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王春 研究员     进组时间: 2013年

       王春,博士,研究员,博士生导师。中国农科院“青年英才计划”培育工程,浙江省高层次人才特殊支持计划青年拔尖人才。

主要研究领域

主要从事植物基因编辑技术的研究及应用,探索无融合生殖机制的分子机理、建立并完善杂交稻无融合生殖技术体系,致力于新技术推动分子设计育种。


教育背景及工作经历

2001-2005年 宁波大学 理学学士

2005-2012年 中国科学院遗传与发育生物学研究所 理学博士

2013-2016年 中国水稻研究所 助理研究员

2017-2019年 中国水稻研究所 副研究员

2020年-至今  中国水稻研究所 研究员


主持项目

  1. 国家自然科学基金青年基金,项目号:31401363,25万元,2015-2017;

  2. 国家自然科学基金面上基金,项目号:31871703,60万元,2019-2022;

  3. 国家科技重大专项,项目号:2019ZX08010003-001-0151763900元,2019-2020;

  4. 浙江省高层次人才特殊支持计划青年拔尖人才,项目号:ZJWR0308019,80万元,2020-2023;

  5. 国家高层次人才特殊支持计划青年拔尖人才(中组部),190万元,2022-2025或2022-2027;

  6. 农科英才领军人才B类,350万元,2022-2027;

  7. 国家自然科学基金面上基金,项目号:32272185,55万元,2023-2026。


参与项目

  1. 国家重点研发项目(基因编辑技术及衍生工具的挖掘优化与应用研究),项目号:2022YFC3400200,99万元,2022-2027。


发表论文情况

  1. Jinpeng Zou, Xiangbing Meng†, Zhengyuan Hong, Yuchun Rao, Kejian Wang, Jiayang Li, Hong Yu*, Chun Wang*. Cas9-PE: a robust multiplex gene editing tool for simultaneous precise editing and site-specific random mutation in rice, Trends in Biotechnology, 2024,DOI:10.1016/j.tibtech.2024.10.012

  2. Like Chen, Kejian Wang and Chun Wang*.Meiosis in plants: From understanding to manipulation, New Crops, 2024, DOI:10.1016/j.ncrops.2024.100055

  3. Jinpeng Zou, Yuhong Li, Kejian Wang, Chun Wang* & Renying Zhuo*. Prime editing enables precise genome modification of a Populus hybrid, aBIOTECH, 2024, DOI:10.1007/s42994-024-00177-1

  4. Yong Huang, Yuqing Liang, Yingying Xie, Yuchun Rao, Jie Xiong, Chaolei Liu, Chun Wang, Xingchun Wang*, Qian Qian*and Kejian Wang*. Efficient haploid induction via egg cell expression of dandelion PARTHENOGENESIS in foxtail millet (Setaria italica), Plant Biotechnology Journal, 2024,22(7):1797-1799, DOI:10.1111/pbi.14302

  5. 梁雨晴, 申慧敏, 胡风越, 王春, 王克剑, 黄勇*, 杨致荣*. 利用CRISPR/Cas9编辑SiOSD1基因创制多倍体谷子, 科学通报, 2024,https://link.cnki.net/urlid/11.1784.N.20240508.1238.006

  6. 侯兵兵,陈俐克,鲁宏伟,刘小双,王克剑,王春,魏鹏程,邹金鹏*. 通过引入逆转录酶Tf1结合高温处理建立新型水稻引导编辑系统, 科学通报, 2024DOI:10.1360/TB-2024-0766

  7. 杨茜†,孟祥兵†,王春,刘婷婷,王克剑,余泓,饶玉春*,邹金鹏*. 利用水稻转化愈伤组织评估引导编辑效率, 科学通报, 2024, 69:1-9, DOI:10.1360/TB-2023-1306

  8. 胡风越,王健,王春,王克剑* 刘朝雷*. 水稻 DMP1-3 基因突变体的创制及其单倍体诱导能力鉴定, 中国水稻科学, 2024, link.cnki.net/urlid/33.1146.S.20240206.0935.002

