The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
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Plasticity-mediated persistence in new and changing environmentsAustralian black field crickets show changes in neural gene expression associated with socially-induced morphological, life-history, and behavioral plasticity.Predicting the evolutionary dynamics of seasonal adaptation to novel climates in Arabidopsis thaliana.The genetics of phenotypic plasticity. XIII. Interactions with developmental instability.Genetic evolution, plasticity, and bet-hedging as adaptive responses to temporally autocorrelated fluctuating selection: A quantitative genetic model.The ubiquity of phenotypic plasticity in plants: a synthesisExperimental Evolution of Gene Expression and Plasticity in Alternative Selective Regimes.Constraints on the evolution of phenotypic plasticity: limits and costs of phenotype and plasticity.Bet-hedging as a complex interaction among developmental instability, environmental heterogeneity, dispersal, and life-history strategy.Evidence for microbial local adaptation in nature.Facing environmental predictability with different sources of epigenetic variation.High altitude population of Arabidopsis thaliana is more plastic and adaptive under common garden than controlled condition.The role of phenotypic plasticity on population differentiation.Habitat-related variation in the plasticity of a UV-sensitive photoreceptor over a small spatial scale in the palmate newt.Reef-Specific Patterns of Gene Expression Plasticity in Eastern Oysters (Crassostrea virginica).Frequency-dependent fitness in gynodioecious Lobelia siphilitica.The genetics of phenotypic plasticity. XV. Genetic assimilation, the Baldwin effect, and evolutionary rescue.The combined effects of temporal autocorrelation and the costs of plasticity on the evolution of plasticity.Developmental plasticity: re-conceiving the genotype.How reversible is development? Contrast between developmentally plastic gain and loss of segments in barnacle feeding legs.Evolution of environmental cues for phenotypic plasticity.When three traits make a line: evolution of phenotypic plasticity and genetic assimilation through linear reaction norms in stochastic environments.Experience drives the development of movement-cognition correlations in a butterflyAssortative mating can limit the evolution of phenotypic plasticity
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The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 22 October 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
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The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
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type
label
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
@en
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
@nl
prefLabel
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
@en
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
@nl
P2860
P356
P1476
The genetics of phenotypic plasticity. XII. Temporal and spatial heterogeneity.
@en
P2093
Samuel M Scheiner
P2860
P304
P356
10.1002/ECE3.792
P577
2013-10-22T00:00:00Z