Literature DB >> 27859175

Bacterial endosymbionts protect aphids in the field and alter parasitoid community composition.

Lukas Rothacher1,2, Mar Ferrer-Suay3, Christoph Vorburger1,2.   

Abstract

It has become increasingly evident that many organisms rely on microbial symbionts for defense against natural enemies, but the ecological importance of defensive symbionts for natural communities still needs to be investigated. A well-known example is Hamiltonella defensa, a heritable endosymbiotic bacterium commonly found in aphids. Laboratory experiments have shown that H. defensa strongly protects aphids against parasitic wasps (parasitoids), although this protection is not equally effective against different species of parasitoids, or even different genotypes of the same species. These results suggest that H. defensa plays an important role in reducing aphid mortality by parasitoids and presumably affects the community composition of parasitoids relying on aphids as a resource. However, there is little evidence that this is indeed the case under natural conditions. We tested this in a field experiment with black bean aphids (Aphis fabae) by setting up replicated field plots with genetically identical aphids that did or did not harbor H. defensa and following their colonization by natural enemies over a growing season. We observed a clear reduction in parasitism of symbiont-protected aphids, particularly by the parasitoids posing the highest risk. However, protected aphids did not develop larger populations than unprotected ones, possibly reflecting the balancing effect of costs associated with harboring H. defensa. We also observed shifts in the parasitoid species composition on aphids protected by H. defensa, showing that defensive symbionts have the potential to alter the diversity and structure of food webs, with likely consequences for their function and stability.
© 2016 by the Ecological Society of America.

Entities:  

Keywords:  zzm321990Aphis fabaezzm321990; zzm321990Hamiltonella defensazzm321990; cost of resistance; defensive symbiosis; field experiment; parasitoids

Mesh:

Year:  2016        PMID: 27859175     DOI: 10.1890/15-2022.1

Source DB:  PubMed          Journal:  Ecology        ISSN: 0012-9658            Impact factor:   5.499


  12 in total

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8.  Strong genotype-by-genotype interactions between aphid-defensive symbionts and parasitoids persist across different biotic environments.

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