E-mail: qincheng@hznu.edu.cn
地址: 浙江省杭州市余杭区仓前街道余杭塘路2318号
杭州师范大学慎园16号楼406室,311121
研究方向:植物开花启始的分子调控机制
入选杭州市”131”中青年人才培养计划第二层次、“浙江省高校领军人才培养计划”高层次拔尖人才
个人简历
1999-2003年,南京师范大学生命科学学院生物科学(国家理科基地),学士学位
2003-2008年,浙江大学生命科学学院生物化学与分子生物学,博士学位
2009-2011年,浙江大学生命科学学院博士后
2015-2016年,新加坡国立大学访问学者
2011-至今,杭州师范大学生命与环境科学学院教师
科研项目
1. 国家自然科学基金面上项目(2020.01-2023.12)(主持) 58万 “拟南芥FTBP1基因调控开花启始的分子机制研究” (31970328)
2. 高层次留学回国人员(团队)在杭创业创新项目(2018.01-2020.01)(主持)10万 “拟南芥FBP基因调控植物开花启始的分子机制研究”
3. 国家自然科学基金(2018.01-2021.12)(主持) 60万 “拟南芥FBP基因调控植物开花启始的分子机制研究” (31770344)
4. 国家自然科学基金(2016.01-2018.12)(主持)20万 “拟南芥FT调控开花的分子机制研究” (31500251)
5. 校级优青培育项目 (2017.07-2018.06)(主持)5万 “拟南芥FT调控开花启始的机制研究”(PD02010002023)
6. 浙江省自然科学基金(2013.01-2015.12)(主持)5万 “FT蛋白信号传导调控植物开花的机制研究” (LQ13C060003)
7. 中国博士后科学基金特别资助(2010.01-2011.12)(主持)10万 “拟南芥铵毒害的分子机制研究” (201003729)
8. 中国博士后科学基金面上资助(2009.01-2010.12)(主持)3万 “拟南芥铵毒害的生理和分子机制研究” (20090451463)
9. 浙江省教育厅科研项目(2009.01-2011.12)(主持)1万 “拟南芥铵毒害生理和分子机制的相关研究” (Y200906250)
10. 国家重点研发计划 (2018.04-2021.03)(参加) 64万 “中欧果树苗木无病毒化合作研究”(2017YFE0110900)
11. 转基因生物新品种培育重大专项子课题 (2016.01-2020.12)(参加)154.94万 “基于植物病毒载体的新型、高效、快速的基因修饰技术”(2016ZX08009001-004)
12. 转基因生物新品种培育重大专项子课题(2011.01-2015.12)(参加)2449万 “水稻氮、磷高效利用转基因杂交稻新品种培育” (2011ZX08001-005)
13. 国家自然科学基金面上项目(2014.01-2017.12)(参加)79万 “一种病毒诱导的RNA沉默在植物细胞间转运机制的研究” (31370180)
14. 国家自然基金面上项目(2010.01-2012.12)(参加)35万 “低磷调控水稻根构型的机制研究” (30971851)
15. 国家自然基金面上项目(2008.01-2010.12)(参加)35万 “生长素调控水稻根系发育分子机制” (30770213)
16. 国家自然基金面上项目(2007.01-2009.12)(参加)35万 “LRD-1在CTK调控侧根原基起始中的功能研究” (30600046)
17. 国家自然基金面上项目(2006.01-2008.12)(参加)35万 “水稻磷代谢网络的预测重建及其生物学的研究” (30500106)
18. 浙江省自然科学基金(2014.01-2016.12)(参加)9.5万 “RNA非编码序列调控PVX抗RNA沉默的机制研究” (LY14C010005)
19. 浙江省自然科学基金(2013.01-2015.12)(参加)5万 “Le-miR156/7调控番茄果实成熟关键基因LeSPL-CNR的分子机制研究” (LQ13C020004)
主要研究论文
1. Yuan C, Hu Y, Liu Q, Xu J, Zhou W, Yu H, Shen L*, Qin C* (2023). MED8 regulates floral transition in Arabidopsis by interacting with FPA. Plant J 116: 1234-1247.
2. Xu X, Xu J, Yuan C, Chen Q, Liu Q, Wang X, and Qin C* (2022). BBX17 Interacts with CO and Negatively Regulates Flowering Time in Arabidopsis thaliana. Plant Cell Physiol 63: 401-409.
3. Yuan C, Xu JY, Chen QQ, Liu QG, Hu YK, Jin YC, and Qin C* (2021). C-terminal domain phosphatase-like 1 (CPL1) is involved in floral transition in Arabidopsis. BMC Genomics 22: 642.
4. Xu JY, Zhang YZ, Ren HJ, Yu RY, Yuan C, Hu YK, Xu RM, Wang XM, and Qin C* (2021) VDAC1 Negatively Regulates Floral Transition in Arabidopsis. Int J Mol Sci 22.
5. Xu XR, Xu JY, Yuan C, Hu YK, Liu QG, Chen QQ, Zhang PC, Shi NN, and Qin C* (2021). Characterization of genes associated with TGA7 during the floral transition. BMC Plant Biol 21: 367.
