1988Population EcologyRequires access

A simple model of host‐parasitoid interaction with host‐feeding

Norio Yamamura, Eizi Yano

Open publisher page 52 citations

Abstract

Summary A simple mathematical model of host‐parasitoid interaction with host‐feeding was presented with special reference to the system of the greenhouse whitefly and the parasitoid Encarsia formosa. In the model, when a parasitoid encounters a host, it has a choice between feeding the host and ovipositing one egg in the host. It was shown that an intermediate value of the feeding ratio of all attacks gives the minimum equilibrium host density and the minimum amplitudes of fluctuation in the densities of the two species. Computer simulations of a modified model with time lags also gave the similar results. The model suggested for natural enemy introduction program that parasitoid species with host‐feeding habits are promising agents for effective controls for pest insects and that the timing of introduction is very important. By an evolutionary analysis, it was shown that the feeding ratio evolves to minimize the host density under natural selection among parasitoids.

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Summary A simple mathematical model of host‐parasitoid interaction with host‐feeding was presented with special reference to the system of the greenhouse whitefly and the parasitoid Encarsia formosa. In the model, when a parasitoid encounters a host, it has a choice between feeding the host and ovipositing one egg in the host. It was shown that an intermediate value of the feeding ratio of all attacks gives the minimum equilibrium host density and the minimum amplitudes of fluctuation in the densities of the two species. Computer simulations of a modified model with time lags also gave the similar results. The model suggested for natural enemy introduction program that parasitoid species with host‐feeding habits are promising agents for effective controls for pest insects and that the timing of introduction is very important. By an evolutionary analysis, it was shown that the feeding ratio evolves to minimize the host density under natural selection among parasitoids.

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Available abstract

Summary A simple mathematical model of host‐parasitoid interaction with host‐feeding was presented with special reference to the system of the greenhouse whitefly and the parasitoid Encarsia formosa. In the model, when a parasitoid encounters a host, it has a choice between feeding the host and ovipositing one egg in the host. It was shown that an intermediate value of the feeding ratio of all attacks gives the minimum equilibrium host density and the minimum amplitudes of fluctuation in the densities of the two species. Computer simulations of a modified model with time lags also gave the similar results. The model suggested for natural enemy introduction program that parasitoid species with host‐feeding habits are promising agents for effective controls for pest insects and that the timing of introduction is very important. By an evolutionary analysis, it was shown that the feeding ratio evolves to minimize the host density under natural selection among parasitoids.

Key concepts: Parasitoid, Host (biology), Biology, Ecology, PEST analysis, Functional response, Zoology, Predation

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