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Role of terpenes from aphid-infested potato on searching and oviposition behavior of Episyrphus balteatus
Authors:NICOLAS HARMEL,RAKI ALMOHAMAD,MARIE-LAURE FAUCONNIER,PATRICK DU JARDIN,FRANÇ  OIS VERHEGGEN,MICHEL MARLIER,ERIC HAUBRUGE,FRÉ    RIC FRANCIS
Affiliation:Department of Functional and Evolutionary Entomology, Gembloux Agricultural University, Gembloux, Belgium;Department of Plant Biology, Gembloux Agricultural University, Gembloux, Belgium;Department of General and Organic Chemistry, Gembloux Agricultural University, Gembloux, Belgium
Abstract:To cope with pathogen and insect attacks, plants develop different mechanisms of defence, in both direct (physical and chemical) and indirect ways (attractive volatiles to entomophagous beneficials). Plants are then able to express traits that facilitate “top‐down” control of pests by attracting herbivore predators. Here we investigate the indirect defence mechanism of potato plants by analyzing the volatile patterns of both healthy and aphid‐infested plants. Important changes in the emitted terpene pattern by the Myzus persicae infested host plant were observed. Using Solid Phase Micro Extraction (SPME) and GC‐MS, the (E)‐β‐farnesene (EBF) appeared to be emitted by aphid‐infested potato and not by healthy plants. To assess the infochemical role of these volatile releases after aphid damage on the aphidophagous predators Episyrphus balteatus, the hoverfly foraging behavior was assessed using the Observer 5.0 software (Noldus, Wageningen, The Netherlands). Aphid‐free potato plants were also used as a control volatile source in the predator behavioral study. While aphid‐infested plants induced efficient searching and acceptation behaviors leading to egg‐laying, no kairomonal effect of healthy potato plants was observed, leading to longer immobility durations and shorter searching periods in the net cage. High oviposition rate of E. balteatus was observed when aphid‐infested potato was used (mean of 48.9 eggs per laying and per female). On the other hand, no egg was produced by the hoverfly on healthy aphid‐free plants. The E. balteatus foraging and reproductive behaviors according to the volatile emission from aphid‐infested plants are discussed in relation to the potential use of active infochemical molecules in integrated aphid pest management.
Keywords:aphid infested   behavior   Episyrphus balteatus   potato   terpenes
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