1.Wang X#, Pan WB#, Sun C#, Yang H#, Cheng ZT#, Yan F, Ma GJ, Shang Y, Zhang R, Gao CX*, Liu LJ*, Zhang HW*. Creating large-scale genetic diversity inArabidopsisvia base editing-mediated deep artificial evolution. Genome Biology, 2024, 25, 215
2.Wang X#, Yan F#, Ma GJ, Li AX, Liu LJ*. The diverse functions of Pseudomonas syringae syringae van Hall effectors in regulating the plant immune response. Phytopathology Research, 2023, 5:63
3.Wang X#, Li BB#, Ma TT, Sun LY, Tai L, Hu CH, Liu WT, Li WQ, Chen KM*. The NAD kinase OsNADK1 affects the intracellular redox balance and enhances the tolerance of rice to drought. BMC Plant Biology, 2020, 20:11
4. Li BB#,Wang X#, Tai L, Ma TT, Shalmani A, Liu WT, Li WQ, Chen KM*. NAD kinases: metabolic targets controlling redox co-enzymes and reducing power partitioning in plant stress and development. Frontiers in Plant Science, 2018, 9:379
5.Wang X, Zhang MM, Wang YJ, Gao YT, Li R, Wang GF, Li WQ, Liu WT, Chen KM*. The plasma membrane NADPH oxidase OsRbohA plays a crucial role in developmental regulation and drought-stress response in rice. Physiologia Plantarum, 2016, 156(4): 421-443
6.Wang X#, Li WY#, Zhang MM, Gao YT, Liu WT, Li WQ, Muhammad I, Chen KM*. Identification and functional analysis of the NADK genes in wheat. Plant Molecular Biology Reporter, 2016, 34(1): 118-135