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The extended evolutionary synthesis: its structure, assumptions and predictions

Proceedings of the Royal Society B Biological Sciences · 2015 · Vol. 282(1813) · pp. 20151019–20151019
Kevin N. LalandTobias UllerMarcus W. FeldmanKim SterelnyGerd B. MüllerArmin P. MoczekEva JablonkaJohn Odling‐Smee

Abstract

Scientific activities take place within the structured sets of ideas and assumptions that define a field and its practices. The conceptual framework of evolutionary biology emerged with the Modern Synthesis in the early twentieth century and has since expanded into a highly successful research program to explore the processes of diversification and adaptation. Nonetheless, the ability of that framework satisfactorily to accommodate the rapid advances in developmental biology, genomics and ecology has been questioned. We review some of these arguments, focusing on literatures (evo-devo, developmental plasticity, inclusive inheritance and niche construction) whose implications for evolution can be interpreted in two ways—one that preserves the internal structure of contemporary evolutionary theory and one that points towards an alternative conceptual framework. The latter, which we label the 'extended evolutionary synthesis' (EES), retains the fundaments of evolutionary theory, but differs in its emphasis on the role of constructive processes in development and evolution, and reciprocal portrayals of causation. In the EES, developmental processes, operating through developmental bias, inclusive inheritance and niche construction, share responsibility for the direction and rate of evolution, the origin of character variation and organism-environment complementarity. We spell out the structure, core assumptions and novel predictions of the EES, and show how it can be deployed to stimulate and advance research in those fields that study or use evolutionary biology.

Evolution and Genetic DynamicsEvolution and Science EducationGenetics, Aging, and Longevity in Model OrganismsNiche constructionEvolvabilityEvolutionary developmental biologyModern evolutionary synthesisReciprocalConstructiveCausationConceptual frameworkAdaptation (eye)Evolutionary dynamics

MeSH terms

ArchaeaEcologyBiological EvolutionModels, BiologicalDevelopmental BiologyBacterial Physiological PhenomenaGenomicsEukaryota
Citations
1,355
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69.17
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177
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References
Factors of Evolution:. The Theory of Stabilizing Selection
Journal of the American Medical Association · 1950 · 781 citations
Resynthesizing Evolutionary and Developmental Biology
Developmental Biology · 1996 · 666 citations
The Evolutionary Significance of Phenotypic Plasticity
BioScience · 1989 · 1,255 citations
The role of phenotypic plasticity in driving genetic evolution
Proceedings of the Royal Society B Biological Sciences · 2003 · 1,483 citations
Evolution from Molecules to Men.
Journal of Ecology · 1984 · 1,145 citations
<i>The Structure of Scientific Revolutions</i>
Physics Today · 1963 · 35,524 citations
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