Optimizing Bacillus thuringiensis (Btk) Aerial Spray Prescriptions in Mixed Balsam Fir-White Spruce Stands against the Eastern Spruce Budworm

Author:

Fuentealba Alvaro1,Pelletier-Beaulieu Émile1,Dupont Alain2,Hébert Christian3ORCID,Berthiaume Richard2,Bauce Éric1

Affiliation:

1. Département des Sciences du Bois et de la Forêt, Faculté de Foresterie, de Géographie et de Géomatique, Université Laval, Quebec City, QC G1V 0A6, Canada

2. Société de Protection des Forêts Contre les Insectes et Maladies (SOPFIM), Quebec City, QC G1N 4B8, Canada

3. Natural Resources Canada, Canadian Forest Service, 1055 du P.E.P.S., Sainte-Foy, QC G1V 4C7, Canada

Abstract

Forest protection against eastern spruce budworm, Choristoneura fumiferana (Clemens), relies on aerial applications of Bacillus thuringiensis (Btk). However, Btk prescriptions have been developed for balsam fir (Abies balsamea (L.) Mill.) stands, generating uncertainty as to the relevance of this protection approach on white spruce (Picea glauca (Moench) Voss). The main goal of this study was to evaluate the efficacy of three Btk application treatments (early application, late application, and double application) for protecting white spruce and balsam fir in mixed stands. Our results show that all Btk treatments tested kept defoliation under the 50% threshold on balsam fir (27.7 to 38.1% less defoliation than in controls). In contrast, differences in defoliation among treatments were not significant for white spruce. Larval mortality was significantly lower on white spruce than on balsam fir. The low efficacy of Btk treatments on white spruce may be explained by its shoot phenology (most bud caps were still present during the early application), and its foliar chemistry, which could decrease Btk efficacy. Consequently, many larvae may survive simply because Btk spores do not reach them, or because they may consume sublethal doses. We recommend maintaining the current strategy in mixed stands, as it provides a good protection for balsam fir. Further research is needed to determine the causes of the low efficacy of Btk treatments on white spruce.

Funder

Natural Sciences and Engineering Research Council of Canada

Ministère des ressources naturelles et des forêts du Québec

Quebec Forest Industry Council

CFS

SOPFIM

Publisher

MDPI AG

Subject

Forestry

Reference41 articles.

1. Farrar, J.L. (1995). Trees in Canada, Canadian Forest Service, Natural Resources Canada.

2. Beaulieu, J. (1996). Breeding Program and Strategy for White Spruce in Quebec, Canadian Forest Service, Natural Resources Canada. Information Report LAU-X-117E.

3. Logging history (1820–2000) of a heavily exploited southern boreal forest landscape: Insights from sunken logs and forestry maps;Boucher;For. Ecol. Manag.,2009

4. Ministère des Forêts, de la Faune et des Parcs (MFFP) (2021, October 19). Ressources et Industries Forestières du Québec. Portrait Statistique, Available online: https://mffp.gouv.qc.ca/wp-content/uploads/PortraitStatistique_2019.pdf.

5. Population dynamics of the spruce budworm Choristoneura fumiferana;Royama;Ecol. Monogr.,1984

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