一、基本信息
张振乾,男,1988年01月生,博士,副教授,博士生导师。
二、 学习和工作经历
学习经历:
2006.09~2010.07,黑龙江八一农垦大学,本科;
2010.09~2017.07,中国农业大学,硕博连读;
2014.09~2015.02,法国科学研究中心 (CNRS),访问学生。
工作经历:
2017.07~2017.12,西北农林科技大学,实验员;
2017.12~2021.04,西北农林科技大学,讲师;
2021.05~今,西北农林科技大学,副教授。
三、主讲课程
本科生课程《植物生理学》
四、研究方向
主要从事植物非生物逆境信号转导的研究工作。以拟南芥、苜蓿为实验材料,结合遗传学、植物生理学、分子生物学和生物化学等技术手段,探索植物响应高/低锰、盐胁迫等非生物逆境胁迫的信号转导和分子调控网络,为农作物品种改良提供理论基础。
五、主持科研项目
1. 国家自然科学基金面上项目资助,项目名称:钙与ABA信号协同调控植物锰稳态的分子机制研究,2027.01~2030.12,资助金额:50万元,主持;
2. 国家自然科学基金面上项目资助,项目名称:拟南芥BRI1通过磷酸化CNGC11/12调控高锰胁迫的分子机制,2024.01~2027.12,资助金额:50万元,主持;
3. 国家自然科学基金青年科学基金项目资助,项目名称:CBLα/β-CIPKβ-MTP8/11信号途径参与拟南芥响应高锰胁迫的分子机制,2020.01~2022.12,资助金额:24万元,主持;
4. 中国博士后科学基金面上资助,项目名称:拟南芥CBLα/β参与响应高锰胁迫的功能与分子机制,2018.11~2020.12,资助金额:5万元,本人作用:主持;
5. 陕西省自然科学基础研究计划项目,项目名称:CBL-CIPK复合体参与拟南芥锰吸收与转运的功能研究,2019.01~2020.12,资助金额:3万元,本人作用:主持;
六、发表论文 (#co-first author, *corresponding author)
Zhang, Z.#, Yu, Z.#, Xie, D.#, Wang, J., Li, J., Lai, D., Gao, Y., Li, J., Ju, C., Zhang, Y., Liu, K.-H., and Wang, C*. (2026). A BRI1–CNGC12 phosphorylation module links hormone signaling to manganese homeostasis in plants. Proceedings of the National Academy of Sciences 123, e2514483123. (第一作者)
Xie, D., Chen, L., Li, J., Gao, Y., Lai, D., Wang, J., Ma, X., Li, J., Wang, C., Zhang, Z.*, and Sun, L*. (2026). Ca2+ sensor CBL2/3-CIPK3/9/26 phosphorylates MTP11 to modulate manganese efflux via degradation and Golgi retention. Plant Physiology, kiag162. (共同通讯作者)
Zhang, Z., Fu, D., Xie, D., Wang, Z., Zhao, Y., Ma, X., Huang, P., Ju, C., and Wang, C*. (2023). CBL1/9–CIPK23–NRAMP1 axis regulates manganese toxicity. New Phytologist 239, 660-672. (独立第一作者)
Wang, Z., Zhang, Y., Cao, C., Liu, J., Deng, Y., Zhang, Z.*, and Wang, C*. (2023). TaNRAMP3 is essential for manganese transport in Triticum aestivum. Stress Biology 3. (共同通讯作者)
Fu, D.#, Zhang, Z.#, Wallrad, L.#, Wang, Z., Höller, S., Ju, C., Schmitz-Thom, I., Huang, P., Wang, L., Peiter, E., Kudla, J., and Wang, C. (2022). Ca2+-dependent phosphorylation of NRAMP1 by CPK21 and CPK23 facilitates manganese uptake and homeostasis inArabidopsis. Proceedings of the National Academy of Sciences 119, e2204574119. (共同第一作者)
Ju, C.#, Zhang, Z.#, Deng, J.#, Miao, C., Wang, Z., Wallrad, L., Javed, L., Fu, D., Zhang, T., Kudla, J., Gong, Z., and Wang, C. (2022). Ca2+-dependent successive phosphorylation of vacuolar transporter MTP8 by CBL2/3-CIPK3/9/26 and CPK5 is critical for manganese homeostasis in Arabidopsis. Molecular Plant 15, 419-437. (共同第一作者)
Zhang, Z.#, Fu, D.#, Sun, Z.#, Ju, C., Miao, C., Wang, Z., Xie, D., Ma, L., Gong, Z., and Wang, C.* (2021). A Tonoplast-associated Calcium Signaling Regulates Manganese Homeostasis in Arabidopsis. Molecular Plant. 14, 805-819. (第一作者)
Zhang, Z.#, Hu, X.#, Zhang, Y., Miao, Z., Xie C., Meng, X., Deng, J., Wen, J., Mysore, K.S., Frugier, F., Wang, T., and Dong, J.* (2016). Opposing Control by Transcription Factors MYB61 and MYB3 Increases Freezing Tolerance by Relieving C-Repeat Binding Factor Suppression. Plant Physiology 172, 1306-1323. (第一作者)
Duan, M., Zhang, R., Zhu, F., Zhang, Z., Gou, L., Wen, J., Dong, J.*, and Wang, T.* (2017). A Lipid-Anchored NAC Transcription Factor Is Translocated into the Nucleus and Activates Glyoxalase I Expression during Drought Stress. The Plant Cell 29 , 1748-1772.
Liu, L., Zhang, Z., Dong, J., and Wang, T.* (2016). Overexpression of MtWRKY76 increases both salt and drought tolerance in Medicago truncatula. Environmental and Experimental Botany 123, 50-58.
Qu, Y., Duan, M., Zhang, Z., Dong, J., and Wang, T.* (2016). Overexpression of the Medicago falcata NAC transcription factor MfNAC3 enhances cold tolerance in Medicago truncatula. Environmental and Experimental Botany 129, 67-76.
Tu, Y., Jin, Y., Ma, D., Li, H., Zhang, Z., Dong, J.L., and Wang, T.* (2015). Interaction between PVY HC- Pro and the NtCF beta-subunit reduces the amount of chloroplast ATP synthase in virus- infected tobacco. Scientific Reports 5.
六、联系方式
通讯地址:陕西杨凌西北农林科技大学南校区科研楼2208
邮 编:712100
电子邮件:zhangzhenqian@nwafu.edu.cn