A Combination Sulfuryl Fluoride and Propylene Oxide Treatment for Trogoderma granarium (Coleoptera: Dermestidae)

Author:

Myers Scott W1ORCID,Ghimire Mukti N12,Arthur Frank H3,Phillips Thomas W4

Affiliation:

1. USDA, Animal and Plant Health Inspection Services, Plant Protection and Quarantine, Science & Technology, Otis Laboratory, 1398 West Truck Road, Buzzards Bay, MA 02542, USA

2. Current Address: USDA, Animal and Plant Health Inspection Service, Plant Protection and Quarantine, 1220 Toffie Terrace, Atlanta, GA 30354, USA

3. USDA, Agricultural Research Service, Center for Grain and Animal Health Research, 1515 College Avenue, Manhattan, KS 66502, USA

4. Department of Entomology, Kansas State University, 123 Waters Hall, Manhattan, KS 66506, USA

Abstract

Abstract The khapra beetle, Trogoderma granarium, is an important quarantine pest of stored-products. While it is not established in the North America, frequent interceptions highlight the need for treatments to eradicate isolated populations if they occur. Methyl bromide has long been the standard fumigant used for this purpose; however, increasing restrictions on its use necessitate the development of new treatment options. Here we evaluate a treatment for khapra beetle using a combination of sulfuryl fluoride (SF) and propylene oxide (PPO). Experiments were conducted to determine the most tolerant stages and the effective rates for each compound. Combination treatments using both products were then evaluated at several temperatures to determine effective doses for quarantine level control. The egg stage was by far the most tolerant to SF, requiring concentration × time (CT) products roughly 10-fold greater than the next most tolerant stage, diapausing larvae. Diapausing larvae were significantly more tolerant to SF than non-diapausing larvae in a recently collected ‘field’ strain, but not in a more than 30-yr-old ‘laboratory’ culture. PPO treatments were shown to completely control the egg stage at CTs greater than 155 hr-mgL-1 at both 10 and 20°C. Resulting combination treatments with initial dose rates of 96 and 40 mgL-1 at 10°C and 80 and 40 mgL-1 at 20°C are proposed for SF and PPO, respectively. These combination treatments utilize SF’s efficacy against the larval stage along with PPO’s superior ovicidal properties to provide enhanced treatment efficacy over each product alone against all life stages of khapra beetle.

Funder

U.S. Department of Agriculture

Agricultural Quarantine and Inspection

Kansas Agricultural Experiment Station

Publisher

Oxford University Press (OUP)

Subject

Insect Science,Ecology,General Medicine

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