A Biomass Pyrolysis Oil as a Novel Insect Growth Regulator Mimic for a Variety of Stored Product Beetles

Author:

Bruce Alexander1,Wilson A Nolan2,Ranabhat Sabita3ORCID,Montgomery Jaden3,Nicholson Scott2,Harris Kylee2,Morrison William R1ORCID

Affiliation:

1. USDA, Agricultural Research Service, Center for Grain and Animal Health Research , Manhattan, KS , USA

2. National Renewable Energy Laboratory , 15013 Denver West Parkway, Golden, CO , USA

3. Department of Entomology, Kansas State University , 123 W. Waters Hall, 1603 Old Claflin Place, Manhattan, KS , USA

Abstract

Abstract As fumigants face increasing regulatory restrictions, resistance, and consumer pushback, it is vital to expand the integrated pest management (IPM) chemical toolkit for stored products. The production of biomass derived insecticides (e.g., bio-oil fraction) from byproducts of biofuel production may be a promising alternative source of chemistries for controlling stored product insects. These potential insecticidal bio-oils were fractionated based on boiling points (ranging from 115 to 230°C in one series and 245–250°C in another). Fractions were analyzed using GC-MS, and were found to be unique in composition. The lethality of these fractions was tested on Tribolium castaneum, Tribolium confusum, and Oryzaephilus surinamensis (L.) (Coleoptera: Silvanidae). Fractions were tested at concentrations ranging from 5–260 mg/ml to screen for efficacy against adults for durations of 2–8 hr sprayed on concrete arenas. In addition, a separate assay evaluated adult emergence of larvae after 6 wk with supplemental food in arenas, while repellency was evaluated against four stored product insect species in a laminar wind tunnel. A greenhouse gas (GHG) emissions life cycle assessment was also performed, which found the use of the bio-oil fraction could reduce GHG emissions associated with the insecticide supply chain by 25–61% relative to a fossil-fuel based insecticide or pyrethroid. While adults were largely unaffected, we found that larval emergence was significantly suppressed compared to controls by roughly half or more. We also determined that there was minimal repellency to most fractions by most species. We conclude that the use of bio-oil fractions is a climate-friendly choice that may support IPM programs.

Funder

U.S. Department of Energy, Golden Field Office

U.S. Department of Energy

Office of Energy Efficiency and Renewable Energy

Bioenergy Technologies Office

Publisher

Oxford University Press (OUP)

Subject

Insect Science,Ecology,General Medicine

Reference43 articles.

1. Insect management with residual insecticides,;Arthur,2006

2. Residual activity of methoprene and novaluron as surface treatments to manage the flour beetles, Tribolium castaneum and Tribolium confusum;Arthur;J. Insect Sci,2012

3. Methodology for assessing progeny production and grain damage on commodities treated with insecticides;Arthur;Agronomy,2020

4. Evaluation of pyrethroid insecticides and insect growth regulators applied to different surfaces for control of Trogoderma granarium (Coleoptera: Dermestidae) the khapra beetle;Arthur;J. Econ. Entomol,2018

5. Mobility of stored product beetles after exposure to a combination insecticide containing deltamethrin, methoprene, and a piperonyl butoxide synergist depends on species, concentration, and exposure time;Arthur;Insects,2020

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