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Lin Xu
xulin01@sibs.ac.cn
Chinese, English, French
Shanghai
University of Chinese Academy of Sciences
Life Sciences
  • 2005-09--2008-11 PhD: University of Strasbourg I
  • 2002-09--2005-02 Master's Degree: Shanghai Jiao Tong University
  • 1998-09--2002-06 Bachelor's Degree: Shanghai Jiao Tong University
  • 2013-12~Present - Chinese Academy of Sciences, Shanghai Institute of Plant Physiology and Ecology - Researcher
  • 2008-11~2013-11 - Chinese Academy of Sciences, Shanghai Institute of Plant Physiology and Ecology - Associate Researcher
Plant Stem Cells and Regeneration
  • Developmental trajectory of pluripotent stem cell establishment in Arabidopsis callus guided by a quiescent center-related gene network, Ning Zhai, Xuan Pan, Minhuan Zeng, Lin Xu, 2023
  • Transcriptional landscapes of de novo root regeneration from detached Arabidopsis leaves revealed by time-lapse and single-cell RNA sequencing analyses, Wu Liu, Yuyun Zhang, Xing Fang, Sorrel Tran, Ning Zhai, Zhengfei Yang, Fu Guo, Lyuqin Chen, Jie Yu, Madalene S. Ison, Teng Zhang, Lijun Sun, Hongwu Bian, Yijing Zhang, Li Yang, Lin Xu, 2022
  • Molecular Evolution of Auxin-Mediated Root Initiation in Plants, Jie Yu, Yuyun Zhang, Wu Liu, Hua Wang, Shaoting Wen, Yijing Zhang, Lin Xu, 2020
  • Control of de novo root regeneration efficiency by developmental status of Arabidopsis leaf explants, Jing Pan, Fei Zhao, Guifang Zhang, Yu Pan, Lijun Sun, Ning Bao, Peng Qin, Lyuqin Chen, Jie Yu, Yijing Zhang, Lin Xu, 2019
  • Jasmonate-mediated wound signaling promotes plant regeneration, Lin Xu, 2019
  • Recruitment of IC-WOX Genes in Root Evolution, Wu Liu, Lin Xu, 2018
  • De novo root regeneration from leaf explants: wounding, auxin, and cell fate transition, Lin Xu, 2018
  • Adventitious lateral rooting: the plasticity of root system architecture, Lin Xu, 2018
  • The WOX11-LBD16 Pathway Promotes Pluripotency Acquisition in Callus Cells During De Novo Shoot Regeneration in Tissue Culture, Jie Liu, Xiaomei Hu, Peng Qin, Kalika Prasad, Yuxin Hu, Lin Xu, 2018
  • Auxin Control of Root Organogenesis from Callus in Tissue Culture, Jie Yu, Wu Liu, Jie Liu, Peng Qin, Lin Xu, 2017
  • Non-canonical WOX11-mediated root branching contributes to plasticity in Arabidopsis root system architecture, Lihong Sheng, Xiaomei Hu, Yujuan Du, Guifang Zhang, Hai Huang, Ben Scheres, Lin Xu, 2017
  • The ISWI remodeler in plants: protein complexes, biochemical functions, and developmental roles, Dongjie Li, Jie Liu, Wu Liu, Guang Li, Zhongnan Yang, Peng Qin, Lin Xu, 2017
  • Divergent regeneration-competent cells adopt a common mechanism for callus initiation in angiosperms, Bo Hu, Guifang Zhang, Wu Liu, Jianmin Shi, Hua Wang, Meifang Qi, Jiqin Li, Peng Qin, Ying Ruan, Hai Huang, Yijing Zhang, Lin Xu, 2017
  • Stem cell lineage in body layer specialization and vascular patterning of rice root and leaf, Minhuan Zeng, Bo Hu, Jiqin Li, Guifang Zhang, Ying Ruan, Hai Huang, Hua Wang, Lin Xu, 2016
  • YUCCA-mediated auxin biogenesis is required for cell fate transition occurring during de novo root organogenesis in Arabidopsis, Lyuqin Chen, Jianhua Tong, Langtao Xiao, Ying Ruan, Jingchun Liu, Minhuan Zeng, Hai Huang, JiaWei Wang, Lin Xu, 2016
