Published May 16, 2023 | Version v1

To disperse or compete? Coevolution of traits leads to a limited number of reproductive strategies

  • 1. Tokyo Metropolitan University
  • 2. Sorbonne University

Description

Reproductive strategies are defined by a combination of behavioural, morphological, and life-history traits. Reproductive investment and offspring propagule size are two key traits defining reproductive strategies. While a substantial amount of work has been devoted to understanding the independent fitness effects of each of these traits, it remains unclear how coevolution between them ultimately affects the evolution of reproductive strategies, and how this might influence the relationship between dispersal and environmental factors. In this study, we explore how the evolution of reproductive strategies defined by these two coevolving traits is influenced by resource availability and spatial structuring of the environment using a simulation model. We find three possible equilibrium strategies across all scenarios: a competitor strategy with high reproductive investment (producing large propagules which disperse short distances), and two coloniser strategies differing in reproductive investment (both producing small propagules which disperse long distances). The possible equilibrium strategies for each scenario depended on starting conditions, spatial structure and resource availability. Evolutionary transitions between these equilibrium strategies were more likely in heterogeneous than homogeneous landscapes and at higher resource levels. Transition from coloniser strategy to competitor strategy was usually a two-step process, with changes in propagule size following initial evolution in investment. This highlights how the interaction between the two trait axes affects the evolution of reproductive strategies, particularly where fitness valleys preclude the simultaneous evolution of traits. Our results highlight the need to incorporate trait coevolution into evolutionary models to help develop a more integrative understanding of the structure of natural populations and how the interaction between traits constrains or hinders evolutionary processes.

Notes

Funding provided by: Japan Society for the Promotion of Science
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100001691
Award Number:

Files

Aggregated.zip

Files (1.9 MB)

Name Size Download all
md5:abe7e67f68972669e88e2af1bb2c7480
902.4 kB Preview Download
md5:908222b6368168f938512d50e2d43df1
926.0 kB Preview Download
md5:333a9e350a91f97e0ccd697a5d0190c7
957 Bytes Preview Download
md5:327f66d7ba20d46a555dc7733e2bb510
24.1 kB Download

Additional details

Related works