
1. 个人简介:
汪冲 博士,副教授,植物学、农艺与种业专业硕士生导师
教育经历:
2010-2017,博士,上海交通大学
2006-2010,学士,西北农林科技大学
工作经历:
2022至今,上海师范大学 副教授
2019-2022,上海师范大学 讲 师
2017-2019,上海交通大学 博士后
2. 主要研究方向:
[1] 基因编辑技术在水稻、花卉等植物中的应用
[2] 植物基因编辑技术开发
[3] 百合生物育种
3. 代表性科研项目:
[1]重瓣矮牵牛等花卉优质新种质创制与基因编辑技术体系构建,上海市农业科技创新项目,2024-2026,参与;
[2]红掌基因编辑育种技术研究,中荷农业部上海园艺培训示范中心合作项目,2024-2026,参与;
[3]枸杞高效基因编辑技术研究及新种质创制,宁夏回族自治区重点研发计划“揭榜挂帅”课题子课题,2022-2025,参与;
[4]香豌豆花卉品种保育及种质创新关建技术的研发与应用,上海市崇明区农业科创项目,2021-2024,参与;
[5]水稻减数分裂调节因子LOBA的克隆与功能分析,国家自然科学基金(青年项目),2020-2022,主持;
[6]水稻结构特异性核酸内切酶参与减数分裂过程的机制研究,博士后科学基金面上项目,2018-2019,主持。
4. 代表性论文:
[1] Xue Y#, Wang C#, Ge R, Lu S, Ni J, Duan Y, Hong Z, Zhang H. Efficient creation of decorative double-flowered petunia through CRISPR/Cas9-mediated simultaneous editing of PMADS3 and FBP6 genes. Plant Biotechnol J. 2025 Oct;23(10):4350-4352.
[2] Fu Y, He X, Wang W, Chen Z, Hong Z, Du B, Wang C*, Zhang H*. A simple and efficient Agrobacterium rhizogenes-mediated CRISPR/Cas9 gene editing system in Lathyrus odoratus. Plant Cell Tiss Org. 2025 Jul 17;
[3] Sun Y, Hong Z, Wang W, Zhang H, Ren X, He X, Kan T, Fan Y, Wang C, Cao Y, Zhang H. Establishment of an efficient and versatile genome editing platform for L. ruthenicum. Plant Physiol. 2025 Oct 6:kiaf486.
[4]郭红萱,鲍微微,张晓雪,霍文雨,张 辉,王 晖*,汪 冲*. 红掌遗传育种研究现状与展望. 植物遗传资源学报, 2025, 26(10): 1891-1901.
[5] Zhao 赵 J嘉, Fu H, Wang Z, Zhang M, Liang Y, Cui X, Pan W, Ren Z, Wu Z, Zhang Y, Gui X, Huo L, Lei X, Wang C, Schnittger A, Pawlowski WP, Liu B. Genetic variation in Arabidopsis thaliana reveals the existence of natural heat resilience factors for meiosis. Plant Physiol. 2024 Dec 24;197(1):kiae671.
[6] Zhang W, Xu Y, Cui J, Xue Y, Zhang L, Wu W, Wang C, Zhang H. Development of the A&GBE base editor for efficiently generating abundant genetic variation in rice. The Crop Journal. 2024 Dec; 12(6):1801-1805I.
[7] Fu H, Zhong J, Zhao J, Huo L, Wang C, Ma D, Pan W, Sun L, Ren Z, Fan T, Wang Z, Wang W, Lei X, Yu G, Li J, Zhu Y, Geelen D, Liu B. Ultraviolet attenuates centromere-mediated meiotic genome stability and alters gametophytic ploidy consistency in flowering plants. New Phytol. 2024 Sep;243(6):2214-2234.
[8] Wang C#, Qu S#, Zhang J#, Fu M, Chen X, Liang W. OsPRD2 is essential for double-strand break formation, but not spindle assembly during rice meiosis. Front Plant Sci. 2023 Jan 13;13:1122202.
[9] Zhao J, Gui X, Ren Z, Fu H, Yang C, Wang W, Liu Q, Zhang M, Wang C, Schnittger A, Liu B. ATM-mediated double-strand break repair is required for meiotic genome stability at high temperature. Plant J. 2023 Apr;114(2):403-423.
[10] Fu H, Zhao J, Ren Z, Yang K, Wang C, Zhang X, Elesawi IE, Zhang X, Xia J, Chen C, Lu P, Chen Y, Liu H, Yu G, Liu B. Interfered chromosome pairing at high temperature promotes meiotic instability in autotetraploid Arabidopsis. Plant Physiol. 2022 Feb 4;188(2):1210-1228.
