The puzzle of sub-maximal resource use by a parasitoid wasp
Kathryn J. Montovan, Christelle Couchoux, Laura E. Jones, H. Kern, Reeve, and Saskya van Nouhuys

TL;DR
This paper investigates why a parasitoid wasp leaves most host eggs unexploited despite high competition, using empirical data and models to explain its restraint through optimal foraging strategies.
Contribution
The study provides evidence that an optimal foraging model explains sub-maximal resource use in parasitoid wasps, challenging simpler hypotheses and highlighting the role of costs in restraint.
Findings
Wasp parasitizes only about a third of host eggs despite high host availability.
Simple constraints like asynchronous egg maturation do not explain low parasitism.
Optimal foraging models incorporating superparasitism and hyperparasitism costs account for observed behavior.
Abstract
When there is conspicuous under-exploitation of a limited resource, it is worth asking what mechanisms allow presumably valuable resources to be left unused? Evolutionary biologists have generated a wide range of hypotheses to explain this, ranging from interdemic group selection to selfishly prudent individual restraint. We consider a situation in which, in spite of high intraspecific competition, individuals leave most of a key resource unexploited. The parasitic wasp that does this finds virtually all host egg clusters in a landscape, but parasitizes only about a third of the eggs in each, and then leaves a deterrent mark around the cluster. We first test, and reject, a series of system-specific simple constraints that might limit full host exploitation, such as asynchronous maturation of host eggs. We then consider classical hypotheses for the evolution of restraint. Prudent…
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