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硕士生导师

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张志华

日期:2022-04-09 点击数: 来源:suncitygroup太阳新城



张志华,博士,副教授,博士生导师。博士毕业于中国科学院遗传与发育生物学研究所遗传学专业,导师储成才研究员。主要研究方向为水稻矿质营养高效利用的分子机制解析及分子育种应用,相关文章以第一作者在Molecular PlantCurrent Opinion in Plant Biology等国际期刊发表,并以共同作者身份参与多项工作发表在NatureNature GeneticsNature Plants等。主持国家自然科学基金青年项目、面上项目及中国博士后科学基金项目,参加国家重点研发计划、国家自然科学基金和中国科学院战略性先导专项等,入选suncitygroup太阳新城优秀青年培育计划、励新优秀青年教师培养计划重点培养阶段


联系方式

电话: 0431-87886265

E-mail: zhangzhihua@jlu.edu.cn

通讯地址:suncitygroup太阳新城和平校区suncitygroup太阳新城613


教育经历

2013.09 - 2019.01   中国科学院大学/中国科学院遗传与发育生物学研究所,遗传学,博士

2010.09 - 2013.06   中国农业科学院研究生院/中国农业科学院作物科学研究所,作物种质资源学,硕士

2006.09 - 2010.06   青岛农业大学,农学,本科


工作经历

2021.07 - 至今 suncitygroup太阳新城,副教授

2019.02 - 2021.06 广州老员工命科学学院,博士后


主要学术兼职

吉林省土壤学会第十届理事会理事;suncitygroup太阳新城青年科技工作者协会会员


教学情况

本科生课程:植物营养与分子生物学植物种质资源保护与利用,植物蛋白质组学,资源环境专业英语

研究生课程:植物功能基因组学,论文写作指导


主要研究方向

氮和磷是植物必需的两大矿质元素,对植物生长发育和作物产量起关键作用,如何挖掘植物自身调控氮磷营养吸收和利用的重要基因,是培育氮磷高效作物新品种的核心,但早期研究大多以模式生物拟南芥为研究对象,且只从氮、磷单一营养出发。植物的生长发育是基于对多种营养元素以合理的比例的吸收利用,所以由氮素驱动的植物生长发育要协同多种元素的利用,而这也可能是提高作物养分高效利用的关键切入点。因此,我们以水稻为研究对象,开展氮磷等营养元素吸收利用以及相互调控的分子机制研究,挖掘关键功能基因,为水稻营养高效分子设计育种提供理论指导和遗传资源。


代表性课题

1, 国家自然科学基金面上项目(2023-2026),批准号3227280254万元,主持;

2, suncitygroup太阳新城优秀青年培育计划(2021-2022),20万元,主持

3, suncitygroup太阳新城学术骨干科研启动经费,29万元,主持;

4, 国家自然科学基金青年项目(2021-2023),批准号3200211924万元,主持

5, 中国博士后科学基金二等资助(2020-2021),资助编号2020M6725698万元,主持

6, 广州市博士后科研启动经费(2020-2021),20万元,主持



代表性论文

1. Yu Yan#, Zhihua Zhang#, Huwei Sun, Xiujie Liu, Junpeng Xie, Yahong Qiu, Tuanyao Chai*, Chengcai Chu*, Bin Hu*. Nitrate confers rice adaptation to high ammonium by suppressing its uptake but promoting its assimilation, Molecular Plant, 2023, 16(12):1871-1874. (co-first author)

2. Rongzhi Chen#, Yiwen Deng#, Yanglin Ding#, Jingxin Guo#, Jie Qiu#, Bing Wang#, Changsheng Wang#, Yongyao Xie#, Zhihua Zhang#, Jiaxin Chen, Letian Chen, Chengcai Chu, Guangcun He, Zuhua He, Xuehui Huang, Yongzhong Xing, Shuhua Yang, Daoxin Xie*, Yaoguang Liu*, Jiayang Li*. Rice functional genomics: decades’ efforts and roads ahead, SCIENCE CHINA Life Sciences, 2022,65(1), 33-92. (co-first author)

3. Zhihua Zhang#; Zhao Li#; Wei Wang; Zhimin Jiang; Liping Guo; Xiaohan Wang; Yangwen Qian; Xiahe Huang; Yongqiang Liu; Xiujie Liu; Yahong Qiu; Aifu Li; Yu Yan; Junpeng Xie; Shouyun Cao; Stanislav Kopriva; Legong Li; Fanjiang Kong; Baohui Liu; Yingchun Wang; Bin Hu*; Chengcai Chu*. Modulation of nitrate-induced phosphate response by the MYB transcription factor RLI1/HINGE1 in the nucleus, Molecular Plant, 2021, 14(3):517-529.

4. Zhihua Zhang; Bin Hu; Chengcai Chu*. Towards understanding the hierarchical nitrogen signalling network in plants, Current Opinion in Plant Biology, 2020,55:60-65.

5. Zhihua Zhang; Shaopei Gao; Chengcai Chu*. Improvement of nutrient use efficiency in rice: current toolbox and future perspectives, Theoretical and Applied Genetics, 2020, 133:1365-1384.

