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Towards evolutionary predictions: Current promises and challenges

  • Meike T. Wortel
  • , Deepa Agashe
  • , Susan F. Bailey
  • , Claudia Bank
  • , Karen Bisschop
  • , Thomas Blankers
  • , Johannes Cairns
  • , Enrico Sandro Colizzi
  • , Davide Cusseddu
  • , Michael M. Desai
  • , Bram van Dijk
  • , Martijn Egas
  • , Jacintha Ellers
  • , Astrid T. Groot
  • , David G. Heckel
  • , Marcelle L. Johnson
  • , Ken Kraaijeveld
  • , Joachim Krug
  • , Liedewij Laan
  • , Michael Lässig
  • Peter A. Lind, Jeroen Meijer, Luke M. Noble, Samir Okasha, Paul B. Rainey, Daniel E. Rozen, Shraddha Shitut, Sander J. Tans, Olivier Tenaillon, Henrique Teotónio, J. Arjan G.M. de Visser, Marcel E. Visser, Renske M.A. Vroomans, Gijsbert D.A. Werner, Bregje Wertheim, Pleuni S. Pennings
  • Swammerdam Institute for Life Sciences
  • National Centre for Biological Sciences
  • Clarkson University
  • University of Bern
  • Swiss Institute of Bioinformatics
  • Instituto Gulbenkian de Ciência
  • Institute for Biodiversity and Ecosystem Dynamics - Amsterdam
  • Origins Center
  • KU Leuven
  • University of Helsinki
  • University of Leiden
  • Harvard University
  • Max Planck Institute for Evolutionary Biology
  • Vrije Universiteit Amsterdam
  • Max Planck Institute for Chemical Ecology
  • NIOO
  • University of Applied Sciences Leiden
  • Germany; University of Cologne
  • Department of Bionanoscience, TU Delft
  • Umeå University
  • Universiteit Utrecht
  • PSL research University & IPSL
  • University of Bristol
  • PSL Research University
  • Institute of Biology Leiden
  • FOM Institute for Atomic and Molecular Physics (AMOLF)
  • Laboratoire de Probabilités et Modèles Aléatoires
  • Wageningen University & Research
  • University of Amsterdam
  • University of Oxford
  • ICS/University of Groningen
  • San Francisco State University

Résultats de recherche: Contribution à un journalArticle de révisionRevue par des pairs

46 Citations (Scopus)

Résumé

Evolution has traditionally been a historical and descriptive science, and predicting future evolutionary processes has long been considered impossible. However, evolutionary predictions are increasingly being developed and used in medicine, agriculture, biotechnology and conservation biology. Evolutionary predictions may be used for different purposes, such as to prepare for the future, to try and change the course of evolution or to determine how well we understand evolutionary processes. Similarly, the exact aspect of the evolved population that we want to predict may also differ. For example, we could try to predict which genotype will dominate, the fitness of the population or the extinction probability of a population. In addition, there are many uses of evolutionary predictions that may not always be recognized as such. The main goal of this review is to increase awareness of methods and data in different research fields by showing the breadth of situations in which evolutionary predictions are made. We describe how diverse evolutionary predictions share a common structure described by the predictive scope, time scale and precision. Then, by using examples ranging from SARS-CoV2 and influenza to CRISPR-based gene drives and sustainable product formation in biotechnology, we discuss the methods for predicting evolution, the factors that affect predictability and how predictions can be used to prevent evolution in undesirable directions or to promote beneficial evolution (i.e. evolutionary control). We hope that this review will stimulate collaboration between fields by establishing a common language for evolutionary predictions.

langue originaleAnglais
Pages (de - à)3-21
Nombre de pages19
journalEvolutionary Applications
Volume16
Numéro de publication1
Les DOIs
étatPublié - 1 janv. 2023
Modification externeOui

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