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Novel biopesticide based on a spider venom peptide shows no adverse effects on honeybees
Authors:Erich Y. T. Nakasu  Sally M. Williamson  Martin G. Edwards  Elaine C. Fitches  John A. Gatehouse  Geraldine A. Wright  Angharad M. R. Gatehouse
Affiliation:1.School of Biology, Newcastle Institute for Research and Sustainability, Newcastle University, Newcastle upon Tyne NE1 7RU, UK;2.Institute of Neuroscience, Newcastle University, Newcastle upon Tyne NE1 7RU, UK;3.Capes Foundation, Ministry of Education of Brazil, Caixa Postal 250, Brasília 70040-020, Brazil;4.The Food and Environment Research Agency, Sand Hutton, York YO41 1LZ, UK;5.School of Biological and Biomedical Sciences, Durham University, South Road, Durham DH1 3LE, UK
Abstract:Evidence is accumulating that commonly used pesticides are linked to decline of pollinator populations; adverse effects of three neonicotinoids on bees have led to bans on their use across the European Union. Developing insecticides that pose negligible risks to beneficial organisms such as honeybees is desirable and timely. One strategy is to use recombinant fusion proteins containing neuroactive peptides/proteins linked to a ‘carrier’ protein that confers oral toxicity. Hv1a/GNA (Galanthus nivalis agglutinin), containing an insect-specific spider venom calcium channel blocker (ω-hexatoxin-Hv1a) linked to snowdrop lectin (GNA) as a ‘carrier’, is an effective oral biopesticide towards various insect pests. Effects of Hv1a/GNA towards a non-target species, Apis mellifera, were assessed through a thorough early-tier risk assessment. Following feeding, honeybees internalized Hv1a/GNA, which reached the brain within 1 h after exposure. However, survival was only slightly affected by ingestion (LD50 > 100 µg bee−1) or injection of fusion protein. Bees fed acute (100 µg bee−1) or chronic (0.35 mg ml−1) doses of Hv1a/GNA and trained in an olfactory learning task had similar rates of learning and memory to no-pesticide controls. Larvae were unaffected, being able to degrade Hv1a/GNA. These tests suggest that Hv1a/GNA is unlikely to cause detrimental effects on honeybees, indicating that atracotoxins targeting calcium channels are potential alternatives to conventional pesticides.
Keywords:insecticidal fusion proteins, biopesticide, honeybees, ω  -hexatoxin-Hv1a, snowdrop lectin (Galanthus nivalis agglutinin), pollinator decline
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