王洁华
- 教师拼音名称:Wang Jiehua
 - 职务:无
 - 性别:女
 - 职称:教授
 - 所属院系:环境科学与工程学院
 
- · Moeen-Ud-Din M, Yang S, Wang J*, Auxin homeostasis in plant responses to heavy metal stress. Plant Physiol Biochem 2023 (205):108210.
 - · Wang J, Muhammad Moeen-ud-din, Yin R, Yang S*, ROS Homeostasis Involved in Dose-Dependent Responses of Arabidopsis Seedlings to Copper Toxicity. Genes 2023 (14):11.
 - · Zhang T, Zhang S, Yang S, Zhang J*, Wang J*, Teng H, Arabidopsis seedlings respond differentially to nutrient efficacy of three rock meals by regulating root architecture and endogenous auxin homeostasis. BMC Plant Biol 2023 (23):609.
 - · Yang H, Chen H, Ni Y, Li J, Cai Y, Ma B, Yu J, Wang J*, Liu C*, De novo assembly of the Salvia miltiorrhiza mitochondrial genome using Pacbio long reads provides the first evidence of multi-chromosomal mitochondrial DNA structure of Salvia species. International Journal of Molecular Sciences 2022 (23):14267.
 - · Qiao L, Zhang T, Yang H, Yang S, Wang J*, Overexpression of a SHORT-ROOT transcriptional factor enhances the auxin mediated formation of adventitious roots and lateral roots in poplar trees. Plant Science 2022 (323):111408.
 - · Wang T, Zhang T, Dai X, Wang W, Wang J*, Control strategies for biofilm control in reclaimed water distribution systems from the perspective of microbial antagonism and electrochemistry. Science of the Total Environment 2022 (834): 155289.
 - · Dai X, Zhang S, Liu S, Qi H, Duan X, Han Z*, Wang J*, Functional characterization and phenotyping of protoplasts on a microfluidics-based flow cytometry. Biosensors (Basel) 2022 (12): 688.
 - · Yi M, Yang H, Yang S, Wang J*, Overexpression of SHORT-ROOT2 transcription factor enhances the outgrowth of mature axillary buds in poplar trees. J Exp Bot 2022 (73):2469–2486.
 - · Wang T, Dai X, Zhang T, Xin C, Guo Z, Wang J*, Formation and microbial composition of biofilms in drip irrigation system under three reclaimed water conditions. Water 2022 (14): 1216.
 - · Wang J, Muhammad Moeen-ud-din, Yang S*, Dose-dependent responses of Arabidopsis thaliana to zinc are mediated by auxin homeostasis and transport. Environ Exp Bot 2021 (189):104554.
 

                    
 