  • Transcription Factors WOX11/12 Directly Activate WOX5/7 to Promote Root Primordia Initiation and Organogenesis, Xiaomei Hu, Lin Xu, 2016
  • TAA family contributes to auxin production during de novo regeneration of adventitious roots from Arabidopsis leaf explants, Beibei Sun, Lyuqin Chen, Jingchun Liu, Xuening Zhang, Zhongnan Yang, Wu Liu, Lin Xu, 2016
  • Arabidopsis flower and embryo development are repressed in seedlings by different combinations of Polycomb group proteins in association with distinct sets of cis-regulatory elements, Lin Xu, 2016
  • Identification of WOX Family Genes in Selaginella kraussiana for Studies on Stem Cells and Regeneration in Lycophytes, Yachao Ge, Jie Liu, Minhuan Zeng, Jianfeng He, Peng Qin, Hai Huang, Lin Xu, 2016
  • Auxin-Independent NAC Pathway Acts in Response to Explant-Specific Wounding and Promotes Root Tip Emergence during de Novo Root Organogenesis in Arabidopsis, Xiaodong Chen, Jingfei Cheng, Lyuqin Chen, Guifang Zhang, Hai Huang, Yijing Zhang, Lin Xu, 2016
  • Meristem control of leaf patterning, Lin Xu, 2015
  • A simple method suitable to study de novo root organogenesis, Xiaodong Chen, Yuliang Qu, Lihong Sheng, Jingchun Liu, Hai Huang, Lin Xu, 2014
  • ISWI proteins participate in the genome-wide nucleosome distribution in Arabidopsis, Guang Li, Shujing Liu, Jiawei Wang, Jianfeng He, Hai Huang, Yijing Zhang, Lin Xu, 2014
  • WOX11 and 12 are involved the first-step cell fate transition during de novo root organogenesis in Arabidopsis, Lin Xu, 2014
  • Genetic and Epigenetic Controls of Plant Regeneration, Lin Xu, Hai Huang, B. Galliot, 2014
  • The CaMV 35S enhancer has a function to change the histone modification state at insertion loci in Arabidopsis thaliana, Xiaofan Chen, Hai Huang, Lin Xu, 2013
  • Mechanisms guiding Polycomb activities during gene silencing in Arabidopsis thaliana, Chongsheng He, Hai Huang, Lin Xu, 2013
  • Quantitative control of ASYMMETRIC LEAVES2 expression is critical for leaf axial patterning in Arabidopsis, Xiaofan Chen, Hua Wang, Jiqin Li, Hai Huang, Lin Xu, 2013
  • SLIDE, the protein interacting domain of ISWI remodelers, binds DDT-domain proteins of different subfamilies in chromatin remodeling complexes, Lin Xu, 2013
  • Reprogramming of H3K27me3 Is Critical for Acquisition of Pluripotency from Cultured Arabidopsis Tissues, Chongsheng He, Xiaofan Chen, Hai Huang, Lin Xu, 2012
  • Imitation Switch chromatin remodeling factors and their interacting RINGLET proteins act together in controlling the plant vegetative phase in Arabidopsis, Guang Li, Jiawei Zhang, Jiqin Li, Zhongnan Yang, Hai Huang, Lin Xu, 2012
  • In situ detection of mature miRNAs in plants using LNA-modified DNA probes, Lin Xu, 2012
  • ATH1 and KNAT2 proteins act together in regulation of plant inflorescence architecture, Yang Li, Limin Pi, Hai Huang, Lin Xu, 2012
  • YUCCA Genes Are Expressed in Response to Leaf Adaxial-Abaxial Juxtaposition and Are Required for Leaf Margin Development, Wei Wang, Ben Xu, Hua Wang, Jiqin Li, Hai Huang, Lin Xu, 2011
Stem Cells Regeneration Plant Physiology Molecular Biology Genetics Epigenetics Cell Reprogramming Organogenesis Arabidopsis Auxin

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