Surviving the change to warning colouration: Density-dependent polyphenism suggests a route for the evolution of aposematism


Abstract:

How warning colouration first appeared remains a disputed question in evolutionary biology. A density-dependent transition from crypsis to aposematism that occurs during phase change in the desert locust (Schistocerca gregaria) provides insight into the conditions under which acquiring warning colouration is adaptive. When crowded for only a few hours, solitarious locusts cease avoiding each other and actively aggregate. This occurs well before they acquire warning colouration. We show that accompanying this early behavioural gregarisation is a remarkable shift in feeding behaviour, in which solitarious insects switch from being deterred by a toxic plant alkaloid to feeding avidly upon foods containing it. A computer simulation shows how crypsis ceases to be effective as an anti-predator strategy when solitarious locusts are crowded, how chemical defence becomes essential as conspicuousness increases with local density, and how warning colouration becomes advantageous under these conditions. These findings provide empirical evidence for an adaptive route for the change from a cryptic edible phenotype to a brightly coloured toxic one. © Birkhäuser Verlag, 2005.

Año de publicación:

2005

Keywords:

  • Induced defences
  • Anti-predator strategies
  • Phase polymorphism
  • individual-based modelling
  • Schistocerca gregaria
  • Phenotypic plasticity

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Evolución
  • Evolución

Áreas temáticas:

  • Genética y evolución
  • Arthropoda
  • Partes y sistemas específicos de las plantas