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Vector activity of three aphid species (Hemiptera: Aphididae) modulated by host plant selection behaviour on potato (Solanales: Solanaceae)
Authors:Sébastien Boquel  Philippe Giordanengo  Arnaud Ameline
Institution:1. UFR des Sciences, Université de Picardie Jules Verne, FRE CNRS 3498 EDYSAN, Laboratoire BIPE, 33 rue Saint-Leu, F-80039 Amiens Cedex, France;2. GIE, Station de Recherche et de Création Variétale du Comité Nord, F-76110 Bretteville-du-Grand-Caux, Francesebastien.boquel@u-picardie.fr;4. Institut Sophia Agrobiotech, CNRS 7254 – INRA 1355, Université de Nice Sophia Antipolis, 400 route des Chappes, BP167, F-06903 Sophia Antipolis, France
Abstract:Viral diseases non-persistently transmitted by aphids are of great economic importance in several annual crops. Transmission efficiency of these non-persistent phytoviruses is dependant on vector efficiency (i.e. vector intrinsic ability to transmit the virus) but also on the vector activity that implies the early steps of aphid host plant selection process (i.e. brief intracellular stylet punctures after landing) and to their interplant movement ability. In Europe, Macrosiphum euphorbiae (Thomas 1878) is considered as one of the most serious virus vectors on potato (Solanum tuberosum L. 1753). Nevertheless, several alate aphid species that do not colonise potato plants are trapped in potato crops. Therefore, we investigated, through laboratory experiments, vector activity of one potato colonising aphid, M. euphorbiae, and two non-colonising potato aphids, the bird cherry-oat aphid Rhopalosiphum padi (L. 1758) and the pea aphid Acyrthosiphon pisum (Harris 1776). A settling experiment was used to evaluate dispersal activity, and the electrical penetration graph (EPG) technique was used to investigate probing activity on potato plants. Results showed that M. euphorbiae exhibited a better vector activity than other two aphid species in terms of landing and probing. By contrast, interplant movements were only recorded on non-colonising aphids, suggesting a better vector activity than M. euphorbiae in terms of locomotive behaviour. These data confirm the involvement of A. pisum and R. padi in the spread of non-persistent viruses.
Keywords:Macrosiphum euphorbiae  Rhopalosiphum padi  Acyrthosiphon pisum  dispersal behaviour  feeding behaviour  electrical penetration graph (EPG)
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