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A Dipteran’s Novel Sucker Punch: Evolution of Arthropod Atypical Venom with a Neurotoxic Component in Robber Flies (Asilidae, Diptera)
- Source :
- Toxins, Toxins, MDPI, 2018, 10, pp.29. ⟨10.3390/toxins10010029⟩, Toxins, Vol 10, Iss 1, p 29 (2018), Toxins 10(1), 29 (2018). doi:10.3390/toxins10010029
- Publication Year :
- 2018
- Publisher :
- HAL CCSD, 2018.
-
Abstract
- Predatory robber flies (Diptera, Asilidae) have been suspected to be venomous due to their ability to overpower well-defended prey. However, details of their venom composition and toxin arsenal remained unknown. Here, we provide a detailed characterization of the venom system of robber flies through the application of comparative transcriptomics, proteomics and functional morphology. Our results reveal asilid venoms to be dominated by peptides and non-enzymatic proteins, and that the majority of components in the crude venom is represented by just ten toxin families, which we have named Asilidin1–10. Contrary to what might be expected for a liquid-feeding predator, the venoms of robber flies appear to be rich in novel peptides, rather than enzymes with a putative pre-digestive role. The novelty of these peptides suggests that the robber fly venom system evolved independently from hematophagous dipterans and other pancrustaceans. Indeed, six Asilidins match no other venom proteins, while three represent known examples of peptide scaffolds convergently recruited to a toxic function. Of these, members of Asilidin1 closely resemble cysteine inhibitor knot peptides (ICK), of which neurotoxic variants occur in cone snails, assassin bugs, scorpions and spiders. Synthesis of one of these putative ICKs, U-Asilidin1-Mar1a, followed by toxicity assays against an ecologically relevant prey model revealed that one of these likely plays a role as a neurotoxin involved in the immobilization of prey. Our results are fundamental to address these insights further and to understand processes that drive venom evolution in dipterans as well as other arthropods. © 2018 by the authors. Licensee MDPI, Basel, Switzerland.
- Subjects :
- Proteomics
Conotoxin
Nicotinic acetylcholine receptor
lcsh:Medicine
complex mixtures
Article
Arthropod Proteins
This study provides the first comprehensive description of the venom system of two robber flies (Asilidae). We reveal a complex venom apparatus and an unusual, enzyme depleted venom with unique proteins, including also a new, neurotoxic ICK peptide
Exocrine Glands
[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry, Molecular Biology/Genomics [q-bio.GN]
Animals
synchrotron micro computed tomography
ddc:610
Arthropod Venoms
Toxins, Biological
functional morphology
Asilidin
Diptera
cysteine inhibitor knot peptide
lcsh:R
fungi
Asilidae
Venom
Cone snail
[SDV.TOX]Life Sciences [q-bio]/Toxicology
neurotoxins
Peptides
Transcriptome
arthropod venom evolution
Subjects
Details
- Language :
- English
- ISSN :
- 20726651
- Database :
- OpenAIRE
- Journal :
- Toxins, Toxins, MDPI, 2018, 10, pp.29. ⟨10.3390/toxins10010029⟩, Toxins, Vol 10, Iss 1, p 29 (2018), Toxins 10(1), 29 (2018). doi:10.3390/toxins10010029
- Accession number :
- edsair.pmid.dedup....dbcb3b7369ba60fdd1a4c94d6b4be5ec