Compatibility of Bioinsecticides with Parasitoids for Enhanced Integrated Pest Management of Drosophila suzukii and Tuta absoluta

Author:

Lisi Fabrizio1,Cavallaro Carmelo1,Pitruzzello Maria Flavia1,Arnó Judit2ORCID,Desneux Nicolas3,Han Peng4,Wang Xingeng5ORCID,Zappalà Lucia1,Biondi Antonio1ORCID,Gugliuzzo Antonio1ORCID

Affiliation:

1. Department of Agriculture, Food and Environment, University of Catania, 95124 Catania, Italy

2. Sustainable Plant Protection Program, Institute of Agrifood Research and Technology (IRTA), 08348 Cabrils, Spain

3. INRAE, CNRS, UMR ISA, Université Côte d’Azur, 06000 Nice, France

4. Institute of Biodiversity, School of Ecology and Environmental Science, Yunnan University, Kunming 650504, China

5. USDA ARS Beneficial Insects Introduction Research Unit, Newark, DE 19713, USA

Abstract

Drosophila suzukii and Tuta absoluta are successful biological invaders of agroecosystems. Their integrated pest management (IPM) programs involve the release and/or conservation of natural enemies. Among these, Ganaspis kimorum is a major Asian parasitoid of D. suzukii and has been introduced as a classical biological control agent of this pest in Europe and North America, while Necremnus tutae is a key fortuitous parasitoid of T. absoluta in the Mediterranean region. Bioinsecticides represent key alternatives to chemicals for controlling both pests. This study investigated the potential compatibility of both parasitoids with Beauveria bassiana, Bacillus thuringiensis, garlic essential oil (EO), and spinosad, in comparison to two synthetic insecticides, cyantraniliprole and chlorantraniliprole. The results showed that combining each of the tested insecticides with G. kimorum slightly increased pest mortality compared to the insecticide alone. Necremnus tutae had a significant additive effect on host mortality when combined with insecticides. Beauveria bassiana and B. thuringiensis were most compatible with both parasitoid species. Both garlic EO and chlorantraniliprole impaired the survival of immature N. tutae and showed sublethal toxicity on the reproductive and non-reproductive behaviors of N. tutae. Spinosad exhibited high acute toxicity on both juvenile and adult parasitoids of both species. Overall, these findings provide useful insights into insecticide selectivity toward two key parasitoids and offer new knowledge on the potential of combining natural enemies and bioinsecticides for optimized IPM.

Funder

European Union’s Horizon Europe framework program

InStress

Italian Ministry of University and Research

Publisher

MDPI AG

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