  9. Chaolei Liu, Jian Wang, Hongwei Lu, Yong Huang, Huijing Yan, Huan Liang, Chun Wang*, Kejian Wang*. Engineering synthetic apomixis in different hybrid rice varieties using the Fix strategy, New Crops, 2023,1:100003, DOI:10.1016/j.ncrops.2023.11.001

  10. Chun Wang, Kejian Wang, and Yanjun Kou*. Genome editing creates disease-resistant crops without yield penalties, Trends in Plant Science, 2023, 29(2):114-116, DOI:10.1016/j.tplants.2023.10.004

  11. Liu Tingting # , Zou Jinpeng # , Yang Xi , Wang Kejian, Rao Yuchun , Wang Chun. Development and Application of Prime Editing in Plants, Rice Science, 2023, 30(6):509-523, DOI:10.1016/

  12. Chaolei Liu, Zexue He, Yan Zhang, Fengyue Hu, Mengqi Li, Qing Liu, Yong Huang, Jian Wang, Wenli Zhang*, Chun Wang* and Kejian Wang*. Synthetic apomixis enables stable transgenerational transmission of heterotic phenotypes in hybrid rice, Plant Communications, 2023, 4(2): 100470, DOI:10.1016/j.xplc.2022.100470

  13. Jinpeng Zou, Xiangbing Meng, Qing Liu, Meiqi Shang, Kejian Wang, Jiayang Li, Hong Yu & Chun Wang. Improving the efficiency of prime editing with epegRNAs and hightemperature treatment in rice, SCIENCE CHINA life sciences, 2022, 65(11):2328-2331, DOI:10.1007/s11427-022-2147-2

  14. Yuchun Rao*, Xi Yang, Chenyang Pan, Chun Wang and Kejian Wang*. Advance of Clustered Regularly Interspaced Short Palindromic Repeats-Cas9 System and Its Application in Crop Improvement, Frontiers in Plant Science, 2022, 13, DOI:10.3389/fpls.2022.839001

  15. 李慧颖,刘庆,郭旻,王克剑,严长杰,王春. Hi-Meth:特定位点 DNA 甲基化高通量检测平台, 生物工程学报, 2022, 38(8): 3049-3061, DOI:10.13345/j.cjb.220190

  16. Xuemei Dai#, Xianfeng Yang#*, Chun Wang#, Yueting Fan, Shichao Xin, Nay Chi Ko Ko, Yuwei Hua, Kejian Wang, Huasun Huang. CRISPR/Cas9-mediated genome editing in Hevea brasiliensis, Industrial Grops and Products, 2021, 167: 113543, DOI:10.1016/j.indcrop.2021.113418

  17. Jun Ren#, Xiangbing Meng#, Fengyue Hu#, Qing Liu, Yuexuan Cao, Huiying Li,Changjie Yan, Jiayang Li, Kejian Wang, Hong Yu* & Chun Wang*. Expanding the scope of genome editing with SpG and SpRY, Science China Life sciences, 2021, 64(10):1784-1787, DOI:10.1007/s11427-020-1883-5

  18. Qing Liu, Xiaozhen Jiao, Xiangbing Meng, Chun Wang, Cao Xu, Zhixi Tian, Chuanxiao Xie, Genying Li, Jiayang Li, Hong Yu & Kejian Wang. FED: a web tool for foreign element detection of genome-edited organism, Science China Life sciences, 2021, 64(1):167-170, DOI:10.1007/s11427-020-1731-9

  19. Xu Y#., Meng X#., Wang J, Qin B, Wang K., Li J, Wang C*, Yu H*. ScCas9 recognizes NNG protospacer adjacent motif in genome editing of rice, Science China Life Sciences, 2020,  63(3):450-452, DOI:10.1007/s11427-019-1630-2

  20. 张燕,王春,王克剑. 人工创制植物无融合生殖的研究进展, 科学通报, 2020, 65(27): 2998-3007, DOI:10.1360/TB-2020-0209

  21. Qing Liu, Chun Wang, Xiaozhen Jiao, Huawei Zhang, Lili Song, Yanxin Li, Caixia Gao & Kejian Wang*. Hi-TOM: a platform for high-throughput tracking of mutations induced by CRISPR/Cas systems, Science China Life Sciences, 2019, 62(1):1-7, DOI:10.1007/s11427-018-9402-9