6. Yuan C#, Li H#, Qin C#, Zhang X#, Chen Q, Zhang P, Xu X, He M, Tor M, Xue D, Wang H, Jackson S, He Y, Liu Y, Shi N, Hong Y* (2020) Foxtail Mosaic Virus-induced Flowering Assays in Monocot Crops. J Exp Bot
7. Zhang X, Lai TF, Zhang PC, Zhang XLA, Yuan C, Jin ZH, Li HM, Yu ZM, Qin C, Tor M, Ma P, Cheng Q, Hong YG* (2019) Mini review: Revisiting mobile RNA silencing in plants. Plant Sci 278: 113-117
8. Chen W, Zhang X, Fan Y, Li B, Ryabov E, Shi N, Zhao M, Yu Z, Qin C, Zheng Q, Zhang P, Wang H, Jackson S, Cheng Q, Liu Y, Gallusci P, Hong Y* (2018) A Genetic Network for Systemic RNA Silencing in Plants. Plant Physiol 176: 2700-2719
9. Qin C, Chen W, Shen J, Cheng L, Akande F, Zhang K, Yuan C, Li C, Zhang P, Shi N, Cheng Q, Liu Y, Jackson S, Hong Y* (2017a) A Virus-Induced Assay for Functional Dissection and Analysis of Monocot and Dicot Flowering Time Genes. Plant Physiol 174: 875-885
10. Qin C, Li B, Fan Y, Zhang X, Yu Z, Ryabov E, Zhao M, Wang H, Shi N, Zhang P, Jackson S, Tor M, Cheng Q, Liu Y, Gallusci P, Hong Y* (2017b) Roles of Dicer-Like Proteins 2 and 4 in Intra- and Intercellular Antiviral Silencing. Plant Physiol 174: 1067-1081
11. Qin C, Cheng L, Shen J, Zhang Y, Cao H, Lu D, Shen C* (2016a) Genome-Wide Identification and Expression Analysis of the 14-3-3 Family Genes in Medicago truncatula. Front Plant Sci 7: 320
12. Qin C*, Cheng L, Zhang H, He M, Shen J, Zhang Y, Wu P (2016b) OsGatB, the Subunit of tRNA-Dependent Amidotransferase, Is Required for Primary Root Development in Rice. Front Plant Sci 7: 599
13. Chen W#, Kong J#, Qin C#, Yu S, Tan J, Chen YR, Wu C, Wang H, Shi Y, Li C, Li B, Zhang P, Wang Y, Lai T, Yu Z, Zhang X, Shi N, Osman T, Liu Y, Manning K, Jackson S, Rolin D, Zhong S, Seymour GB, Gallusci P, Hong Y (2015) Requirement of CHROMOMETHYLASE3 for somatic inheritance of the spontaneous tomato epimutation Colourless non-ripening. Sci Rep 5: 9192
14. Chen W, Kong J, Lai T, Manning K, Wu C, Wang Y, Qin C, Li B, Yu Z, Zhang X, He M, Zhang P, Gu M, Yang X, Mahammed A, Li C, Osman T, Shi N, Wang H, Jackson S, Liu Y, Gallusci P, Hong Y* (2015) Tuning LeSPL-CNR expression by SlymiR157 affects tomato fruit ripening. Sci Rep 5: 7852
15. Qin C, Li Y, Gan J, Wang W, Zhang H, Liu Y, Wu P* (2013) OsDGL1, a Homolog of an Oligosaccharyltransferase Complex Subunit, is Involved in N-Glycosylation and Root Development in Rice. Plant Cell Physiol 54: 129-137
16. Kong J, Chen W, Shen J, Qin C, Lai T, Zhang P, Wang Y, Wu C, Yang X, Hong Y* (2013) Virus-induced gene complementation in tomato. Plant Signal behav 8
17. Zhou T, Zhang H, Lai T, Qin C, Shi N, Wang H, Jin M, Zhong S, Fan Z, Liu Y, Wu Z, Jackson S, Giovannoni JJ, Rolin D, Gallusci P, Hong Y* (2012) Virus-induced gene complementation reveals a transcription factor network in modulation of tomato fruit ripening. Sci Rep 2: 836
18. Qin C, Shi N, Gu M, Zhang H, Li B, Shen J, Mohammed A, Ryabov E, Li C, Wang H, Liu Y, Osman T, Vatish M, Hong Y* (2012) Involvement of RDR6 in short-range intercellular RNA silencing in Nicotiana benthamiana. Sci Rep 2: 467
19. Yang JL, Chen WW, Chen LQ, Qin C, Jin CW, Shi YZ, Zheng SJ* (2012) The 14-3-3 protein GENERAL REGULATORY FACTOR11 (GRF11) acts downstream of nitric oxide to regulate iron acquisition in Arabidopsis thaliana. New Phytol 197: 815-824
20. Qin C, Yi KK, Wu P* (2011) Ammonium affects cell viability to inhibit root growth in Arabidopsis. J Zhejiang Univ Sci B 12: 477-484
21. Chen WW, Yang JL, Qin C, Jin CW, Mo JH, Ye T, Zheng SJ* (2010) Nitric oxide acts downstream of auxin to trigger root ferric-chelate reductase activity in response to iron deficiency in Arabidopsis. Plant Physiol 154: 810-819
22. Qin C, Qian W, Wang W, Wu Y, Yu C, Jiang X, Wang D, Wu P* (2008) GDP-mannose pyrophosphorylase is a genetic determinant of ammonium sensitivity in Arabidopsis thaliana. Proc Natl Acad Sci U S A 105: 18308-18313
专著
[1] Qin C, Zhang Q, He M, Kong J, Li B, Mohamad A, Chen W, Zhang P, Zhang X, Yu Z, Lai T, Shi N, Osman T, Hong Y (2014) Chapter 14 Virus Technology for functional genomics in plants. In Poltronieri P, Hong Y Applied Plant Genomics and Biotechnology (eds by Poltronieri P, Hong Y). Woodhead Publishing
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