主要研究方向:
1、磷脂代谢及其信号转导
2、植物感受与应答高盐胁迫的分子机制
3、植物激素信号感受与调控机理
近五年发表论文 (*通讯作者).:
1. Jia Q, Bai Y, Xu H, Liu Q, Li W, Li T, Lin F, Shen L, Zhang W, Zhang Q*. (2022) Mitochondrial GPAT-derived LPA controls auxin-dependent embryonic and postembryonic development. PNAS, accepted.
2. Deng P, Jing W*, Cao C, Sun M, Chi W, Zhao S, Dai J, Shi X, Wu Q, Zhang B, Jin Z, Guo C, Tian Q, Shen L, Yu J, Liang J, Wang C, Chin J, Yuan J, Zhang Q*, Zhang W*. (2022) Transcriptional repressor RST1 controls salt tolerance and grain yield in rice by regulating gene expression of asparagine synthetase. PNAS, accepted.
3. Kong X, Lv N, Liu S, Xu H, Huang J, Xie X, Tao Q, Wang B, Ji R, Zhang Q*, Jiang J*. (2022) Phytoremediation of isoproturon-contaminated sites by transgenic soybean. Plant Biotechnol J. https://doi.org/10.1111/pbi.13951.
4. Kim S, Yao S, Zhang Q, Wang X*. (2022) Phospholipase Dδ and phosphatidic acid mediate heat-induced nuclear localization of glyceraldehyde-3-phosphate dehydrogenase in Arabidopsis. Plant J. 112: 786–799.
5. Song P., Xu H., Zhang J., Chen H., Li L., Qu Y., Lin F*., Zhang Q*. (2021) Functional analysis of indole 3-hexanoic acid as a novel auxin from Arabidopsis thaliana. Planta. 254:69.
6. Song P, Jia Q., Xiao X., Tang Y., Liu C., Li W., Li T., Li L., Chen H., Zhang W., Zhang Q*. (2021) HSP70-3 interacts with phospholipase Dδ and participates in heat stress defense. Plant Physiol. 185: 1148–1165.
7. Shen L*., Tian Q., Yang L., Zhang H., Shi Y., Shen Y., Zhou Z., Wu Q., Zhang Q., Zhang W*. (2020). Phosphatidic acid directly binds with rice potassium channel OsAKT2 to inhibit its activity. Plant J. 102,649–665.
8. Song P, Jia Q., Chen L., Jin X., Xiao X., Li L., Chen H., Qu Y., Su Y., Zhang W., Zhang Q*. (2020) Involvement of phospholipase D δ in regulation of ROS-mediated microtubule organization and stomatal movement upon heat shock. J Exp Bot. 71: 6555–6570.
9. Wang P., Shen L., Guo J., Jing W., Qu Y., Li W., Bi R., Xuan W., Zhang Q*., Zhang W (2019) Phosphatidic acid directly regulates PINOID-dependent phosphorylation and activation of the PIN-FORMED 2 auxin efflux transporter in response to salt stress. Plant Cell 31: 250–271.
科研项目:
1. 国家自然科学基金面上项目:线粒体GPATs及其产物LPA调控植物生长发育与胁迫应答的分子机理 54万 (直接经费,32270301)
2. 中央高校基本业务费:植物-微生物组互作研究80万 (XUEKEN2022002)
3. 江苏省农业科技自主创新项目-关键技术创新项目:江苏大豆优质多抗种质资源发掘及创新利用 80万 (CX(20)2007)
4. 中央高校基本业务费:磷脂调控生长素信号转导的分子机制 30万 (KJJQ202003)
5. 江苏省杰出青年项目:磷脂调控生长素信号转导的分子机制 100万 (BK20190025)
6. 国家自然科学基金面上项目:非特异性磷脂酶C调控生长素信号和应答非生物胁迫的分子机理 58万 (直接经费,31970300)
7. 国家自然科学基金面上项目:磷脂酶D调控生长素极性运输和应答高盐胁迫的分子机理 61万 (直接经费,31670263)
8. 国家自然科学基金面上项目:拟南芥磷脂酶D调控微管形态和应答高温胁迫的分子机理 80万 (31470364)
Last update on November 15, 2022