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Gang Liang
lianggang@xtbg.ac.cn
Chinese, English
Yunnan
University of Chinese Academy of Sciences
Life Sciences
  • 2005-09 to 2010-07 PhD: Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences
  • 2001-09 to 2005-07 Bachelor: Biological Sciences Base Class, Yunnan University
  • 2018-01 to Present - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Researcher
  • 2016-12 to Present - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Research Group Leader
  • 2013-01 to 2017-12 - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Associate Researcher
  • 2010-10 to 2012-12 - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Assistant Researcher
  • MicroRNA regulation of plant nutrient metabolism and morphogenesis molecular mechanism (2016): First Prize, Provincial Level
Molecular mechanisms of plant mineral nutrient absorption and utilization
Biofortification techniques to address hidden hunger
Heavy metal pollution and its impact on crop yield and human health
  • bHLH11 inhibits bHLH IVc proteins by recruiting the TOPLESS/TOPLESS-RELATED corepressors, Li, Yang, Lei, Rihua, Pu, Mengna, Cai, Yuerong, Lu, Chengkai, Li, Zhifang, Liang, Gang, 2022
  • Iron deficiency-induced transcription factors bHLH38/100/101 negatively modulate flowering time in Arabidopsis thaliana, Chen, Wanqin, Zhao, Lirong, Liu, Lei, Li, Xia, Li, Yang, Liang, Gang, Wang, Houping, Yu, Diqiu, 2021
  • IRON MAN interacts with BRUTUS to maintain iron homeostasis in Arabidopsis, Yang Li, Cheng Kai Lu, Chen Yang Li, Ri Hua Lei, Meng Na Pu, Jun Hui Zhao, Feng Peng, Hua Qian Ping, Dan Wang, Gang Liang, 2021
  • FIT and bHLH Ib transcription factors modulate iron and copper crosstalk in Arabidopsis, Cai, Yuerong, Li, Yang, Liang, Gang, 2021
  • bHLH121 Functions as a Direct Link that Facilitates the Activation of FIT by bHLH IVc Transcription Factors for Maintaining Fe Homeostasis in Arabidopsis, Lei, Rihua, Li, Yang, Cai, Yuerong, Li, Chenyang, Pu, Mengna, Lu, Chengkai, Yang, Yujie, Liang, Gang, 2020
  • Author Correction: Uncovering miRNAs involved in crosstalk between nutrient deficiencies in Arabidopsis, Gang Liang, Qin Ai, Diqiu Yu, 2020
  • Oryza sativa FER-LIKE FE DEFICIENCY-INDUCED TRANSCRIPTION FACTOR (OsFIT/OsbHLH156) interacts with OsIRO2 to regulate iron homeostasis, Liang Gang, Zhang Huimin, Li Yang, Pu Mengna, Yang Yujie, Li Chenyang, Lu Chengkai, Xu Peng, Yu Diqiu, 2020
  • Oryza sativa POSITIVE REGULATOR OF IRON DEFICIENCY RESPONSE 2 (OsPRI2) and OsPRI3 are involved in the maintenance of Fe homeostasis, Zhang, Huimin, Li, Yang, Pu, Mengna, Xu, Peng, Liang, Gang, Yu, Diqiu, 2020
  • Aminocyclopropane-1-carboxylic acid is a key regulator of guard mother cell terminal division in Arabidopsis thaliana, Yin, Jiao, Zhang, Xiaoqian, Zhang, Gensong, Wen, Yuanyuan, Liang, Gang, Chen, Xiaolan, 2019
  • Low-temperature-induced changes in the transcriptome reveal a major role of CgSVP genes in regulating flowering of Cymbidium goeringii, Yang, Fengxi, Zhu, Genfa, Wei, Yonglu, Gao, Jie, Liang, Gang, Peng, Lingyuan, Lu, Chuqiao, Jin, Jianpeng, 2019
  • bHLHlo4 confers tolerance to cadmium stress in Arabidopsis thaliana, Xiani Yao, Yuerong Cai, Diqiu Yu, Gang Liang, 2018
  • Aminocyclopropane-1-Aarboxylic Acid (ACC) is a key regulator of Guard Mother Cell (GMC) Terminal Division in Arabidopsis thaliana, Liang Gang, 2018
  • bHLH104 confers tolerance to cadmium stress in Arabidopsis thaliana, Yao, Xiani, Cai, Yuerong, Yu, Diqiu, Liang, Gang, 2018
  • bHLH104 confers tolerance to cadmium stress in Arabidopsis thaliana, Yao, Xiani, Cai, Yuerong, Yu, Diqiu, Liang, Gang, 2018
