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南京农业大学生命科学学院导师教师师资介绍简介-沈文飚/教授

本站小编 Free考研考试/2021-03-27

个人简介
沈文飚,教授,博士生导师,江苏省生物化学与分子生物学副理事长。尝试从氢和碳元素的角度,开展植物非生物胁迫耐性气体信号(氢气、甲烷、硫化氢、一氧化碳和一氧化氮)的分子机理和纳米生物学的研究。以通讯作者在Chemical Engineering Journal、Plant Physiol、Plant J、New Phytol、Mol Plant、Nanoscale、Plant Cell Environ、J Exp Bot和Free Radic Biol Med等SCI刊物发表论文130多篇,入选2014-2019年爱思唯尔发布的 “中国高被引****”榜单,3篇ESI高引论文(通讯作者),1篇论文被Faculty 1000正面评价。获得2项氢农业的国家发明专利,开发的动物源生物农药氯化血红素(国家发明专利;新型植物生长调节剂)获得中华人民共和国农业部农药登记证(2016年9月),尝试从大田到餐桌的可持续氢农业的理论与实践工作。实验室与法液空(AL; 财富五百强上市公司)、尤尼柯(上海)仪器有限公司和南通飞天等国内外相关公司建立了合作关系。指导的研究生已经有8位获得正高职称,2位入选国家级人才计划。





教学情况
本科生:生物化学
研究生:现代生物化学等





科研情况
2013-2021年的部分论文:
1、Su J, Yang X, Shao Y, Chen Z, Shen W*. Molecular hydrogen-induced salinity tolerance requires melatonin signalling in Arabidopsis thaliana. Plant Cell Environ accepted
2、Wang Y, Lv P, Kong L, Shen W*, He Q*. Nanomaterial-mediated sustainable hydrogen supply induces lateral root formation via nitrate reductase-dependent nitric oxide. Chemical Engineering Journal 2021,405, 126905
3、Zhang Y, Cheng P, Wang Y, Li Y, Su J, Chen Z, Yu X, Shen W*. Genetic elucidation of hydrogen signaling in plant osmotic tolerance and stomatal closure via hydrogen sulfide. Free Radic Biol Med 2020,161, 1 – 14
4、Zhao G, Zhao Y, Lou W, Su J, Wei S, Yang X, Wang R, Guan R, Pu H, Shen W*. Nitrate reductase-dependent nitric oxide is crucial for multi-walled carbon nanotubes-induced plant tolerance against salinity. Nanoscale 2019, 11, 10511 – 10523
5、Jiang X, He J, Cheng P, Xiang Z, Zhou H, Wang R, Shen W*. Methane control of adventitious rooting requires γ-glutamyl cysteine synthetase-mediated glutathione homeostasis. Plant Cell Physiol 2019, 60, 802 – 815
6、Su J, Nie Y, Zhao G, Chen D, Wang R, Chen J, Zhang S, Shen W*. Endogenous hydrogen gas delays petal senescence and extends the vase life of lisianthus cut flowers. Postharvest Biol Technol 2019, 147, 148 – 155
7、 Chen Z, Xie Y, Zhao G, Gu Q, Zhang Y, Cui W, Xu S, Wang R, Shen W*. The AtrbohF-dependent regulation of ROS signaling is required for melatonin-induced salinity tolerance in Arabidopsis. Free Radic Biol Med 2017, 108: 465 – 477
8、 Xie Y, Mao Y, Duan X, Zhou H, Lai D, Zhang Y, Shen W*. Arabidopsis HY1-modulated stomatal movement: An integrative hub for its functionally associated with ABI4 in the dehydration-induced ABA responsiveness. Plant Physiol 2016, 170: 1699 – 1713
9、Xie Y, Mao Y, Zhang W, Lai D, Wang Q, Shen W*. Reactive oxygen species-dependent nitric oxide production contributes to hydrogen-promoted stomatal closure in Arabidopsis. Plant Physiol 2014, 165: 759 – 773
10、Han B, Yang Z, Xie Y, Nie L, Cui J, Shen W*. Arabidopsis HY1 confers cadmium tolerance by decreasing nitric oxide production and improving iron homeostasis. Mol Plant, 2014, 7: 388 – 403
11、 Cui W, Gao C, Fang P, Lin G, Shen W*. Alleviation of cadmium toxicity in Medicago sativa by hydrogen-rich water. J Hazard Mater 2013, 260: 715 – 724
12、Xie Y, Mao Y, Lai D, Zhang W, Zheng T, Shen W*. Roles of NIA/NR/NOA1-dependent nitric oxide production and HY1 expression in the modulation of Arabidopsis salt tolerance. J Exp Bot. 2013, 64: 3045 – 3060
13、Jin QJ, Zhu KK, Cui WT, Xie YJ, Han B, Shen WB*. Hydrogen gas acts as a novel bioactive molecule in enhancing plant tolerance to paraquat-induced oxidative stress via the modulation of heme oxygenase-1 signaling system. Plant Cell Environ 2013, 36: 956 – 969








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