1、近5年主要论文: 1) Hu, J., Nan, S., Zhou, L., Yu, C., Li, Y., Zhao, K., Du, S., Han, Y. and Wang, S*., 2024. PagbZIP75 Decreases the ROS accumulation to Enhance Salt Tolerance of Poplar via the ABA Signaling. Environmental and Experimental Botany, p.106051.(通讯作者) 2) Zhou, L., Yu, C., Nan, S., Li, Y., Hu, J., Zhao, K., Guo, J. and Wang, S*., 2024. PagSOD2a improves poplar salt tolerance by elevating superoxide dismutase activity and decreasing malondialdehyde contents. Frontiers in Plant Science, 15, p.1456249.(通讯作者) 3) Dang, H., Yu, C., Nan, S., Li, Y., Du, S., Zhao, K. and Wang, S*., 2024. Genome-wide identification and gene expression networks of LBD transcription factors in Populus trichocarpa. BMC genomics, 25(1), p.920.(通讯作者) 4) Xia Jin, Kai Zhao, Jia Hu, Oliver Gailing, Lieding Zhou, Shuhui Du, Youzhi Han and Shengji Wang*. PagMYB73A enhances poplar salt tolerance by facilitating adventitious roots elongation and stomata density. Forestry Research. 2024, 4: e003(通讯作者) 5) Lieding Zhou, Xuhui Huan, Kai Zhao, Xia Jin, Jia Hu, Shuhui Du, Youzhi Han, Shengji Wang *. PagMYB205 Negatively Affects Poplar Salt Tolerance through Reactive Oxygen Species Scavenging and Root Vitality Modulation. International Journal of Molecular Sciences. 2023-10-22,24(20). DOI10.3390/ijms242015437(通讯作者) 6) Zhao K, Nan S, Li Y, Yu C, Zhou L, Hu J, Jin X, Han Y, Wang S. Comprehensive Analysis and Characterization of the GATA Gene Family, with Emphasis on the GATA6 Transcription Factor in Poplar. International Journal of Molecular Sciences. 2023; 24(18):14118(通讯作者) 7) Jia Hu, Shengqiang Zou, Juanjuan Huang, Xuhui Huan, Xia Jin, Lieding Zhou, Kai Zhao, Youzhi Han, Shengji Wang*. PagMYB151 facilitates proline accumulation to enhance salt tolerance of poplar. BMC Genomics, 2023, 24:345. https://doi.org/10.1186/s12864-023-09459-2. (通讯作者) 8) Kai Zhao, Hui Dang, Lieding Zhou, Jia Hu, Xia Jin, Youzhi Han, Shengji Wang*. Genome-Wide Identification and Expression Analysis of the HSF Gene Family in Poplar. Forests. 2023, 14, 510.https://doi.org/10.3390/f14030510.(通讯作者) 9) Huan X#, Wang X#, Zou S, Zhao K, Han Y, Wang S*. Transcription Factor ERF194 Modulates the Stress-Related Physiology to Enhance Drought Tolerance of Poplar. International Journal of Molecular Sciences. 2023; 24(1):788. https://doi.org/10.3390/ijms24010788.(通讯作者) 10) Shengqiang Zou, Zixin Xu, Xuhui Huan, Jia Hu, Lieding Zhou, Xia Jin, Kai Zhao, Youzhi Han & Shengji Wang*. Transcription factor ERF016 regulates vascular structure and water metabolism to enhance drought tolerance in poplar. Plant Growth Regul. 2023, 100: 619–632. https://doi.org/10.1007/s10725-022-00956-0.(通讯作者) 11) Shengji Wang#, Yan Fan#, Shuhui Du, Kai Zhao, Qiang Liu, Wenjing Yao, Tangchun Zheng*, Youzhi Han*, PtaERF194 inhibits plant growth and enhances drought tolerance in poplar, Tree Physiology, 2022, tpac026. doi:10.1093/treephys/tpac026. 12) Shengji Wang#, Juanjuan Huang#, Xingdou Wang, Xingdou Wang, Qiang Liu and Youzhi Han*. PagERF16 of Populus promotes lateral root proliferation and sensitizes to salt stress. Frontiers in Plant Science,2021, 12:669143. doi: 10.3389/fpls.2021.669143. 13) 樊艳,孙赫,韩有志,王卫锋,王升级*.ERF转录因子基因RAP2L15过量表达调控杨树矮化生长[J].分子植物育种,2025,23(02):476-481.(通讯作者) 14) 王升级,周猎鼎,胡佳等.ERF转录因子调控杨树叶片形态构建的功能分析[J].植物生理学报,2023,59(06):1157-1168. 15) 赵凯,樊艳,邹圣强,郇旭辉,杜淑辉,韩有志,王升级*.银腺杨84K盐胁迫应答基因PagMYBR96的克隆及表达分析. 林业科学,2022,58(9):117-127(通讯作者) 16) 孙赫,王星斗,王升级*.杨树ERF转录因子基因PtRAP2L14植物表达载体构建及遗传转化[J].分子植物育种,2022,20(05):1560-1567.(通讯作者) 17) 王升级,王星斗,黄娟娟,樊艳,刘强,王卫锋,韩有志*.转录组学分析揭示杨树对盐胁迫的早期响应[J].山西农业大学学报(自然科学版), 2021,41(06):2-13. 18) 王星斗,黄娟娟,樊艳,刘强,韩有志,王升级*.盐胁迫条件下转录因子RAP2L14调控杨树生长研究[J].山西农业大学学报(自然科学版), 2021,41(06):14-23. (通讯作者) 19) 李晓庆,王星斗,樊艳,刘强,王升级*.盐胁迫对杜梨吸收根生长指标的影响[J].山西农业大学学报(自然科学版),2021,41(05): 62-67(通讯作者) 2、专著教材 1) 普通高等教育“十四五”规划教材,《遗传学》第2版,中国农业大学出版社,2022-06,ISBN:9787565526831,参编第12章; 2) 专著,《杨树抗逆关键ERF转录因子鉴定与功能分析》,中国林业出版社,2022-08,ISBN:9787521918205. 3、成果专利 1) 一种用于杨树幼苗育种的培育架,发明专利,专利号:ZL202210824949.8, 2) 一种应用于林业育苗的浇水装置,实用新型,专利号:ZL201821412881.8; 3) 一种林业育苗栽种土基块夹持装置,实用新型,专利号:ZL202123097584.3. |