Reversed optimality and predictive ecology: burrowing depth forecasts population change in a bivalve

Author:

van Gils Jan A1,Kraan Casper1,Dekinga Anne1,Koolhaas Anita1,Drent Jan1,de Goeij Petra1,Piersma Theunis12

Affiliation:

1. Department of Marine Ecology, NIOZ Royal Netherlands Institute for Sea ResearchPO Box 59, 1790 AB Den Burg, The Netherlands

2. Animal Ecology Group, Centre for Ecological and Evolutionary Studies, University of GroningenPO Box 14, 9750 AA Haren, The Netherlands

Abstract

Optimality reasoning from behavioural ecology can be used as a tool to infer how animals perceive their environment. Using optimality principles in a ‘reversed manner’ may enable ecologists to predict changes in population size before such changes actually happen. Here we show that a behavioural anti-predation trait (burrowing depth) of the marine bivalve Macoma balthica can be used as an indicator of the change in population size over the year to come. The per capita population growth rate between years t and t +1 correlated strongly with the proportion of individuals living in the dangerous top 4 cm layer of the sediment in year t : the more individuals in the top layer, the steeper the population decline. This is consistent with the prediction based on optimal foraging theory that animals with poor prospects should accept greater risks of predation. This study is among the first to document fitness forecasting in animals.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,Agricultural and Biological Sciences (miscellaneous)

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