王洁华 教授 博士 天津市 研究领域: 生物医药 研究方向: 植物合成生物学、环境合成生物学 所在单位: 天津大学

基本信息

所在单位:
天津大学
机构细分:
合成生物与生物制造学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
1998.08–2002.12:加拿大 University of Alberta,分子生物学与遗传学,博士学位。
1995.09–1998.06:南开大学,细胞生物学,硕士学位。
1991.09–1995.06:南开大学,遗传学,学士学位。
工作经历:
2007.08–至今:天津大学,现任合成生物与生物制造学院教授。
2003.05–2005.12:瑞典乌姆植物科学研究中心,博士后。

科研能力

研究领域:
生物医药
研究方向:
植物合成生物学、环境合成生物学
论文著作:
1) Wang S, Zhang B, Dong H, Dong Y, Wang J*. Heterologous GSNOR expression modulates nitric oxide and glutathione redox to differentially shape plant responses to herbicides. Journal of Hazardous Materials. 2026, 503:141261.
2) Zhang B, Zhang S, Wang S, Dong H, Dong Y, Yang S, Wang J*. Mitigation of microplastic-induced phytotoxicity in poplar micropropagation by multi-walled carbon nanotubes. Journal of Hazardous Materials. 2025, 496:139381.
3) Wang S, Zhang B, Zhang S, Yang S, Lu MZ, Wang J*. The overexpression of E. coli formaldehyde metabolism genes in Arabidopsis conferred varying degrees of resistance to oxidative stress induced by small organic compounds. Journal of Hazardous Materials. 2025, 493:138352.
4) Yang S, Chu Y, Wang C, Liu Z, Wang J*. Brassinosteroid-mediated BraSERKs regulation and antioxidant defense enhancement confer Cd/Zn stress tolerance in Chinese cabbage. Physiologia Plantarum. 2025, 177:e70472.
5) Zhang J, Wang S, Bai Z, Pei J, Yang S, Wang J*. Overexpression of E. coli formaldehyde metabolic genes pleiotropically promotes Arabidopsis thaliana growth by regulating redox homeostasis. Journal of Hazardous Materials. 2025, 488:137324.
6) Zhang S, Wang S, Zhang B, Yang S, Wang J*. Different concentrations of carbon nanotubes promote or inhibit organogenesis of Arabidopsis explants by regulating endogenous hormone homeostasis. Planta. 2025, 261(3):55.
7) Moeen-Ud-Din M, Wang S, Yang S, Wang J*. The combined effects of copper and zinc on Arabidopsis involve differential regulation of chlorophyll synthesis and photosystem function. Plant Physiology and Biochemistry. 2024, 216:109160.
8) Shen X, Zhang J, Zhang T, Wang S, Han Z, Wang J*, Duan X*. Cell integrity maintenance and genetic transfection of protoplasts in an acoustofluidic system. Applied Physics Letters. 2024, 125:033701.
9) Zhang S, Zhang T, Wang S, Han Z, Duan X*, Wang J*. Phenotyping of single plant cells on a microfluidic cytometry platform with fluorescent, mechanical, and electrical modules. Analyst. 2024, 149(17):4436–4442.
10) Zhang T, Zhang S, Yang S, Zhang J*, Wang J*, Teng HH. Arabidopsis seedlings respond differentially to nutrient efficacy of three rock meals by regulating root architecture and endogenous auxin homeostasis. BMC Plant Biology. 2023, 23(1):609.
11) Moeen-Ud-Din M, Yang S, Wang J*. Auxin homeostasis in plant responses to heavy metal stress. Plant Physiology and Biochemistry. 2023, 205:108210.
12) Yang S, Wang C, Li B, Chen H, Wang J*. Removal of Pb2+ from aqueous solution using an MgO nano-hybridized magnetic biochar from spent coffee grounds. Chemical Physics Letters. 2023, 833:140894.
13) Yang S, Yin R, Wang C, Wang J*. Improved efficiency of Sedum lineare in remediation of arsenic-contaminated soil by phosphate-dissolving strain P-1 in association with phosphate rock. Environmental Geochemistry and Health. 2023, 45:8317–8336.
14) Yang H, Chen H, Ni Y, Li J, Cai Y, Wang J*, Liu C*. Mitochondrial genome sequence of Salvia officinalis suggests diverse genome structures in cogeneric species and finds the stop gain of genes through RNA editing events. International Journal of Molecular Sciences. 2023, 24(6):5372.
15) Yang H, Chen H, Ni Y, Li J, Cai Y, Ma B, Yu J, Wang J*, Liu C*. De novo hybrid assembly of the Salvia miltiorrhiza mitochondrial genome provides the first evidence of the multi-chromosomal mitochondrial DNA structure of Salvia species. International Journal of Molecular Sciences. 2022, 23(22):14267.
16) 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. 2022, 12(9):688.
17) 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.
18) 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.
19) Yi M, Yang H, Yang S, Wang J*. Overexpression of SHORT-ROOT2 transcription factor enhances the outgrowth of mature axillary buds in poplar trees. Journal of Experimental Botany. 2022, 73(8):2469–2486.
科研项目:
2026.01–2029.12:国家自然科学基金面上项目“植菌共生体协同降解室内甲醛/苯系物的氧化还原调控机制”。
2022.01–2025.12:国家自然科学基金面上项目“利用微流控平台在单细胞水平上研究植物初生细胞壁的形态建成与分子调控”。
2019.01–2022.12:国家自然科学基金面上项目“多肽激素与生长素协同调控杨树维管形成层发育的分子机制研究”。
2016.07–2020.12:国家重点研发计划子课题“林木次生生长的分子调控和环境胁迫机制”。
2015.01–2018.12:国家自然科学基金面上项目“BAM介导的 CLE-RLK-WOX 信号通路对杨树维管形成层活性的调控机制研究”。
2013.01–2016.12:国家自然科学基金面上项目“CLE多肽激素调控维管形成层发育及分化的分子机制研究”。
2012.01–2016.12:国家重点基础研究发展规划(973子课题“木材形成的调控机制研究”。
2011.01–2015.12:国家高技术研究发展计划(863子课题“杨树材性相关基因功能鉴定”。
2011.01–2013.12:国家自然科学基金面上项目“与杨树维管系统形态建成及分化相关的 LRR-RLK 基因的分离和功能分析”。
2009.01–2011.12:国家自然科学基金青年项目“毛果杨KTI蛋白酶抑制剂基因家族的分离及其抗病抗虫机制研究”。
在线客服 在线留言 小程序 公众号 4001789689 <<显示