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Pesticide Biochemistry and Physiology|April 11, 2021
The high adaptability of Hyphantria cunea larvae to cinnamic acid involves in detoxification, antioxidation and gut microbiota responseDun Jiang, Shuai Wu, Mingtao Tan, et al.
The Science of the Total Environment|November 25, 2022
Defense response of Fraxinus mandshurica seedlings to Hyphantria cunea larvae under Cd stress: A contradiction between attraction and resistanceShanchun Yan, Mingtao Tan, Lin Zheng, et al.
International Journal of Biological Macromolecules|January 9, 2025
RNAi-mediated knockdown of HcCAT2 depresses the adaptive capacity of Hyphantria cunea larvae to cytisine and coumarinXue Yan, Aoying Zhang, Mingtao Tan, et al.
Journal of Hazardous Materials|December 31, 2024
The Pb tolerance initiated by LdZIP8 in Lymantria dispar larvae: An effective defense against heavy metal stressYubin He, Ying Wang, Aoying Zhang, et al.
Comparative Biochemistry and Physiology. Toxicology & Pharmacology : CBP|December 7, 2025
The LdCDF4 confers Cu tolerance of Lymantria dispar larvae: A novel heavy metal transporter in insectsTao Ren, Yubin He, Ying Wang, et al.
Journal of Agricultural and Food Chemistry|October 10, 2025
The HcAmy2 Confers the Adaptability of Hyphantria cunea to Multiple Hosts: An Important Target for Constructing Nucleic Acid PesticideAoying Zhang, Xue Yan, Ruiqi Wang, et al.
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