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Article

Population Dynamics and Biological Control of Leucoptera malifoliella in Apple Orchards in Hebei Province, China

by
Jia-Qiang Zhao
1,
Hong-Wei Zhang
2,
Qi Gao
1,
Sheng-Ping Zhang
1,
Shi-Hang Zhao
1,
Jian-Ming Li
1,
Han Chang
1,
Zhao-Hui Yang
3,* and
Guo-Liang Xu
1,*
1
Shijiazhuang Institute of Pomology, Hebei Academy of Agriculture and Forestry Sciences, Shijiazhuang 050061, China
2
Chengde Agricultural Cash Crop Management Station, Chengde 067000, China
3
Hebei Provincial Center of Agro-Product Safety and Quality, Shijiazhuang 050061, China
*
Authors to whom correspondence should be addressed.
Insects 2026, 17(2), 171; https://doi.org/10.3390/insects17020171
Submission received: 12 January 2026 / Revised: 30 January 2026 / Accepted: 3 February 2026 / Published: 5 February 2026
(This article belongs to the Special Issue Lepidoptera: Behavior, Ecology, and Biology)

Simple Summary

Environmentally benign pest control is critical for apple orchards. The pear-leaf blister moth has emerged as a major pest, particularly in low-chemical-input orchards, yet modern ecological data on this pest remain insufficient for effective management. From 2023 to 2025, we examined this moth in Hebei apple orchards, monitoring population phenology, developing a rapid pupal sexing method, quantifying adult flight capacity, and evaluating Trichogramma-mediated egg parasitism. The results showed five annual generations, with peak damage in July–August; adults flew over 1.2 km, enabling inter-orchard dispersal. Timely Trichogramma releases enhanced egg parasitism and reduced leaf damage. This study indicates that the moth may proliferate under climate warming and that Trichogramma application is an effective, eco-friendly tactic, laying the groundwork for precise, ecological pest management and reduced chemical use.

Abstract

Leucoptera malifoliella has become a severe leaf-mining pest in Chinese apple orchards, especially under expanding organic and green cultivation practices, with effective management hindered by insufficient contemporary ecological data. To fill this gap, this 2023–2025 study conducted in Shijiazhuang, Hebei, combined field monitoring, morphological analysis, flight mill assays, and parasitoid release trials to clarify the moth’s phenology, develop rapid pupal sexing methods, quantify adult flight capacity, and assess Trichogramma dendrolimi biocontrol potential. The results showed five annual generations (overwintering as pupae), peak damage in July–August, and marked generational overlap. A reliable pupal sexing method was established via genital opening morphology. Adult flight peaked at 3 days post-emergence (max distance: 1.223 km), with no sexual dimorphism. Timely T. dendrolimi releases boosted parasitism rates, achieving 23.4–49.6% control efficacy during peak damage, with the parasitism rate positively correlated with efficacy. This study confirms the moth’s potential for generational increase under climate warming and medium-distance dispersal capacity, validating Trichogramma’s utility and laying a scientific foundation for precise, regionally coordinated ecological management.
Keywords: Leucoptera malifoliella; population dynamics; sex identification; flight capacity; biological control Leucoptera malifoliella; population dynamics; sex identification; flight capacity; biological control

Share and Cite

MDPI and ACS Style

Zhao, J.-Q.; Zhang, H.-W.; Gao, Q.; Zhang, S.-P.; Zhao, S.-H.; Li, J.-M.; Chang, H.; Yang, Z.-H.; Xu, G.-L. Population Dynamics and Biological Control of Leucoptera malifoliella in Apple Orchards in Hebei Province, China. Insects 2026, 17, 171. https://doi.org/10.3390/insects17020171

AMA Style

Zhao J-Q, Zhang H-W, Gao Q, Zhang S-P, Zhao S-H, Li J-M, Chang H, Yang Z-H, Xu G-L. Population Dynamics and Biological Control of Leucoptera malifoliella in Apple Orchards in Hebei Province, China. Insects. 2026; 17(2):171. https://doi.org/10.3390/insects17020171

Chicago/Turabian Style

Zhao, Jia-Qiang, Hong-Wei Zhang, Qi Gao, Sheng-Ping Zhang, Shi-Hang Zhao, Jian-Ming Li, Han Chang, Zhao-Hui Yang, and Guo-Liang Xu. 2026. "Population Dynamics and Biological Control of Leucoptera malifoliella in Apple Orchards in Hebei Province, China" Insects 17, no. 2: 171. https://doi.org/10.3390/insects17020171

APA Style

Zhao, J.-Q., Zhang, H.-W., Gao, Q., Zhang, S.-P., Zhao, S.-H., Li, J.-M., Chang, H., Yang, Z.-H., & Xu, G.-L. (2026). Population Dynamics and Biological Control of Leucoptera malifoliella in Apple Orchards in Hebei Province, China. Insects, 17(2), 171. https://doi.org/10.3390/insects17020171

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