  • Two DELLA-interacting proteins bHLH48 and bHLH60 regulate flowering under long-day conditions in Arabidopsis thaliana, Li, Yang, Wang, Houping, Li, Xiaoli, Liang, Gang, Yu, Diqiu, 2017
  • bHLH transcription factor bHLH115 regulates iron homeostasis in Arabidopsis thaliana, Liang, Gang, Zhang, Huimin, Li, Xiaoli, Ai, Qin, Yu, Diqiu, 2017
  • Fe-deficiency-induced expression of bHLH104 enhances Fe-deficiency tolerance of Arabidopsis thaliana, Wang, Ce, Yao, Xiani, Yu, Diqiu, Liang, Gang, 2017
  • OsSAPK2 Confers Abscisic Acid Sensitivity and Tolerance to Drought Stress in Rice, Lou, Dengji, Wang, Houping, Liang, Gang, Yu, Diqiu, 2017
  • Two DELLA-interacting proteins bHLH48 and bHLH60 regulate lowering under long-day conditions in Arabidopsis thaliana, Liang Gang, 2017
  • POSITIVE REGULATOR OF IRON HOMEOSTASIS1, OsPRI1, Facilitates Iron Homeostasis, Zhang, Huimin, Li, Yang, Yao, Xiani, Liang, Gang, Yu, Diqiu, 2017
  • Fe-deficiency-induced expression of bHLH104 enhances Fe-deficiency tolerance of Arabidopsis thaliana, Wang Ce, Yao Xiani, Yu Diqiu, Liang Gang, 2017
  • POSITIVE REGULATOR OF IRON HOMEOSTASIS 1, OsPRI1, facilitates iron homeostasis in rice., Liang Gang, 2017
  • Control of sulfate concentration by miR395-targeted APS genes in Arabidopsis thaliana, Qin Ai, Gang Liang, Huimin Zhang, Diqiu Yu, 2016
  • Two bHLH Transcription Factors, bHLH34 and bHLH104, Regulate Iron Homeostasis in Arabidopsis thaliana, Li, Xiaoli, Zhang, Huimin, Ai, Qin, Liang, Gang, Yu, Diqiu, 2016
  • Selection of highly efficient sgRNAs for CRISPR/Cas9-based plant genome editing, Liang, Gang, Zhang, Huimin, Lou, Dengji, Yu, Diqiu, 2016
  • Selection of highly eicient sgRNAs for CRISPR/Cas9-based plant genome editing, Liang Gang, 2016
  • Two bHLH Transcription Factors, bHLH34 and bHLH104, Regulate Iron Homeostasis in Arabidopsis thaliana 1, Xiaoli Li, Huimin Zhang, Qin Ai, Gang Liang, Diqiu Yu, 2016
  • Uncovering miRNAs involved in crosstalk between nutrient deficiencies in Arabidopsis, Liang, Gang, Ai, Qin, Yu, Diqiu, 2015
  • Two Young MicroRNAs Originating from Target Duplication Mediate Nitrogen Starvation Adaptation via Regulation of Glucosinolate Synthesis in Arabidopsis thaliana, He, Hua, Liang, Gang, Li, Yang, Wang, Fang, Yu, Diqiu, 2014
  • MYB82 functions in regulation of trichome development in Arabidopsis, Liang, Gang, He, Hua, Li, Yang, Ai, Qin, Yu, Diqiu, 2014
  • Molecular mechanism of miR396 mediating pistil development in Arabidopsis thaliana., Yu Diqiu, 2014
  • Arabidopsis WRKY57 Functions as a Node of Convergence for Jasmonic Acid- and Auxin-Mediated Signaling in Jasmonic Acid-Induced Leaf Senescence, Jiang, Yanjuan, Liang, Gang, Yang, Shizhuo, Yu, Diqiu, 2014
  • Molecular Mechanism of microRNA396 Mediating Pistil Development in Arabidopsis, Liang, Gang, He, Hua, Li, Yang, Wang, Fang, Yu, Diqiu, 2014
  • Identification of miRNAs and miRNA-mediated regulatory pathways in Carica papaya, Liang, Gang, Li, Yang, He, Hua, Wang, Fang, Yu, Diqiu, 2013
  • Activated Expression of WRKY57 Confers Drought Tolerance in Arabidopsis, Jiang, Yanjuan, Liang, Gang, Yu, Diqiu, 2012
  • Identification of Nitrogen Starvation-Responsive MicroRNAs in Arabidopsis thaliana, Liang, Gang, He, Hua, Yu, Diqiu, 2012
  • A new strategy for construction of artificial miRNA vectors in Arabidopsis, Liang, Gang, He, Hua, Li, Yang, Yu, Diqiu, 2012
  • MicroRNA395 mediates regulation of sulfate accumulation and allocation in Arabidopsis thaliana, Liang, Gang, Yang, Fengxi, Yu, Diqiu, 2010
Plant Nutrition Mineral Elements Molecular Mechanisms Biofortification Hidden Hunger Heavy Metals Crop Yield Human Health Soil Ph Gene Editing

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