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The purpose of this project was to identify venom proteins from the venom gland of Ganaspis hookeri (strain GhFl, formerly 'G1'), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Ganaspis 
2021-01-27 | PXD023825 | Pride
The venom apparatus is a conserved organ in parasitoid wasps that shows adaptations correlated with life-style diversification. Recent venom analyses from selected species reveal considerable complexity and high diversity in venom composition existing not only between closely related species but eve...
ORGANISM(S): Tetrastichus 
2018-11-06 | PXD004653 | Pride
This project aims at characterizing the molecular basis of virulence difference between two strains of the Hymenopteran parasitoid Cotesia typhae, which differ in their parasitism success on one host population. More specifically, we analyzed the protein content of the venom of both strains in orde...
ORGANISM(S): Cotesia typhae 
2024-05-27 | PXD051968 | Pride
Symbiotic bracovirus and venom of parasitoid Cotesia vestalis Metagenome
venom proteins from Theocolax elegans were analyzed by LC-MS/MS and the peptide fragments were identified by searching against the protein set.
ORGANISM(S): Theocolax elegans 
2023-03-18 | PXD037774 | Pride
The purpose of this project was to identify venom proteins from the venom gland of Leptopilina boulardi (strain Lb17), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Leptopilina boulardi 
2021-01-27 | PXD023836 | Pride
The purpose of this project was to identify venom proteins from the venom gland of Leptopilina heterotoma (strain Lh14), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Leptopilina heterotoma 
2021-01-27 | PXD023824 | Pride
Venom protein LC-MS of the parasitoid wasp Asobara japonica
ORGANISM(S): Asobara japonica 
2026-01-26 | PXD059653 | Pride
Gene duplication, accompanied by modification of the expression and/or function of one of the duplicates under the action of positive selection, followed by further duplication to produce multigene families of toxins is a well-documented process in venomous animals. This evolutionary model has been ...
ORGANISM(S): Leptopilina boulardi Leptopilina heterotoma 
2023-06-09 | PXD041695 | Pride
Venoms and the toxins they contain represent molecular adaptations that have evolved on numerous occasions throughout the animal kingdom. However, the processes that shape venom protein evolution are poorly understood because of the scarcity of whole genome data available for comparative analyses of...
ORGANISM(S): Dasypogon diadema 
2019-06-13 | PXD013358 | Pride
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