[11]孙星,王文文,卫纯洁,路双,郑志仁,张辉,徐晨曦,汪冲*利用基因编辑技术提高番茄GABA含量的研究进展. 上海师范大学学报. 2022,51(1):87-93.
[12]Wei C, Liu H, Wang W, Luo P, Chen Q, Li R, Wang C, Botella JR, Zhang H. Expanding the Editing Window of Cytidine Base Editors With the Rad51 DNA-Binding Domain in Rice. Front Plant Sci. 2022 Apr 25;13:865848.
[13]Wei C#, Wang C#, Jia M, Guo HX, Luo PY, Wang MG, Zhu JK, Zhang H. Efficient generation of homozygous substitutions in rice in one generation utilizing an rABE8e base editor. J Integr Plant Biol. 2021 Sep;63(9):1595-1599.
[14]Ning Y#, Liu Q#, Wang C#, Qin E, Wu Z, Wang M, Yang K, Elesawi IE, Chen C, Liu H, Qin R, Liu B. Heat stress interferes with formation of double-strand breaks and homolog synapsis. Plant Physiol. 2021 Apr 23;185(4):1783-1797.
[15]阚婷婷, 汪冲, 郑志仁,张辉. 基因编辑技术在花卉育种中应用的研究进展. 上海师范大学学报.2021,50(1):50-56.
[16]Fu R, Wang C, Shen H, Zhang J, Higgins JD, Liang W. Rice OsBRCA2 is required for DNA double-strand break repair in meiotic cells. Front Plant Sci. 2020 Nov 16;11:600820. SCI, IF=5.735.
[17]Lei X, Ning Y, Eid Elesawi I, Yang K, Chen C, Wang C*, Liu B*. Heat stress interferes with chromosome segregation and cytokinesis during male meiosis in Arabidopsis thaliana. Plant Signal Behav. 2020 May 3;15(5):1746985.
[18]曲姝颖,伍利民,张杰,梁婉琪,汪冲*.水稻减数分裂异常突变体osmd的表型分析及基因定位. 分子植物育种. 2020,18(1): 238-245.
[19]Zhang J#, Wang C#, Higgins JD, Kim YJ, Moon S, Jung KH, Qu S, Liang W. A Multiprotein Complex Regulates Interference-Sensitive Crossover Formation in Rice.Plant Physiol. 2019 Sep;181(1):221-235.
[20]Wang C, Higgins JD, He Y, Lu P, Zhang D, Liang W. Resolvase OsGEN1 Mediates DNA Repair by Homologous Recombination. Plant Physiol. 2017,173:1316–1329.
[21]He Y, Wang C, Higgins JD, Yu J, Zong J, Lu P, Zhang D, Liang W. MEIOTIC F-BOX Is Essential for Male Meiotic DNA Double Strand Break Repair in Rice. Plant Cell. 2016, 28: 1879-1893.
[22]Fu M, Wang C, Xue F, Higgins J, Chen M, Zhang D, Liang W. The DNA topoisomerase VI–B Subunit OsMTOPVIB Is Essential for Meiotic Recombination Initiation in Rice. Molecular Plant. 2016, Nov 7;9(11):1539-1541.
5. 获奖情况:
[1]第五届上海市高校教师教学创新大赛优胜奖,2025年;
[2]上海师范大学第五届教师教学创新大赛特等奖,2025年;
[3]第六届全国高校混合式教学设计创新大赛优胜奖,2024年;
[4]第六届全国高校混合式教学设计创新大赛校赛特等奖,2024年;
[5]上海师范大学第四届高校教师教学创新大赛新农科组二等奖,2024年;
[6]上海师范大学第八届青年教师教学竞赛三等奖,2023年;
[7]上海师范大学生命科学学院第八届青年教师教学竞赛一等奖,2023年。
6. 代表性授权专利:
[1]一种CRISPR/Cas9介导的植物多基因编辑载体的构建方法和应用,专利号:CN113564197B,公告日:2024.3.15.
[2]一种新型双碱基编辑器 rAGBE 及其合成方法与应用,公布号:CN 117305282 A, 公布日:2023.12.29.
[3]可实现细胞器DNA上大范围腺嘌呤碱基编辑的重组蛋白、核酸、载体及应用, 公布号:CN 118165122 A,公布日:2024.06.11.
[4]ePE-P3-max引导编辑系统、核酸分子、重组 载体、重组转化子及应用,公布号:CN 118620891 A,公布日:2024.09.10.
[5]植物细胞器内基因组中腺嘌呤碱基编辑器及其应用方法,公布号:CN 120098979 A, 公布日:2025.06.06.
[6]雄性不育基因OsNIN5及其应用和育性恢复的方法,专利号:CN110938122B,公告日:2022.07.01.
更新时间:2025年10月