  22. Wang J#., Wang C#., Wang K*. Generation of marker-free transgenic rice using CRISPR/Cas9 system controlled by floral specific promoters, Journal of Genetics and Genomics, 2019, 46(1): 61-64, DOI:10.1016/j.jgg.2018.11.005

  23. Wang C., Wang K*. Rapid Screening of CRISPR/Cas9-Induced Mutants Using the ACT-PCR Method, Plant Genome Editing with CRISPR Systems Methods and Protocols, 2019, 1917: 27-32, DOI:10.1007/978-1-4939-8991-1_2

  24. Wang C., Liu Q., Shen Y., Hua Y., Wang J., Lin J., Wu M., Sun T., Cheng Z., Mercier R., Wang K*. Clonal seeds from hybrid rice by simultaneous genome engineering of meiosis and fertilization genes, Nature Biotechnology, 2019, 37(3):283-287, DOI:10.1038/s41587-018-0003-0

  25. Ren J#., Hu X#., Wang K., Wang C*. Development and application of CRISPR/Cas system in rice, Rice Science, 2019, 26(2):69-76, DOI:10.1016/j.rsci.2019.01.001

  26. Daoheng Hu, Yiming Yu, Chun Wang, Yanping Long, Yue Liu, Li Feng, Dongdong Lu, Bo Liu, Jinbu Jia, Rui Xia, Jiamu Du, Xuehua Zhong, Lei Gong, Kejian Wang, Jixian Zhai, Multiplex CRISPR-Cas9 editing of DNA methyltransferases in rice uncovers a class of non-CG methylation specific for GC-rich regions, The Plant Cell, 2021, koab162, https://doi.org/10.1093/plcell/koab162

  27. Chun Wang, Qing Liu, Yi Shen, Yufeng Hua, Junjie Wang, Jianrong Lin, Mingguo Wu, Tingting Sun, Zhukuan Cheng, Raphael Mercier, Kejian Wang*. Clonal seeds from hybrid rice by simultaneous genome engineering of meiosis and fertilization genes. Nature Biotechnology, 2019, 37(3):283-287.  2019年SCI影响因子:36.558

  28. Yibo Xu+, Xiangbing Meng+, Junjie Wang, Baoxiang Qin, Kejian Wang, Jiayang Li, Chun Wang*, Hong Yu*.ScCas9 recognizes NNG protospacer adjacent motif in genome editing of rice. SCIENCE CHINA-LIFE SCIENCES, 2020, 63(3):450-452. 2019年 SCI影响因子:4.611

  29. Junjie Wang+, Chun Wang+, Kejian Wang*. Generation of marker-free transgenic rice using CRISPR/Cas9 system controlled by floral specific promoters. Journal of Genetics and Genomics, 2019, 46(1):61-64.   2019年 SCI影响因子:5.065

  30. Qing Liu+, Chun Wang+, Xiaozhen Jiao, Huawei Zhang, Lili Song, Yanxin Li, Caixia Gao, Kejian Wang*. Hi-TOM:a platform for high-throughput tracking of mutations induced by CRISPR/Cas systems. SCIENCE CHINA-LIFE SCIENCES, 2019, 62(1):1-7.     2019年 SCI影响因子:4.611

  31. Jun Ren +, Xixun Hu +, Kejian Wang, Chun Wang*. Development and Application of CRISPR/Cas System in Rice. Rice Science, 2019, 26(2):69-76.  2019年 SCI影响因子:3.162

  32. 王春. 新纪元:作物育种进入"定制"时代. 前沿科学, 2019, (3):75-79.

  33. Chun Wang, Wang Kejian*. Rapid Screening of CRISPR/Cas9-Induced Mutants Using the ACT-PCR Method. Plant Genome Editing with CRISPR Systems. Methods in Molecular Biology, 2019, 1917:27-32.

  34. Zhan N., Wang C., Chen L., Yang H., Feng J., Gong X., Ren B., Wu R., Mu J., Li Y., Liu Z., Zhou Y., Peng J., Wang K., Huang X., Xiao S., Zuo J. S-Nitrosy lation targets GSNO reductase for selective autophagy during hypoxia responses in plants, Molecular Cell, 2018, 71(1):142-154, DOI:10.1016/j.molcel.2018.05.024