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Chao-Feng Huang
huangcf@cemps.ac.cn
Chinese, Japanese, English
Shanghai
University of Chinese Academy of Sciences
Life Sciences
  • 2006-10 to 2009-09 PhD: Ehime University
  • 2004-10 to 2006-09 Master's: Kagawa University
  • 2000-09 to 2003-06 Master's: South China Agricultural University
  • 1996-09 to 2000-06 Bachelor's: South China Agricultural University
  • 2020-05 to Present - Chinese Academy of Sciences, Center for Excellence in Molecular Plant Sciences - Researcher
  • 2016-12 to 2020-04 - Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences - Researcher
  • 2012-08 to 2016-11 - Nanjing Agricultural University - Professor
  • 2012-01 to 2012-07 - Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences - Associate Researcher
  • 2011-01 to 2011-12 - Purdue University - Postdoctoral Researcher
  • 2010-09 to 2010-12 - University of California, Riverside - Postdoctoral Researcher
  • 2009-10 to 2010-08 - Okayama University, Institute of Plant Science and Resources - Special Contract Assistant Professor
  • 2003-07 to 2004-06 - Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences - Research Assistant
Plant Nutrition and Stress Biology
Plant Metal Stress Biology
Epigenetics
  • H2O2 negatively regulates aluminum resistance via oxidation and degradation of the transcription factor STOP1, Wei, Xiang, Zhu, Yifang, Xie, Wenxiang, Ren, Weiwei, Zhang, Yang, Zhang, Hui, Dai, Shaojun, Huang, Chao-Feng, 2024
  • The MEKK1-MKK1/2-MPK4 cascade phosphorylates and stabilizes STOP1 to confer aluminum resistance in Arabidopsis, Zhou, Fanglin, Singh, Somesh, Zhang, Jie, Fang, Qiu, Li, Chongyang, Wang, Jiawen, Zhao, Chunzhao, Wang, Pengcheng, Huang, Chao-Feng, 2023
  • Mitigating cadmium accumulation in rice without compromising growth via modifying the regulatory region of OsNRAMP5, Zhenling Luo, ChaoLei Liu, Xiaofei Yang, Zhu, Jian-Kang, Chao-Feng Huang, 2023
  • PP2C.D phosphatase SAL1 positively regulates aluminum resistance via restriction of aluminum uptake in rice, Xie, Wenxiang, Liu, Shuo, Gao, Huiling, Wu, Jun, Liu, Dilin, Kinoshita, Toshinori, Huang, Chao-Feng, 2023
  • Calmodulin-like protein CML24 interacts with CAMTA2 and WRKY46 to regulate ALMT1-dependent Al resistance in Arabidopsis thaliana, Zhu, Xue, Wang, Peng, Bai, Zhimin, Herde, Marco, Ma, Yanqi, Li, Na, Liu, Shuo, Huang, Chao-Feng, Cui, Rongxiu, Ma, Hongyu, Zhang, Meng, Wang, Hui, Wei, Tiandi, Quan, Taiyong, Zhang, Wei, Liu, Chunguang, Zhang, Tao, Yang, ZhongBao, 2022
  • NRAMP6 and NRAMP1 cooperatively regulate root growth and manganese translocation under manganese deficiency in Arabidopsis, Li, Lun, Zhu, Zongzheng, Liao, Yonghui, Yang, Changhong, Fan, Ni, Zhang, Jie, Yamaji, Naoki, Dirick, Leon, Ma, Jian Feng, Curie, Catherine, Huang, Chao-Feng, 2022
  • The THO/TREX Complex Component RAE2/TEX1 Is Involved in the Regulation of Aluminum Resistance and Low Phosphate Response in Arabidopsis, Zhu, YiFang, Guo, Jinliang, Zhang, Yang, Huang, Chao-Feng, 2021
  • The SUMO E3 licase SIZ1 partially regulates STOP1 SUMOylation and stability in Arabidopsis thaliana, Fang, Qiu, Zhang, Jie, Yang, DongLei, Huang, Chao-Feng, 2021
  • Golgi-localised manganese transporter PML3 regulates Arabidopsis growth through modulating Golgi glycosylation and cell wall biosynthesis, Yang, ChangHong, Wang, Chao, Singh, Somesh, Fan, Ni, Liu, Shuo, Zhao, Li, Cao, Hengliang, Xie, Wenxiang, Yang, Chengwei, Huang, Chao-Feng, 2021
  • Degradation of STOP1 mediated by the F-box proteins RAH1 and RAE1 balances aluminum resistance and plant growth in Arabidopsis thaliana, Fang, Qiu, Zhou, Fanglin, Zhang, Yang, Singh, Somesh, Huang, Chao-Feng, 2021
  • Mutation of HPR1 encoding a component of the THO/TREX complex reduces STOP1 accumulation and aluminium resistance in Arabidopsis thaliana, Guo, Jinliang, Zhang, Yang, Gao, Huiling, Li, Shengben, Wang, ZhenYu, Huang, Chao-Feng, 2020
