Minor variations in multicellular life cycles have major effects on adaptation

PLoS Comput Biol. 2023 Apr 21;19(4):e1010698. doi: 10.1371/journal.pcbi.1010698. eCollection 2023 Apr.

Abstract

Multicellularity has evolved several independent times over the past hundreds of millions of years and given rise to a wide diversity of complex life. Recent studies have found that large differences in the fundamental structure of early multicellular life cycles can affect fitness and influence multicellular adaptation. Yet, there is an underlying assumption that at some scale or categorization multicellular life cycles are similar in terms of their adaptive potential. Here, we consider this possibility by exploring adaptation in a class of simple multicellular life cycles of filamentous organisms that only differ in one respect, how many daughter filaments are produced. We use mathematical models and evolutionary simulations to show that despite the similarities, qualitatively different mutations fix. In particular, we find that mutations with a tradeoff between cell growth and group survival, i.e. "selfish" or "altruistic" traits, spread differently. Specifically, altruistic mutations more readily spread in life cycles that produce few daughters while in life cycles producing many daughters either type of mutation can spread depending on the environment. Our results show that subtle changes in multicellular life cycles can fundamentally alter adaptation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acclimatization
  • Animals
  • Biological Evolution
  • Life Cycle Stages*
  • Models, Theoretical*
  • Phenotype

Grants and funding

The work is supported by grant 2018-03630 from the Swedish research council (https://www.vr.se/english). EL received the reward. The funders did not play any role in Study design, Data collection and analysis, the Decision to publish, or Preparation of the manuscript.