Gypsy Moth Management with LdMNPV Baculovirus in Cork Oak Forest

Author:

Ruiu LucaORCID,Mannu RobertoORCID,Olivieri MaurizioORCID,Lentini AndreaORCID

Abstract

(1) Research Highlights: Applications of a species-specific baculovirus is a promising method to control the gypsy moth and regulate its population dynamics in forest ecosystems. (2) Background and Objectives: Cork oak protection against the Lepidopteran defoliator Lymantria dispar requires an appropriate forest ecosystem management program, involving the application of eco-sustainable microbial products during population outbreaks. The species-specific multicapsid nucleopolyhedrovirus (LdMNPV), agent of natural epizootics in gypsy moth populations, represents an option that was investigated in a multi-year field study, involving viral applications either from the ground or by aerial treatment. (3) Materials and Methods: Efficacy trials against L. dispar populations were conducted in 2018 and 2019 in Sardinia, according to a randomized block design. Each year, two trials were conducted, applying a baculovirus commercial formulation with an atomizer from the ground and assessing the effects of different doses and application timing, respectively. An aerial application trial distributing LdMNPV at ultra-low volumes (2 L/ha) was also conducted in 2019 to assess the virus efficacy at a larger field scale. (4) Results: In both years, a significant increase in larval mortality was detected in plots treated with higher viral occlusion body (OB) doses and with an earlier application targeting younger larvae, in comparison with untreated controls. Due to an observed retrogradation phase of the target pest in 2019, no significant differences in larval density between areas treated from a helicopter and control were detected, but in the few weeks following application, a meaningful vitality decrease in larval samples from treated plots was observed. (5) Conclusions: Based on the results of this study, the use of LdMNPV in forest protection programs against gypsy moth can be worth consideration in multi-year integrated program strategies to modulate population dynamics.

Funder

University of Sassari

Publisher

MDPI AG

Subject

Forestry

Reference29 articles.

1. Long-term monitoring and microbiological control programs against lepidopteran defoliators in Sardinian cork oak forests (Italy);Lentini;Ann. Silvic. Res.,2020

2. Bacillus thuringiensis 30 ans de lutte contre les chenilles defoliatrices en foret;Martin;Phytoma Def. Veg.,2006

3. Beyond the spore – past and future developments of Bacillus thuringiensis as a biopesticide

4. Non-target impacts of forest defoliator management options: Decision for no spraying may have worse impacts on non-target Lepidoptera than Bacillus thuringiensis insecticides

5. The Ecology and Evolution of Insect Baculoviruses

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