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Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida

Ant venoms contain many small, linear peptides, an untapped source of bioactive peptide toxins. The control of agricultural insect pests currently depends primarily on chemical insecticides, but their intensive use damages the environment and human health, and encourages the emergence of resistant p...

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Autores principales: Heep, John, Skaljac, Marisa, Grotmann, Jens, Kessel, Tobias, Seip, Maximilian, Schmidtberg, Henrike, Vilcinskas, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6832575/
https://www.ncbi.nlm.nih.gov/pubmed/31557881
http://dx.doi.org/10.3390/toxins11100562
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author Heep, John
Skaljac, Marisa
Grotmann, Jens
Kessel, Tobias
Seip, Maximilian
Schmidtberg, Henrike
Vilcinskas, Andreas
author_facet Heep, John
Skaljac, Marisa
Grotmann, Jens
Kessel, Tobias
Seip, Maximilian
Schmidtberg, Henrike
Vilcinskas, Andreas
author_sort Heep, John
collection PubMed
description Ant venoms contain many small, linear peptides, an untapped source of bioactive peptide toxins. The control of agricultural insect pests currently depends primarily on chemical insecticides, but their intensive use damages the environment and human health, and encourages the emergence of resistant pest populations. This has promoted interest in animal venoms as a source of alternative, environmentally-friendly bio-insecticides. We tested the crude venom of the predatory ant, Manica rubida, and observed severe fitness costs in the parthenogenetic pea aphid (Acyrthosiphon pisum), a common agricultural pest. Therefore, we explored the M. rubida venom peptidome and identified a novel decapeptide U-MYRTX-MANr1 (NH(2)-IDPKVLESLV-CONH(2)) using a combination of Edman degradation and de novo peptide sequencing. Although this myrmicitoxin was inactive against bacteria and fungi, it reduced aphid survival and reproduction. Furthermore, both crude venom and U-MYRTX-MANr1 reversibly paralyzed injected aphids and induced a loss of body fluids. Components of M. rubida venom may act on various biological targets including ion channels and hemolymph coagulation proteins, as previously shown for other ant venom toxins. The remarkable insecticidal activity of M. rubida venom suggests it may be a promising source of additional bio-insecticide leads.
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spelling pubmed-68325752019-11-25 Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida Heep, John Skaljac, Marisa Grotmann, Jens Kessel, Tobias Seip, Maximilian Schmidtberg, Henrike Vilcinskas, Andreas Toxins (Basel) Article Ant venoms contain many small, linear peptides, an untapped source of bioactive peptide toxins. The control of agricultural insect pests currently depends primarily on chemical insecticides, but their intensive use damages the environment and human health, and encourages the emergence of resistant pest populations. This has promoted interest in animal venoms as a source of alternative, environmentally-friendly bio-insecticides. We tested the crude venom of the predatory ant, Manica rubida, and observed severe fitness costs in the parthenogenetic pea aphid (Acyrthosiphon pisum), a common agricultural pest. Therefore, we explored the M. rubida venom peptidome and identified a novel decapeptide U-MYRTX-MANr1 (NH(2)-IDPKVLESLV-CONH(2)) using a combination of Edman degradation and de novo peptide sequencing. Although this myrmicitoxin was inactive against bacteria and fungi, it reduced aphid survival and reproduction. Furthermore, both crude venom and U-MYRTX-MANr1 reversibly paralyzed injected aphids and induced a loss of body fluids. Components of M. rubida venom may act on various biological targets including ion channels and hemolymph coagulation proteins, as previously shown for other ant venom toxins. The remarkable insecticidal activity of M. rubida venom suggests it may be a promising source of additional bio-insecticide leads. MDPI 2019-09-25 /pmc/articles/PMC6832575/ /pubmed/31557881 http://dx.doi.org/10.3390/toxins11100562 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Heep, John
Skaljac, Marisa
Grotmann, Jens
Kessel, Tobias
Seip, Maximilian
Schmidtberg, Henrike
Vilcinskas, Andreas
Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title_full Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title_fullStr Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title_full_unstemmed Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title_short Identification and Functional Characterization of a Novel Insecticidal Decapeptide from the Myrmicine Ant Manica rubida
title_sort identification and functional characterization of a novel insecticidal decapeptide from the myrmicine ant manica rubida
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6832575/
https://www.ncbi.nlm.nih.gov/pubmed/31557881
http://dx.doi.org/10.3390/toxins11100562
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