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Journal of Agricultural and Food Chemistry|February 28, 2025
Nanomediated Stimulation: An Alternative to Brassinolide Hormone Replacement Therapy for Plant Resistance ActivationHui Feng, Guangjin Fan, Zhongwei Liu, et al.Journal of Hazardous Materials|May 21, 2021
Antimicrobial mechanisms of g-C3N4 nanosheets against the oomycetes Phytophthora capsici: Disrupting metabolism and membrane structures and inhibiting vegetative and reproductive growthLin Cai, Xuefeng Wei, Hui Feng, et al.Nature Communications|March 21, 2026
Copper single-atom nanozyme with intelligent capture and photo-enhanced activity for controlling plant bacterial diseasesHao Jiang, Yue Xing, Zhifeng Ma, et al.Journal of Microbiology and Biotechnology|February 26, 2026
A Handy and Visual Detection Method for Potato Late Blight Utilizing Multi-Copy Specific Sequences and RPA-LFD TechnologyYi Que, RongSheng Wang, Li Sheng, et al.Bioorganic & Medicinal Chemistry|September 9, 2023
Discovery of novel indazole derivatives as SOS1 agonists that activate KRAS signalingLu Liu, Zhendong Song, Guangjin Fan, et al.European Journal of Medicinal Chemistry|June 18, 2022
Synthesis and evaluation of imidazo[1,2-a]pyrazine derivatives as small molecule Gαq/11 inhibitors against uveal melanomaJun-Jie Deng, Lu Liu, Yang Ge, et al.Molecular Plant|June 5, 2018
A Phytophthora capsici RXLR Effector Targets and Inhibits a Plant PPIase to Suppress Endoplasmic Reticulum-Mediated ImmunityGuangjin Fan, Yang Yang, Tingting Li, et al.Pesticide Biochemistry and Physiology|August 2, 2023
Antimicrobial mechanisms of ZnO nanoparticles to phytopathogen Pseudomonas syringae: Damage of cell envelope, suppression of metabolism, biofilm and motility, and stimulation of stomatal immunity on host plantGuangjin Fan, Qingli Xiao, Qian Li, et al.Molecular Plant Pathology|October 16, 2018
An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plantsGuiyan Huang, Zhirou Liu, Biao Gu, et al.Molecular Plant Pathology|October 7, 2021
Nicotiana benthamiana asparagine synthetase associates with IP-L and confers resistance against tobacco mosaic virus via the asparagine-induced salicylic acid signalling pathwayChangyun Liu, Shaorui Tian, Xing Lv, et al.Pageof 4