Literature DB >> 30794444

The Evolution of Marine Larval Dispersal Kernels in Spatially Structured Habitats: Analytical Models, Individual-Based Simulations, and Comparisons with Empirical Estimates.

Allison K Shaw, Cassidy C D'Aloia, Peter M Buston.   

Abstract

Understanding the causes of larval dispersal is a major goal of marine ecology, yet most research focuses on proximate causes. Here we ask how ultimate, evolutionary causes affect dispersal. Building on Hamilton and May's classic 1977 article "Dispersal in Stable Habitats," we develop analytic and simulation models for the evolution of dispersal kernels in spatially structured habitats. First, we investigate dispersal in a world without edges and find that most offspring disperse as far as possible, opposite the pattern of empirical data. Adding edges to our model world leads to nearly all offspring dispersing short distances, again a mismatch with empirical data. Adding resource heterogeneity improves our results: most offspring disperse short distances with some dispersing longer distances. Finally, we simulate dispersal evolution in a real seascape in Belize and find that the simulated dispersal kernel and an empirical dispersal kernel from that seascape both have the same shape, with a high level of short-distance dispersal and a low level of long-distance dispersal. The novel contributions of this work are to provide a spatially explicit analytic extension of Hamilton and May's 1977 work, to demonstrate that our spatially explicit simulations and analytic models provide equivalent results, and to use simulation approaches to investigate the evolution of dispersal kernel shape in spatially complex habitats. Our model could be modified in various ways to investigate dispersal evolution in other species and seascapes, providing new insights into patterns of marine larval dispersal.

Keywords:  biological oceanography; dispersal kernel; evolutionarily stable strategy; larval dispersal; marine ecology; population connectivity

Mesh:

Year:  2019        PMID: 30794444     DOI: 10.1086/701667

Source DB:  PubMed          Journal:  Am Nat        ISSN: 0003-0147            Impact factor:   3.926


  3 in total

1.  Population genomic analyses reveal hybridization and marked differences in genetic structure of Scurria limpet sister species with parapatric distributions across the South Eastern Pacific.

Authors:  Pablo Saenz-Agudelo; Lívia Peluso; Roberto Nespolo; Bernardo R Broitman; Pilar A Haye; Marco A Lardies
Journal:  Ecol Evol       Date:  2022-05-07       Impact factor: 3.167

2.  Seed dispersal as a search strategy: dynamic and fragmented landscapes select for multi-scale movement strategies in plants.

Authors:  Jelle Treep; Monique de Jager; Frederic Bartumeus; Merel B Soons
Journal:  Mov Ecol       Date:  2021-01-29       Impact factor: 3.600

3.  An integrative investigation of sensory organ development and orientation behavior throughout the larval phase of a coral reef fish.

Authors:  John E Majoris; Matthew A Foretich; Yinan Hu; Katie R Nickles; Camilla L Di Persia; Romain Chaput; E Schlatter; Jacqueline F Webb; Claire B Paris; Peter M Buston
Journal:  Sci Rep       Date:  2021-06-11       Impact factor: 4.379

  3 in total

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