Stage‐dependent predation by Euagoras plagiatus against Spodoptera frugiperda and Helicoverpa armigera larvae under laboratory conditions

Abstract BACKGROUND Spodoptera frugiperda and Helicoverpa armigera are destructive noctuid pests resistant to multiple pesticides. This study quantified predatory performance, functional response, searching efficiency, and prey preference across developmental stages of Euagoras plagiatus against second‐instar larvae of both pests under laboratory conditions. RESULTS All developmental stages of E. plagiatus successfully preyed on both species, with functional responses conforming to the Holling Type II model in most developmental stages. Maximum daily consumption increased significantly with predator development ( S. frugiperda : F (5, 24) = 76.40, P < 0.01; H. armigera : F (5, 24) = 76.68, P < 0.01). Fifth‐instar nymphs achieved the highest consumption of S. frugiperda (131.58 prey/day), while females consumed the most H. armigera (131.58 prey/day). Both stages also exhibited superior control efficiency ( a/T h = 124.95 for nymphs against S. frugiperda ; a/T h = 124.99 for females against H. armigera ), indicating pronounced stage‐dependent predatory capacity. Searching efficiency in fifth‐instar nymphs and adults declined with increasing prey density, whereas preference assays revealed E. plagiatus preferentially attacked H. armigera when offered equal densities of both species. CONCLUSION Fifth‐instar nymphs and adults of E. plagiatus demonstrate substantial potential as biological control agents against second‐instar noctuid larvae. © 2026 Society of Chemical Industry.

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Publication Details

Journal
Pest Management Science
Published
2026-08-31
DOI
https://doi.org/10.1002/ps.71264
Primary Topic
Insect-Plant Interactions and Control
Type
article
Field-Weighted Citation Impact
0.00
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article

Stage‐dependent predation by Euagoras plagiatus against Spodoptera frugiperda and Helicoverpa armigera larvae under laboratory conditions

Yansong Xiao, Lin Tan, Zihan Shi, Zhongrui Zhang et al.
Pest Management Science
Insect-Plant Interactions and Control
article

Stage‐dependent predation by Euagoras plagiatus against Spodoptera frugiperda and Helicoverpa armigera larvae under laboratory conditions

Yansong Xiao, Lin Tan, Zihan Shi, Zhongrui Zhang, Jie Fang, Shaolong Wu, Xueyu Yang, Yusheng Wang, Lin Tan
article en

Abstract

Abstract BACKGROUND Spodoptera frugiperda and Helicoverpa armigera are destructive noctuid pests resistant to multiple pesticides. This study quantified predatory performance, functional response, searching efficiency, and prey preference across developmental stages of Euagoras plagiatus against second‐instar larvae of both pests under laboratory conditions. RESULTS All developmental stages of E. plagiatus successfully preyed on both species, with functional responses conforming to the Holling Type II model in most developmental stages. Maximum daily consumption increased significantly with predator development ( S. frugiperda : F (5, 24) = 76.40, P < 0.01; H. armigera : F (5, 24) = 76.68, P < 0.01). Fifth‐instar nymphs achieved the highest consumption of S. frugiperda (131.58 prey/day), while females consumed the most H. armigera (131.58 prey/day). Both stages also exhibited superior control efficiency ( a/T h = 124.95 for nymphs against S. frugiperda ; a/T h = 124.99 for females against H. armigera ), indicating pronounced stage‐dependent predatory capacity. Searching efficiency in fifth‐instar nymphs and adults declined with increasing prey density, whereas preference assays revealed E. plagiatus preferentially attacked H. armigera when offered equal densities of both species. CONCLUSION Fifth‐instar nymphs and adults of E. plagiatus demonstrate substantial potential as biological control agents against second‐instar noctuid larvae. © 2026 Society of Chemical Industry.

Pest Management Science
China Tobacco (CN), Tobacco Research Institute (CN), Chenzhou First People's Hospital (CN), Hunan Agricultural University (CN)
Industry, innovation and infrastructure
Openalex Percentile: Top 11%
Insect-Plant Interactions and Control
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