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RESEARCH PRODUCT
Effects of water stress on emission of volatile organic compounds by Vicia faba, and consequences for attraction of the egg parasitoid Trissolcus basalis
Luisa EderliGianandrea SalernoMauro CentrittoGiovanni MarinoFrancesco LoretoStefania PasqualiniFrancesca FratiStefano Colazzasubject
0106 biological sciences0301 basic medicineAbiotic stress; Herbivore damage; Parasitoids; Vicia faba; VOCs; Agronomy and Crop ScienceBiology01 natural sciencesParasitoidHerbivore damage03 medical and health sciencesBotanyParasitoidsAbiotic stressVOCfungiVOCsfood and beveragesPentatomidaeBiotic stressAbiotic stressbiology.organism_classificationVicia fabaParasitoidVicia fabaChemical ecologyHorticulture030104 developmental biologyAbiotic streSettore AGR/11 - Entomologia Generale E ApplicataOlfactometerNezara viridulaAgronomy and Crop Science010606 plant biology & botanydescription
When plants are damaged by herbivorous insects, blends of volatile organic compounds (VOCs) are induced and released and can also be used by parasitoids to locate hosts. The aim was to determine whether VOCs induced by water stress affect the plant-herbivore-para- sitoid system represented by broad bean (Vicia faba; Fabales: Fabaceae) stink bug (Nezara viridula; Hetero- ptera: Pentatomidae) egg parasitoid (Trissolcus basalis; Hymenoptera: Platygastridae). The effects of water stress (expressed as the percentage fraction of transpirable soil water [FTSW] supplied) alone and in combination with N. viridula damage (feeding plus oviposition) were deter- mined according to: (1) the behavioural response of the egg parasitoid in a Y-tube olfactometer and (2) the plant VOCs collected and analysed by thermal desorption-gas chromatography-mass spectrometry. With pot water capacity as FTSW100, water stress was applied as mild (FTSW80), moderate (FTSW50) and severe (FTSW10). Bioassays with plants under abiotic stress alone showed that egg parasitoids are more attracted by FTSW10 plants than by well-watered plants. When plants were under abiotic and biotic stress interactions, the egg parasitoids are more attracted by FTSW10 and FTSW50 plants than by well-watered plants infested with N. viridula. Considering VOCs emissions, projection to latent structures discrimi- nant analysis (PLS-DA) separated treatments according to egg parasitoid responses. Water stress alone and in com- bination with biotic stress induced changes in VOC emis- sions of V. faba plants that attract egg parasitoids. These findings contribute to our understanding of how water stress affects the interactions between plants, insect pests and egg parasitoids.
year | journal | country | edition | language |
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2017-01-02 |