Persistence of widespread moderate Spinosad resistance among wild melon fly (Zeugodacus cucurbitae) and oriental fruit fly (Bactrocera dorsalis) populations on the major Hawaiian islands

Author:

Stockton Dara G.1,Kraft Laura2,Dombrowski Patricia1,Doucette Laura3,Bosch Michael14,Gutierrez‐Coarite Rosemary5,Manandhar Roshan6,Uyeda Jensen7,Silva Joshua7,Hawkins Jennifer8,Shikano Ikkei3ORCID

Affiliation:

1. Daniel K. Inouye Pacific Basin Agricultural Research Center, Tropical Crop and Commodity Protection Research Unit (TCCPRU), USDA‐ARS Hilo HI USA

2. Washington State University, College of Agricultural, Human, and Natural Resources Sciences (CAHNRS) Long Beach Research and Extension Unit Long Beach WA USA

3. University of Hawaii at Manoa Department of Plant and Environmental Protection Sciences Honolulu HI USA

4. Oak Ridge Institute for Science and Education Oak Ridge TN USA

5. University of Hawaii at Manoa Department of Tropical Agriculture and Soil Science Kahului HI USA

6. University of Hawaii at Manoa Department of Plant and Environmental Protection Sciences Lihue HI USA

7. University of Hawaii at Manoa O'ahu Cooperative Extension Pearl City HI USA

8. UH College of Tropical Agriculture and Human Resources Molokai Cooperative Extension Hoolehua HI USA

Abstract

AbstractBACKGROUNDInsecticide resistance among invasive tephritid fruit flies poses a great risk to national food security and has the potential to disrupt quarantine and eradication programs, which rely on the efficacy of Spinosad to prevent widespread establishment in North America. During 2022 to 2023 we surveyed the extent of Spinosad resistance of two key species, oriental fruit fly Bactrocera dorsalis, and melon fly Zeugodacus cucurbitae, from 20 sites across five Hawaiian Islands including Kaua'i, O'ahu, Maui, Molokai and the “Big Island” (Hawai'i).RESULTSWe used topical thoracic applications of eight concentrations of Spinosad ranging from 0.028 to 3.6 mg/mL to evaluate the lethal concentration (LC50 and LC99) required to kill wild‐caught males. Resistance ratios (RR) were calculated by comparing the LC50 of wild flies to laboratory susceptible lines maintained in colony. Our results identified at least two new sites of concern for melon fly resistance on the Big Island, and at least four sites of concern for oriental fruit fly, all of which were located on the Big Island. At these locations RRs were >5. On O'ahu, melon fly RRs were >10.CONCLUSIONSThe persistence of Spinosad resistance is concerning, yet it is a reduction compared to the values reported previously and before changes to Spinosad use recommendations by local extension agents beginning in 2017. For oriental fruit fly, these RR values are the highest levels that have been detected in wild Hawai'i populations. These data suggest that expanded Spinosad reduction and replacement programs are warranted given the ongoing issues with Spinosad resistance in Hawai'i and expansion in the number of species affected. © 2024 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA.

Funder

National Institute of Food and Agriculture

Publisher

Wiley

Reference43 articles.

1. Fruit Flies of Economic Significance

2. Eradication of tephritid fruit fly pest populations: outcomes and prospects

3. Studies in Hawaiian fruit flies (Diptera: Tephritidae);Hardy DE;Entomological Society of Washington,1949

4. Olive fruit Fly Bactrocera oleae (Rossi) (Diptera: Tephritidae);Matsunaga JN;New Pest Advisory [Internet],2019

5. Survey for Dacus latifrons (Diptera: Tephritidae);Vargas RI;J Econ Entomol,1985

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