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Phenotypic plasticity in evolutionary rescue experiments
Author(s) -
LuisMiguel Chevin,
Romain Gallet,
Richard Gomulkiewicz,
Robert D. Holt,
Simon Fellous
Publication year - 2012
Publication title -
philosophical transactions of the royal society b biological sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.753
H-Index - 272
eISSN - 1471-2970
pISSN - 0962-8436
DOI - 10.1098/rstb.2012.0089
Subject(s) - natural selection , robustness (evolution) , experimental evolution , multicellular organism , inheritance (genetic algorithm) , population , biology , evolutionary biology , phenotypic plasticity , selection (genetic algorithm) , adaptation (eye) , computer science , ecology , artificial intelligence , genetics , neuroscience , gene , demography , sociology
Population persistence in a new and stressful environment can be influenced by the plastic phenotypic responses of individuals to this environment, and by the genetic evolution of plasticity itself. This process has recently been investigated theoretically, but testing the quantitative predictions in the wild is challenging because (i) there are usually not enough population replicates to deal with the stochasticity of the evolutionary process, (ii) environmental conditions are not controlled, and (iii) measuring selection and the inheritance of traits affecting fitness is difficult in natural populations. As an alternative, predictions from theory can be tested in the laboratory with controlled experiments. To illustrate the feasibility of this approach, we briefly review the literature on the experimental evolution of plasticity, and on evolutionary rescue in the laboratory, paying particular attention to differences and similarities between microbes and multicellular eukaryotes. We then highlight a set of questions that could be addressed using this framework, which would enable testing the robustness of theoretical predictions, and provide new insights into areas that have received little theoretical attention to date.

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