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Shunping Yan
spyan@mail.hzau.edu.cn
Chinese, English
Hubei
Huazhong Agricultural University
Life Sciences
  • 2001-2006 Doctorate: Chinese Academy of Sciences, Shanghai Institute of Plant Physiology and Ecology
  • Conducted systematic research on plant DNA damage response mechanisms
  • 2014-present - Huazhong Agricultural University - Professor
  • 2011-2014 - Duke University, USA - Research Scientist
  • 2006-2011 - Duke University, USA - Research Assistant
  • 2023: Ministry of Education Key Talent Project (Special Appointment)
  • 2022: Outstanding Party Worker, College of Life Science and Technology, Huazhong Agricultural University
  • 2022: First Prize, Second 'Smart Tree Cup' Course Ideological and Political Demonstration Case Teaching Competition
  • 2021: Ministry of Education Course Ideological and Political Teaching Master
  • 2021: Outstanding Class Teacher, College of Life Science and Technology, Huazhong Agricultural University
  • 2020: Second Prize, Teaching Quality Award, Huazhong Agricultural University
  • 2020: Outstanding Bachelor's Thesis Supervisor, Huazhong Agricultural University
  • 2019: Graduate Student Mentor Teaching and Educating Award, Huazhong Agricultural University
  • 2019: Outstanding Instructor, Summer Social Practice Activities, Huazhong Agricultural University
  • 2015: National Overseas High-Level Talent (Youth)
  • 2015: Hubei Province Chutian Scholar
  • 2006: Chinese Academy of Sciences Three Good Student Model
  • 2006: Outstanding Graduate, Chinese Academy of Sciences
  • 2006: Chinese Academy of Sciences Di'ao Scholarship
  • 2005: Shanghai Meiji Dairy Life Science Award
  • 2005: Shanghai-Unilever Research and Development Fund Scholarship
  • 2004: Chinese Academy of Sciences Liu Yongling Scholarship
  • 2001: Chinese Academy of Sciences Shanghai Life Science Research Institute President's Scholarship
  • 2001: China University Students Cross-Century Development Fund Heng'an Self-Strengthening Scholarship
  • 2001: Zhejiang Province Outstanding Graduate
Plant DNA damage response mechanisms
Plant disease resistance mechanisms
Plant hormone signal transduction
  • The tRNA thiolation-mediated translational control is essential for plant immunity., Zheng XA, Chen HC, Deng ZP, Wu YJ, Zhong LL, Wu C, Yu XD, Chen QS, Yan SP, 2024
  • The SMC5/6 complex recruits the PAF1 complex to facilitate DNA double-strand break repair in Arabidopsis., Li CL, Guo YY, Wang LL, Yan SP, 2023
  • Protein kinase ATR inhibits E3 ubiquitin ligase CRL4PRL1 to stabilize ribonucleotide reductase in response to replication stress., Bao WY, Zhang WJ, Huang YC, Zhao Y, Wu C, Duan LL, Wang LL, Yan SP, 2023
  • The multi-BRCT domain protein DDRM2 promotes the recruitment of RAD51 to DNA damage sites to facilitate homologous recombination., Yu C, Hou LH, Huang YC, Cui XY, Xu SJ, Wang LL, Yan SP, 2023
  • The ATR-WEE1 kinase module promotes SUPPRESSOR OF GAMMA RESPONSE 1 translation to activate replication stress responses., Chen HC, Pan T, Zheng XA, Huang YC, Wu C, Yang TB, Gao S, Wang LL, Yan SP, 2023
  • APC/CCDC20 targets SCFFBL17 to activate replication stress responses in Arabidopsis., Pan T, Gao S, Cui XY, Wang LL, Yan SP, 2023
  • A plant-specific module for homologous recombination repair., Wang XP, Wang LL, Huang YC, Deng ZP, Li CL, Zhang J, Zheng MX, Yan SP, 2022
  • Salicylic acid inhibits gibberellin signaling through receptor interactions., Yu XD, Cui XY, Wu C, Shi SX, Yan SP, 2022
  • The shikimate pathway regulates programmed cell death., Lu XR, Shi XX, Wu C, Zheng XA, Yang CK, Luo J, Yan SP, 2022
  • A novel WEE1 pathway for replication stress responses., Pan T, Qin Q, Nong CB, Gao S, Wang LL, Cai BC, Zhang M, Wu C, Chen HC, Li T, Xiong D, Li GL, Wang S, Yan SP, 2021
  • The ATR-WEE1 kinase module inhibits the MAC complex to regulate replication stress response., Wang LL, Zhan L, Zhao Y, Huang YC, Wu C, Pan T, Qin Q, Xu YR, Deng ZP, Li J, Hu HH, Xue SW, Yan SP, 2021
  • RAD51 supports DMC1 by inhibiting the SMC5/6 complex during meiosis., Chen HC, He CP, Wang CY, Wang XP, Ruan FY, Yan JJ, Yin P, Wang YX, Yan SP, 2021
  • Salicylic acid and ethylene coordinately promote leaf senescence., Yu XD, Xu, YR, Yan SP, 2021
  • A Transcription Factor Regulates Gene Expression in Chloroplasts., Xin KX, Pan T, Gao S, Yan SP, 2021
  • Negative regulator of E2F transcription factors links cell cycle checkpoint and DNA damage repair., Wang LL, Chen HC, Wang CY, Hu ZJ, Yan SP, 2018
  • NPR1-dependent salicylic acid signaling inhibits Agrobacterium-mediated transient expression in Arabidopsis., Zhu WL, Hu XT, Wang CY, Yan SP, 2017
  • Perception of the plant immune signal salicylic acid., Yan SP, Dong XN, 2014
  • Salicylic acid activates DNA damage responses to potentiate plant immunity., Yan SP, Wang W, Marqués J, Mohan R, Saleh A, Durrant WE, Song JQ, Dong XN, 2013
  • NPR3 and NPR4 are receptors for the immune signal salicylic acid in plants., Fu ZQ, Yan SP, Saleh A, Wang W, Ruble J, Oka N, Mohan R, Spoel S, Tada Y, Zheng N, Dong XN, 2012
  • Comparative proteomic analysis provides new insights into chilling stress responses in rice., Yan SP, Zhang QY, Tang ZC, Su WA, Sun WN, 2006
  • Proteomic analysis of salt stress-responsive proteins in rice root., Yan SP, Tang ZC, Su WA, Sun WN, 2005
Dna Repair Cell Cycle Plant Immunity Hormone Signaling Arabidopsis Genomic Stability Stress Response Protein Kinase Homologous Recombination Translational Control

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