Host-parasitoid dynamics and the success of biological control when parasitoids are prone to allee effects

In sexual organisms, low population density can result in mating failures and subsequently yields a low population growth rate and high chance of extinction. For species that are in tight interaction, as in host-parasitoid systems, population dynamics are primarily constrained by demographic interde...

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Main Authors Bompard , Anais (INRAUniversité Paris 06, ParisParis(France). USC Ecol Populat & Communautes 2031CNRS, ENS, UMR Ecol & Evolut 7625), Amat , Isabelle (Université de Lyon 1, Villeurbanne(France). CNRS, UMR Lab Biometrie & Biol Evolut 5558), Fauvergue , Xavier (INRA , Biot (France). UMR 1355 Institut Sophia Agrobiotech ), Spataro , Thierry (INRAUniversité Paris 06AgroParisTech, ParisParisParis(France). USC Ecol Populat & Communautes 2031CNRS, ENS, UMR Ecol & Evolut 7625)
Format Publication
LanguageEnglish
Published 2013
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Summary:In sexual organisms, low population density can result in mating failures and subsequently yields a low population growth rate and high chance of extinction. For species that are in tight interaction, as in host-parasitoid systems, population dynamics are primarily constrained by demographic interdependences, so that mating failures may have much more intricate consequences. Our main objective is to study the demographic consequences of parasitoid mating failures at low density and its consequences on the success of biological control. For this, we developed a deterministic host-parasitoid model with a mate-finding Allee effect, allowing to tackle interactions between the Allee effect and key determinants of host-parasitoid demography such as the distribution of parasitoid attacks and host competition. Our study shows that parasitoid mating failures at low density result in an extinction threshold and increase the domain of parasitoid deterministic extinction. When proned to mate finding difficulties, parasitoids with cyclic dynamics or low searching efficiency go extinct; parasitoids with high searching efficiency may either persist or go extinct, depending on host intraspecific competition. We show that parasitoids suitable as biocontrol agents for their ability to reduce host populations are particularly likely to suffer from mate-finding Allee effects. This study highlights novel perspectives for understanding of the dynamics observed in natural host-parasitoid systems and improving the success of parasitoid introductions.
Bibliography:2013019859
10.1371/journal.pone.0076768