  • Dysfunction of the 4-coumarate:coenzyme A ligase 4CL4 impacts aluminum resistance and lignin accumulation in rice, Liu, Shuo, Zhao, Li, Liao, Yonghui, Luo, Zhenling, Wang, Hua, Wang, Peng, Zhao, Han, Xia, Jixing, Huang, Chao-Feng, 2020
  • Regulation of Aluminum Resistance in Arabidopsis Involves the SUMOylation of the Zinc Finger Transcription Factor STOP1, Fang, Qiu, Zhang, Jie, Zhang, Yang, Fan, Ni, van den Burg, Harrold A, Huang, Chao-Feng, 2020
  • Natural variation in the promoter of OsHMA3 contributes to differential grain cadmium accumulation between Indica and Japonica rice, Liu, ChaoLei, Gao, ZhenYu, Shang, LianGuang, Yang, ChangHong, Ruan, BanPu, Zeng, DaLi, Guo, LongBiao, Zhao, FangJie, Huang, Chao-Feng, Qian, Qian, 2020
  • F-box protein RAE1 regulates the stability of the aluminum-resistance transcription factor STOP1 in Arabidopsis, Zhang, Yang, Zhang, Jie, Guo, Jinliang, Zhou, Fanglin, Singh, Somesh, Xu, Xuan, Xie, Qi, Yang, Zhongbao, Huang, Chao-Feng, 2019
  • Reduction in cadmium accumulation in japonica rice grains by CRISPR/Cas9-mediated editing of OsNRAMP5, Yang Changhong, Zhang Yang, Huang Chao-Feng, 2019
  • The Cell Cycle Checkpoint Regulator ATR Is Required for Internal Aluminum Toxicity-Mediated Root Growth Inhibition in Arabidopsis, Zhang, Yang, Guo, Jinliang, Chen, Mo, Li, Lun, Wang, Lihua, Huang, Chao-Feng, 2018
  • DNA demethylase ROS1 negatively regulates the imprinting of DOGL4 and seed dormancy in Arabidopsis thaliana, Zhu, Haifeng, Xie, Wenxiang, Xu, Dachao, Miki, Daisuke, Tang, Kai, Huang, Chao-Feng, Zhu, JianKang, 2018
  • Corrigendum: The Cell Cycle Checkpoint Regulator ATR Is Required for Internal Aluminum Toxicity-Mediated Root Growth Inhibition in Arabidopsis, Yang Zhang, Jinliang Guo, Mo Chen, Lun Li, Lihua Wang, ChaoFeng Huang, 2018
  • Constitutive activation of calcium-dependent protein kinase 3 confers a drought tolerance by inhibiting inward K+ channel KAT1 and stomatal opening in Arabidopsis, Qi, GuoNing, Yao, FenYong, Ren, HuiMin, Sun, ShuJing, Hussain, Jamshaid, Huang, ChaoFeng, Wang, YongFei, 2018
  • NRAMP2, a trans-Golgi network-localized manganese transporter, is required for Arabidopsis root growth under manganese deficiency, Gao, Huiling, Xie, Wenxiang, Yang, Changhong, Xu, Jingyi, Li, Jingjun, Wang, Hua, Chen, Xi, Huang, Chao-Feng, 2018
  • Isolation and Characterization of an Aluminum-resistant Mutant in Rice, Liu, Shuo, Gao, Huiling, Wu, Xiaoyan, Fang, Qiu, Chen, Lan, Zhao, FangJie, Huang, Chao-Feng, 2016
  • Aluminium alleviates fluoride toxicity in tea (Camellia sinensis), Yang, Ying, Liu, Yu, Huang, ChaoFeng, de Silva, Jacquie, Zhao, FangJie, 2016
  • A loss-of-function allele of OsHMA3 associated with high cadmium accumulation in shoots and grain of Japonica rice cultivars, Yan, Jiali, Wang, Peitong, Wang, Peng, Yang, Meng, Lian, Xingming, Tang, Zhong, Huang, ChaoFeng, Salt, David E, Zhao, Fang Jie, 2016
  • Genome-wide transcriptomic and phylogenetic analyses reveal distinct aluminum-tolerance mechanisms in the aluminum-accumulating species buckwheat (Fagopyrum tataricum), Zhu, Haifeng, Wang, Hua, Zhu, Yifang, Zou, Jianwen, Zhao, FangJie, Huang, ChaoFeng, 2015
  • RNA Splicing Factors and RNA-Directed DNA Methylation, Chao-Feng Huang, JianKang Zhu, 2014
  • OsNRAMP5 contributes to manganese translocation and distribution in rice shoots, Yang, Meng, Zhang, Yuanyuan, Zhang, Lejing, Hu, Jintao, Zhang, Xing, Lu, Kai, Dong, Huaxia, Wang, Dujun, Zhao, FangJie, Huang, ChaoFeng, Lian, Xingming, 2014
  • The PRP6-like
Plant Nutrition Stress Biology Metal Stress Epigenetics Aluminum Resistance Manganese Transport Cadmium Accumulation Gene Regulation Signal Transduction Crop Improvement

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