High specificity of symbiont-conferred resistance in an aphid-parasitoid field community


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Date

2024-02

Publication Type

Journal Article

ETH Bibliography

yes

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Abstract

Host-parasite coevolution is mediated by genetic interactions between the antagonists and may lead to reciprocal adaptation. In the black bean aphid, Aphis fabae fabae, resistance to parasitoids can be conferred by the heritable bacterial endosymbiont Hamiltonella defensa. H. defensa has been shown to be variably protective against different parasitoid species, and different genotypes of the black bean aphid's main parasitoid Lysiphlebus fabarum. However, these results were obtained using haphazard combinations of laboratory-reared insect lines with different origins, making it unclear how representative they are of natural, locally (co)adapted communities. We therefore comprehensively sampled the parasitoids of a natural A. f. fabae population and measured the ability of the five most abundant species to parasitize aphids carrying the locally prevalent H. defensa haplotypes. H. defensa provided resistance only against the dominant parasitoid L. fabarum (70% of all parasitoids), but not against less abundant parasitoids, and resistance to L. fabarum acted in a genotype-specific manner (G x G interactions between H. defensa and L. fabarum). These results confirm that strong species- and genotype-specificity of symbiont-conferred resistance is indeed a hallmark of wild A. f. fabae populations, and they are consistent with symbiont-mediated adaptation of aphids to the parasitoids posing the highest risk.

Publication status

published

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Book title

Volume

37 (2)

Pages / Article No.

162 - 170

Publisher

Oxford University Press

Event

Edition / version

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Subject

host-parasite interactions; specificity of resistance; genotype-by-genotype interactions; aphids; Hamiltonella defensa; local adaption

Organisational unit

03705 - Jokela, Jukka / Jokela, Jukka check_circle

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