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A generalised approach to the study and understanding of adaptive evolution.

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Otsuka, Jun
Luque, Victor J.

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Wiley
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Evolutionary theory has made large impacts on our understanding and management of the world, in part because it has been able to incorporate new data and new insights successfully. Nonetheless, there is currently a tension between certain biological phenomena and mainstream evolutionary theory. For example, how does the inheritance of molecular epigenetic changes fit into mainstream evolutionary theory? Is niche construction an evolutionary process? Is local adaptation via habitat choice also adaptive evolution? These examples suggest there is scope (and perhaps even a need) to broaden our views on evolution. We identify three aspects whose incorporation into a single framework would enable a more generalised approach to the understanding and study of adaptive evolution: (i) a broadened view of extended phenotypes; (ii) that traits can respond to each other; and (iii) that inheritance can be non-genetic. We use causal modelling to integrate these three aspects with established views on the variables and mechanisms that drive and allow for adaptive evolution. Our causal model identifies natural selection and non-genetic inheritance of adaptive parental responses as two complementary yet distinct and independent drivers of adaptive evolution. Both drivers are compatible with the Price equation; specifically, non-genetic inheritance of parental responses is captured by an often-neglected component of the Price equation. Our causal model is general and simplified, but can be adjusted flexibly in terms of variables and causal connections, depending on the research question and/or biological system. By revisiting the three examples given above, we show how to use it as a heuristic tool to clarify conceptual issues and to help design empirical research. In contrast to a gene-centric view defining evolution only in terms of genetic change, our generalised approach allows us to see evolution as a change in the whole causal structure, consisting not just of genetic but also of phenotypic and environmental variables.

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FJC2018-038661-I
FFI2016-76799-P
info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2013-2016/FFI2017-89639-P/ES/MECANISMOS EN LAS CIENCIAS: DE LO BIOLOGICO A LO SOCIAL/
CGL2016-79483-P
info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-108971GB-I00/ES/PRUEBAS EMPIRICAS Y TEORICAS DE LAS CAUSAS Y CONSECUENCIAS ECOLOGICAS Y EVOLUTIVAS DE LA ELECCION DE HABITAT COINCIDENTE/
19K00270

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We thank all the people with whom we have discussed the contents of this paper, and especially Benoit Pujol, Troy Day, and three anonymous reviewers. This research was supported by the Spanish Ministry of Science and Innovation (Juan de la Cierva fellowship FJC2018-038661-I to V. J. L., grants FFI2016-76799-P and FFI2017-89639-P to V. J. L., grants CGL2016-79483-P and PID2019-108971GB-I00 to P. E.), the Swedish Collegium for Advanced Study (P. E.), and the Japan Society for the Promotion of Science (grant 19K00270 to J. O.). Funding for open access publishing: Universidad Pablo de Olavide/CBUA.

Bibliographic reference

BIOLOGICAL REVIEWS 98: 352-375.

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