Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Rapid and differential evolution of the venom composition of a parasitoid wasp depending on the host strain

View through CrossRef
Abstract Parasitoid wasps rely primarily on venom to suppress the immune response and regulate the physiology of their host. Intraspecific variability of venom protein composition has been documented in some species, but its evolutionary potential is poorly understood. We performed an experimental evolution initiated with crosses of two lines of Leptopilina boulardi of different venom composition to generate variability and create new combinations of venom factors. The offspring were maintained for 10 generations on two strains of Drosophila melanogaster differing in resistance / susceptibility to the parasitoid lines. The venom composition of individuals was characterized by a semi-automatic analysis of 1D SDS-PAGE protein profiles whose accuracy was checked by Western blot analysis of well-characterized venom proteins. Results evidenced a rapid and differential evolution of the venom composition on both hosts and showed that the proteins beneficial on one host can be costly on the other. Overall, we demonstrated the capacity of rapid evolution of the venom composition in parasitoid wasps, important regulators of arthropod populations, suggesting a potential for adaptation to new hosts. Our approach also proved relevant in identifying, among the diversity of venom proteins, those possibly involved in parasitism success and whose role deserves to be deepened. Key Contribution The venom protein composition of parasitoid wasps can evolve rapidly and differently depending on the host strain. Studying this evolution can help identify new venom proteins possibly involved in parasitism success on a given host.
Title: Rapid and differential evolution of the venom composition of a parasitoid wasp depending on the host strain
Description:
Abstract Parasitoid wasps rely primarily on venom to suppress the immune response and regulate the physiology of their host.
Intraspecific variability of venom protein composition has been documented in some species, but its evolutionary potential is poorly understood.
We performed an experimental evolution initiated with crosses of two lines of Leptopilina boulardi of different venom composition to generate variability and create new combinations of venom factors.
The offspring were maintained for 10 generations on two strains of Drosophila melanogaster differing in resistance / susceptibility to the parasitoid lines.
The venom composition of individuals was characterized by a semi-automatic analysis of 1D SDS-PAGE protein profiles whose accuracy was checked by Western blot analysis of well-characterized venom proteins.
Results evidenced a rapid and differential evolution of the venom composition on both hosts and showed that the proteins beneficial on one host can be costly on the other.
Overall, we demonstrated the capacity of rapid evolution of the venom composition in parasitoid wasps, important regulators of arthropod populations, suggesting a potential for adaptation to new hosts.
Our approach also proved relevant in identifying, among the diversity of venom proteins, those possibly involved in parasitism success and whose role deserves to be deepened.
Key Contribution The venom protein composition of parasitoid wasps can evolve rapidly and differently depending on the host strain.
Studying this evolution can help identify new venom proteins possibly involved in parasitism success on a given host.

Related Results

Coevolution of Rhagoletis hosts and their parasitic wasps
Coevolution of Rhagoletis hosts and their parasitic wasps
<p>Phytophagous (plant-feeding) insects are extremely species-rich and typically display tight host associations (meeting and mating on or near their host plant) with one or ...
Integrative multi-omics analysis reveals the contribution of neoVTX genes to venom diversity of Synanceia verrucosa
Integrative multi-omics analysis reveals the contribution of neoVTX genes to venom diversity of Synanceia verrucosa
Abstract Background Animal venom systems have been considered as valuable model for investigating molecular mechanisms underlying phenotypic evolution. The stonefish were ...
The role of component-resolved diagnosis in Hymenoptera venom allergy in clinical practice
The role of component-resolved diagnosis in Hymenoptera venom allergy in clinical practice
Background: Hymenoptera venom allergy is an immunoglobulin (Ig) E mediated hypersensitivity reaction to Hymenoptera venoms. Obvious identification of the culprit insect that causes...
Developing response-ability in human-wasp encounters
Developing response-ability in human-wasp encounters
Learning to live with unloved others is crucial in the ecological crisis. Unloved wasps are feared and disliked for their sting. Understanding of their ecological importance is inc...
Parasitic success and venom composition evolve upon specialization of parasitoid wasps to different host species
Parasitic success and venom composition evolve upon specialization of parasitoid wasps to different host species
Female endoparasitoid wasps usually inject venom into hosts to suppress their immune response and ensure offspring development. However, the parasitoids ability to evolve towards i...
WASP-127b: a misaligned planet with a partly cloudy atmosphereand tenuous sodium signature seen by ESPRESSO
WASP-127b: a misaligned planet with a partly cloudy atmosphereand tenuous sodium signature seen by ESPRESSO
IntroductionDuring the past few years, exoplanet atmospheric studies have grown tremendously. Detections of atomic and molecular species are reported from the ultraviolet to the in...

Back to Top