6. Zhihua Zhang; Chengcai Chu*. Nitrogen-use divergence between indica and japonica rice: variation at nitrate assimilation, Molecular Plant, 2020, 13(1): 6-7.

7. Yongqiang Liu#; Hongru Wang#; Zhimin Jiang; Wei Wang; Ruineng Xu; Qihui Wang; Zhihua Zhang; Aifu Li; Yan Liang; Shujun Ou; Xiujie Liu; Shouyun Cao; Hongning Tong; Yonghong Wang; Feng Zhou; Hong Liao; Bin Hu* & Chengcai Chu*. Genomic basis of geographical adaptation to soil nitrogen in rice. Nature 2021,590:600-605.

8. Wei Wang; Aifu Li; Zhihua Zhang; Chengcai Chu*. Post-translational modifications: regulation of nitrogen utilization and signaling, Plant Cell Physiol. 2021,62(4):543-552.

9. Yao Shi; Huy Phan; Yaju Liu; Shouyun Cao; Zhihua Zhang; Chengcai Chu; Michael R Schläppi*. Glycosyltransferase OsUGT90A1 helps protect the plasma membrane during chilling stress in rice, Journal of Experimental Botany, 2020, 71 (9): 2723–2739.

10. Bin Hu#; Zhimin Jiang#; Wei Wang#; Yahong Qiu#; Zhihua Zhang; Yongqiang Liu; Aifu Li; Xiaokai Gao; Linchuan Liu; Yangwen Qian; Xiahe Huang; Feifei Yu; Sai Kang; Yiqin Wang; Junpeng Xie; Shouyun Cao; Lianhe Zhang; Yingchun Wang; Qi Xie; Stanislav Kopriva; Chengcai Chu*. Nitrate-NRT1.1B-SPX4 cascade integrates nitrogen and phosphorus signalling networks in plants, Nature Plants, 2019, 5(4): 401-413.

11. Lianhe Zhang#; Bin Hu#; Kun Deng; Xiaokai Gao; Guoxin Sun; Zhengli Zhang; Peng Li; Wei Wang; Hua Li; Zhihua Zhang; Zihao Fu; Jinyong Yang; Shaopei Gao; Legong Li; Feiyan Yu; Youjun Li; Hongqing Ling; Chengcai Chu*. NRT1.1B improves selenium concentrations in rice grains by facilitating selenomethinone translocation, Plant Biotechnology Journal, 2019, 17 (6):1058-1068.

12. Wei Wang#; Bin Hu#; Dingyang Yuan; Yongqiang Liu; Ronghui Che; Yingchun Hu; Shujun Ou; Zhihua Zhang; Hongru Wang; Hua Li; Zhimin Jiang; Zhengli Zhang; Xiaokai Gao; Yahong Qiu; Xiangbing Meng; Yongxin Liu; Yang Bai; Yan Liang; Yiqin Wang; Lianhe Zhang; Legong Li; Sod Mergen; Haichun Jing; Jiayang Li; Chengcai Chu*. Expression of the nitrate transporter gene OsNRT1.1A/OsNPF6.3 confers high yield and early maturation in rice. The Plant Cell, 2018, 30:638-651.

13. Hua Li; Bin Hu; Wei Wang; Zhihua Zhang; Yan Liang; Xiaokai Gao; Peng Li; Yongqiang Liu; Lianhe Zhang; Chengcai Chu*. Identification of microRNAs in rice root in response to nitrate and ammonium. Journal of Genetics and Genomics, 2016, 43 (11):651-661.

14. Bin Hu; Wei Wang; Shujun Ou; Jiuyou Tang; Hua Li; Ronghui Che; Zhihua Zhang; Xuyang Chai; Hongru Wang; Yiqin Wang; Chengzhen Liang; Linchuan Liu; Zhongze Piao; Qiyun Deng; Kun Deng; Chi Xu; Yan Liang; Lianhe Zhang; Legong Li; Chengcai Chu*. Variation in NRT1.1B contributes to nitrate-use divergence between rice subspecies, Nature Genetics, 2015, 47(7): 834-838.

15. 王威; 张联合; 李华; 张志华; 胡斌; 储成才*. 水稻营养元素吸收转运的分子机制研究进展, 中国科学, 2015, 45(6): 569-590.

16. 张志华; 李向华; 王克晶. 中国不同SKTI类型栽培大豆地方品种的遗传多样性, 植物遗传资源学报, 2013, 14(3): 373-383.

17. 专利:储成才; 张志华; 胡斌; 李钊; 王威; 蒋志敏 ; 转录因子HINGE1在调控植物氮-磷稳态中的应用, 2022-03-22, 中国, 202011429001.X

18. 专利:储成才; 王威; 胡斌; 李华; 张志华; 刘永强. 水稻NRT1.1A基因及其编码蛋白在提高植物产量育种中的应用, 2020-04-28, 中国, ZL201610680206.2.

19. 专利:储成才; 胡斌; 王威; 张志华; 李华; 梁成真; 车荣会. 水稻硝酸盐转运蛋白NRT1.1B在提高植物氮利用效率中的应用, 2017-4-26, 中国, ZL201410495440.9.






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