .
[58] D. Cohen. Optimizing reproduction in a randomly varying environment. , 1966, Journal of theoretical biology.
[59] R. H. Kaplan. Greater Maternal Investment Can Decrease Offspring Survival in the Frog Bombina Orientalis , 1992 .
[60] W. S. Cooper,et al. Adaptive "coin-flipping": a decision-theoretic examination of natural selection for random individual variation. , 1982, Journal of theoretical biology.
[61] S. Geritz. Evolutionarily Stable Seed Polymorphism and Small-Scale Spatial Variation in Seedling Density , 1995, The American Naturalist.