中国细胞生物学学会
2022年全国学术大会·厦门

中国细胞生物学学会 
2022年全国学术大会 · 厦门

4月11-15日 
福建厦门国际会议中心

4月11-15日
福建厦门国际会议中心

 大会报告人

种康  CHONG Kang

中国科学院院士,研究员
Member of the Chinese Academy of Sciences (CAS), Member of the International Eurasian Academy of Sciences (IEAS), Professor

中国科学院植物研究所
Shanghai Institute of Organic Chemistry

报告题目:蛋白糖基化调控春化开花表观遗传机制

种康,中国科学院院士、国际欧亚科学院院士,中国科学院植物研究所研究员,中国科学院大学教授,博士生导师。1984年,兰州大学获学士学位;1988年,兰州大学获硕士学位;1993年,兰州大学获博士学位。1993–1997年,兰州大学、中科院植物研究所和日本东北大学做博士后。曾在兰州大学任助教、讲师; 曾与香港科技大学生物系、美国普渡大学和Dow Agrosciences LLC作合作研究。1997到植物所工作,先后任植物所发育中心主任、所长助理、副所长、研究所党委书记、学术委员会主任。2017年入选中国科学院院士,2021年入选国际欧亚科学院院士。 现任中国植物学会理事长、中国植物生理学会理事。担任《Journal of Integrative Plant Biology》主编,同时承担《Journal of Biological Chemistry》、 《Molecular Genetics and Genomics》、 《Journal of Genetics and Genomics》编委。 主要研究方向是植物感知低温信号机制、小麦春化作用机制以及器官发生的激素互作网络。获得国家自然科学基金委创新群体基金和基础科学研究中心项目等资助,主持科技部973A类项目课题、863重点项目以及中国科学院战略性先导专项等项目。在Cell、Annual Review of Plant Biology、Nature Plants、Nature Communications、EMBO Journal、PNAS、Genome Biology和The Plant Cell等学术期刊发表研究论文80余篇。

CHONG Kang, the Academician of the Chinese Academy of Sciences (CAS), the Academician of the International Eurasian Academy of Sciences (IEAS), Professor in Institute of Botany (IOB), Professor in University of CAS, Ph. D. supervisor. He received his Bachelor degree in 1984, Master degree in 1988, and Doctoral degree in 1993 from Lanzhou University, respectively. From 1993 to 1997, he pursued postdoctoral training in Lanzhou University, IOB and Tohoku University in Japan. He worked as research assistant and lecturer in Lanzhou University, and collaborated with Dow Agrosciences LLC, Pudure University and Hong Kong University of Science & Technology in molecular biology. In 1997, Dr. Chong became a professor in the Institute of Botany, then he became the chairman of Development Center, the director assistant, vice director and party secretary of IOB, and the director of Academic Committee of IOB. He was elected as the academician of Chinese Academy of Sciences in 2017, the academician of the International Eurasian Academy of Sciences in 2021.

Prof. Chong is the president of the Botanical Society of China and the director of the Chinese Society of Plant Physiology, the chief editor of Journal of Integrated Plant Biology, as well as the editorial board member for Journal of Biological Chemistry, Molecular Genetics and Genomics, Journal of Genetics and Genomics.

Prof. Chong's current research activities are mainly in three areas: sensing chilling signal in rice, development response to vernalization signal in wheat, and hormones (BR and GA) network in organogenesis. He has gained the support of the Innovation Group Project of the National Natural Science Foundation of China (NSFC) and the Project of Basic Science Research Center, and presided over 973A Projects of the Ministry of Science and Technology, 863 Key Projects and CAS Strategic Priority Research Programs. His lab has published more than 80 papers on peer-reviewed journals, such as Cell, Annual Review of Plant Biology, Nature Plants, Nature Communications, EMBO Journal, PNAS, Genome Biology and The Plant Cell etc.

代表性论文 / Representative papers::
  1. Wei Luo, Qing Huan, Yunyuan Xu, Wenfeng Qian, Kang Chong* and Jingyu Zhang*. Integrated global analysis reveals vitamin E-vitamin K1 sub-network,downstream of COLD1, underlying rice chilling tolerance divergence. Cell Reports, 2021, Online.
  2. Shujuan Xu, Qi Dong, Min Deng, Dexing Lin, Jun Xiao, Peilei Cheng, LijingXing,YudaNiu, CaixiaGao, Wenhao Zhang, Yunyuan Xu and Kang Chong*. A vernalization-induced long non-coding RNA VAS together with transcription factor TaRF2b activates TaVRN1 for flowering in hexaploid wheat. Molecular Plant. 2021, 27 May, doi: 10.1016/j.molp.2021.05.026.
  3. Zhitao Li, Bo Wang, Zeyong Zhang, Wei Luo, Yongyan Tang, Yuda Niu, Kang Chong and Yunyuan Xu*. OsGRF6 interacts with SLR1 to regulate OsGA2ox1 expression for coordinating chilling tolerance and growth in rice. Journal of Plant Physiology. 2021, 8 Mar, doi: 10.1016/j.jplph.2021.153406.
  4. Changxuan Xia, Yanshan Gong, Kang Chong, Yunyuan Xu*. Phosphatase OsPP2C27 directly dephosphorylates OsMAPK3 and OsbHLH002 to negatively regulate cold tolerance in rice. Plant Cell and Environment. 2021, 44(2):491-505.
  5. Yongyan Tang, ChunchunGao, Ying Gao, Ying Yang, Boyang Shi, Jiali Yu, Cong Lyu, BaofaSun, Hailin Wang, Yunyuan Xu, Yungui Yang*, Kang Chong*. OsNSUN2-mediated 5-methylcytidine mRNA modification enhances rice adaptation to high-temperature. Developmental Cell. 2020, 53(3):272-286.
  6. Qiang Ge*, Yuanyuan Zhang*, Yunyuan Xu, Mingyi Bai, Wei Luo, Bo Wang, Yuda Niu, Yuan Zhao, Shanshan Li, Yuxiang Weng, Zhiyong Wang, Qian Qian, Kang Chong*. Cyclophilin OsCYP20-2 with a novel variant integrates defense and cell elongation for chilling response in rice. New Phytologist. 2020, 225:2453–2467.
  7. Qiang Ge, Yongyan Tang, Wei Luo, Jingyu Zhang, Kang Chong,Yunyuan Xu*. A cyclophilin OsCYP20–2 interacts withOsSYF2 to regulate grain length by pre-mRNAsplicing. Rice. 2020, 13(1):64-74.

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