Rugged adaptive landscapes shape a complex, sympatric radiation

Proc Biol Sci. 2016 Jan 13;283(1822):20152342. doi: 10.1098/rspb.2015.2342.

Abstract

Strong disruptive ecological selection can initiate speciation, even in the absence of physical isolation of diverging populations. Species evolving under disruptive ecological selection are expected to be ecologically distinct but, at least initially, genetically weakly differentiated. Strong selection and the associated fitness advantages of narrowly adapted individuals, coupled with assortative mating, are predicted to overcome the homogenizing effects of gene flow. Theoretical plausibility is, however, contrasted by limited evidence for the existence of rugged adaptive landscapes in nature. We found evidence for multiple, disruptive ecological selection regimes that have promoted divergence in the sympatric, incipient radiation of 'sharpfin' sailfin silverside fishes in ancient Lake Matano (Sulawesi, Indonesia). Various modes of ecological specialization have led to adaptive morphological differences between the species, and differently adapted morphs display significant but incomplete reproductive isolation. Individual fitness and variation in morphological key characters show that disruptive selection shapes a rugged adaptive landscape in this small but complex incipient lake fish radiation.

Keywords: Telmatherina; adaptive landscapes; adaptive radiation; disruptive selection; ecological speciation; sympatric speciation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Biological*
  • Animals
  • Ecosystem
  • Feeding Behavior
  • Fishes / anatomy & histology
  • Fishes / genetics
  • Fishes / physiology*
  • Genetic Speciation
  • Genetic Variation
  • Geography
  • Indonesia
  • Phenotype
  • Selection, Genetic