Using stink bug migration behavior for physical exclusion

Author:

Marshall Adrian T12ORCID,Beers Elizabeth H1ORCID

Affiliation:

1. Tree Fruit Research and Extension Center, Washington State University , 1100 N Western Avenue, Wenatchee, WA 98801 , USA

2. USDA-ARS Temperate Tree Fruit and Vegetable Research Unit , 5230 Konnowac Pass Road, Wapato, WA 98951 , USA

Abstract

Abstract Stink bugs have become an increasing concern for tree fruit growers due to changing management strategies and the introduction of an invasive species. The use of broad-spectrum insecticides for stink bug control disrupts biological control and leads to secondary pest outbreaks. To seek alternative tactics, we investigated the physical exclusion of native stink bugs with single-wall net barriers at orchard borders. First, stink bug capture on clear sticky panels along orchard edges showed that movement between the native shrub-steppe vegetation and the orchard occurs for much of the growing season instead of the presumed single migration event in August. Most stink bugs were captured between 1 m and 3 m heights, signifying a 4 m exclusion barrier would intercept migrating bugs. We tested large net barriers (4 m × 23 m) constructed of plain netting with or without deltamethrin-infused netting in flaps compared to a no-net control. The capture of target and nontarget arthropods was determined with plastic tarps below the nets or on the open ground of the control. Net barriers did not directly affect stink bug densities in the orchards, although orchard populations were low overall. Barriers did intercept stink bugs, and the addition of deltamethrin flaps enhanced stink bug mortality but at the price of nontarget arthropod mortality. Our results indicate that stink bug management efforts should focus earlier in the growing season and given the long period of migration, barriers are a more sustainable way of slowing movement into the orchard than the current sole reliance on chemical control.

Funder

Washington Tree Fruit Research Commission

National Institute of Food and Agriculture Specialty Crop Research Initiative

United States Department of Agriculture National Institute of Food and Agriculture Hatch Act

Western Sustainable Agriculture Research and Education Graduate Student Research and Education

Publisher

Oxford University Press (OUP)

Reference63 articles.

1. Prospects for integrated pest management of brown marmorated stink bug in Washington tree fruits;Beers,2019

2. Alternate-row-middle applications of single insecticides targeting brown marmorated stink bug;Bergh;Arthropod Manag Tests,2013

3. IPM-CPR for peaches: incorporating behaviorally-based methods to manage Halyomorpha halys and key pests in peach;Blaauw,2015

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