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Why does the magnitude of genotype‐by‐environment interaction vary?
Author(s) -
Saltz Julia B.,
Bell Alison M.,
Flint Jonathan,
Gomulkiewicz Richard,
Hughes Kimberly A.,
Keagy Jason
Publication year - 2018
Publication title -
ecology and evolution
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.17
H-Index - 63
ISSN - 2045-7758
DOI - 10.1002/ece3.4128
Subject(s) - trait , biology , variation (astronomy) , phenotypic plasticity , gene–environment interaction , evolutionary biology , adaptation (eye) , ecology , genetic variation , genotype , genetics , gene , astrophysics , physics , computer science , programming language , neuroscience
Genotype‐by‐environment interaction (G × E), that is, genetic variation in phenotypic plasticity, is a central concept in ecology and evolutionary biology. G×E has wide‐ranging implications for trait development and for understanding how organisms will respond to environmental change. Although G × E has been extensively documented, its presence and magnitude vary dramatically across populations and traits. Despite this, we still know little about why G × E is so evident in some traits and populations, but minimal or absent in others. To encourage synthetic research in this area, we review diverse hypotheses for the underlying biological causes of variation in G × E. We extract common themes from these hypotheses to develop a more synthetic understanding of variation in G × E and suggest some important next steps.

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