隋娜

日期: 2026/09/20 作者: 生命科学学院 浏览量:


隋娜,教授,博士生导师,泰山学者青年专家,省优青。山东省植物生理与分子生物学学会常务理事,山东省作物学会青工委副主任。逆境植物生物与分子生物学团队负责人,长期致力于作物耐盐分子生物学方面的研究,在黄河三角洲盐碱地筛选和培育耐盐碱高粱新品种,并进行营养价值评估和产业化推广应用。主持国家自然科学基金项目7项,以第一或通讯作者在Trends in Plant Science、JIPB、Molecular Plant、Plant Physiology等期刊发表SCI论文80余篇,SCI他引3000余次。获评山东省优秀研究生导师、山东省现代农业产业技术体系岗位专家、山东师大“杰出青年”“东岳学者”拔尖人才、“十佳教师”、三八红旗手等称号。

E-mail: suina@sdnu.edu.cn

承担的主要项目:

1. 国家自然科学基金面上项目:SbWRKY94-SbCEP5介导ABA信号调控高粱耐盐性的分子机制研究,2027.01-2030.12,主持

2. 国家自然科学基金面上项目:N6-甲基腺苷甲基化酶SbMTA介导m6A修饰调控甜高粱耐盐性分子机理研究,2023.01-2026.12,主持

3. 国家重点研发计划:作物耐盐碱高效高产基因资源挖掘与利用,2022.12-2027.11,任务主持

4. 山东省重点研发课题:高产优质抗逆杂粮新品种培育及推广应用,2026.01-2029.12,主持

5. 横向课题:高速公路沿线盐碱地耐盐碱种质筛选及配套栽培技术研究,2025.07-2028.12,主持

代表性科研论文:

1. Shan Cao#, Jiqing Zhang#, Zhengyu Guo, He Wang, Zengting Chen, Simin Li, Na Sui*. The transcription factor SbWRKY6 confers cadmium tolerance via activating SbPLAC8-17 expression in sorghum. Journal of Hazardous Materials, 2026, 516

2. Yali Wang#, Zengting Chen#, Fenghui Wu, Na Sui*. From Rhizosphere to Endosphere: Conserved and Specialized Mechanisms of Plant Growth-Promoting Bacteria in Mediating Salt Tolerance. Plant Cell and Environment, 2026, 49: 6311-6324

3. Ying Kong#, Zengting Chen#, Zhengyu Guo, Yanling Zhang, Zishuo Han, Na Sui*. PROSiCAPE14 regulates salt tolerance through ROS and ion homeostasis in foxtail millet. Theoretical and Applied Genetics, 2026, 139: 130

4. Simin Li, Rui Liu, Hongxiang Zheng, Xuemei Wang, Fenghui Wu, Xihua Du, Cheng Liu, Fangning Zhang*, Na Sui*. Identification of new circRNAs that mediate sorghum salt tolerance by attenuating ROS accumulation. The Crop Journal, 2026, 14: 400-411

5. Simin Li#, Zishuo Han#, Rui Liu, Zengting Chen, Na Sui*, Zhiying Zhao*. The transcription factor SbbHLH168 enhances salt tolerance by coordinating ion homeostasis and lignin content in sorghum. Stress Biology, 2026, 6: 51

6. Fenghui Wu#, Zengting Chen#, Xiaotong Xu, Xin Xue, Yanling Zhang, Na Sui*. Halotolerant Bacillus sp. strain RA coordinates myo-inositol metabolism to confer salt tolerance to tomato. Journal of Integrative Plant Biology, 2024, 66(9): 1871-1885

7. Hongxiang Zheng, Yingying Dang, Yinping Gao, Simin Li, FengHui Wu, Fangning Zhang, Xuemei Wang, Xihua Du, Lei Wang, Jie Song, Na Sui*. An mRNA methylase and demethylase regulate sorghum salt tolerance by mediating N6-methyladenosine modification. Plant Physiology, 2024, 196(4): 3048-3070

8. Hongxiang Zheng#, Yinping Gao#, Yi Sui#, Yingying Dang, Fenghui Wu, Xuemei Wang, Fangning Zhang, Xihua Du*, Na Sui*. R2R3 MYB transcription factor SbMYBHv33 negatively regulates sorghum biomass accumulation and salt tolerance. Theoretical and Applied Genetics, 2023, 136: 5

9. Hongxiang Zheng#, Xi Sun#, Xiansheng Zhang*, Na Sui*. m6A editing: New tool to improve crop quality. Trends in Plant Science, 2020, 25(9): 859-867

10. Hongxiang Zheng, Xiansheng Zhang*, Na Sui*. Advances in the profiling of N6-methyladenosine (m6A) modifications. Biotechnology Advances, 2020, 45: 107656

11. Xi Sun#, Hong-xiang Zheng#, Simin Li, Yinping Gao, Yingying Dang, Zengting Chen, Fenghui Wu, Xuemei Wang, Qi Xie, Na Sui*. MicroRNAs balance growth and salt stress responses in sweet sorghum. Plant Journal, 2023, 113 (4): 677-697

12. Yushuang Song#, Hongxiang Zheng#, Yi Sui#, Simin Li, Fenghui Wu, Xi Sun, Na Sui*. SbWRKY55 regulates sorghum response to saline environment by its dual role in abscisic acid signaling. Theoretical and Applied Genetics, 2022, 135: 2609-2625

13. Na Sui#, Fang Huang#*, Lu-Ning Liu*. Photosynthesis in Phytoplankton: Insights from the Newly Discovered Biological Inorganic Carbon Pumps. Molecular Plant, 2020, 13: 1-3

14. Hongxiang Zheng#, Yinping Gao#, Yingying Dang, Fenghui Wu, Na Sui*. Characterization of the m6A gene family in sorghum and its function in growth, development and stress resistance. Industrial Crops and Products, 2023, 198: 116625

15. Yushuang Song#, Simin Li#, Yi Sui#, Hongxiang Zheng, Xi Sun, Wenjing Yang, Guoliang Han, Hailiang Wang, Kunyang Zhuang, Fanying Kong, Qingwei Meng, Na Sui*. SbbHLH85, a bHLH member, modulates resilience to salt stress by regulating root hair growth in sweet sorghum. Theoretical and Applied Genetics, 2021, 135: 201-216

16. Fenghui Wu#, Jie Yang#, Hongxiang Zheng, Fangning Zhang, Simin Li, Zengting Chen, Na Sui*. Interactions between the soil bacterial community assembly and gene regulation in the salt-sensitive and salt-tolerant sweet sorghum cultivars. Land Degradation & Development, 2022, 1-13