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Chuanxiao Xie

Date:2019-04-26Author:Source:

Chuanxiao Xie
Head of the Research Group of Maize Genome Editing and its’ Breeding Applications
Center for Crop Genetics and Breeding
Institute of Crop Sciences
No.12 Zhongguancun South Street
Beijing, 100081, China
Tel:86-10-82107464
Fax:86-10-82106748
Email:xiechuanxiao@caas.cn

Educations

  • 2001-2004, PhD in Biophysics, Heifei Branch Academy of China Academy of Sciences, Hefei, China
  • 1998-2001, MS in Plant Genetics and Breeding, Anhui Agriculture University, Hefei, China
  • 1992-1996, BS in Agronomy, Anhui Agriculture University, Hefei, China

Working Experience

  • 2014.1-present, Professor, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences
  • 2006.1-2013.12, Associate Professor, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences
  • 2005 Visiting Scientist at CIMMYT
  • 2004.7-2005.12 Assistant Professor, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences

Research Interests

  • Plant genome editing technologies
  • Maize genome editing technologies and their breeding applications
  • New maize breeding strategies and approaches

Academic Qualifications

  • Guest editor, Journal of THE CROP JOURNAL
  • Editor board members, Journal of CROPS
  • Member of the academic committee boards, Gene Editing Branch of Chinese Genetic Society

Selected Publications (*corresponding authors)

Dong, L., Li, L., Liu, C., Liu, C., ShuaifengGeng, Li, X., Huang, C., Mao, L., Chen, S., and Xie, C*. (2018). Genome editing and double fluorescence proteins enable robust maternal haploid induction and identification in maize. Molecular Plant 11, 1214–1217 doi:10.1016/j.molp.2018.06.011.
Li, C., Liu, C., Qi, X., Wu, Y., Fei, X., Mao, L., Cheng, B., Li, X. and Xie, C*.(2017) RNA-guided Cas9 as an in vivo desired-target mutator in maize. Plant Biotechnology Journal. 15(12):1566-1576. doi:10.1111/pbi.12739.
Liu W, Tai H, Li S, Gao W, Zhao M, Xie C*, Li W-X*: bHLH122 is important for drought and osmotic stress resistance in Arabidopsis and in the repression of ABA catabolism. New Phytologist 2014, 201(4):1192-1204.
Zhao, Y., Zhang, C., Liu, W., Gao, W., Liu, C., Song, G., Li, W.-X., Mao, L., Chen, B., Xu, Y., Li, X. and Xie, C*. (2016) An alternative strategy for targeted gene replacement in plants using a dual-sgRNA/Cas9 design. Scientific Reports 6, 23890. doi: 10.1038/srep23890
Liu, C., Zhou, Q., Dong, L., Wang, H., Liu, F., Weng, J., Li, X. and Xie, C*.(2016) Genetic architecture of the maize kernel row number revealed by combining QTL mapping using a high-density genetic map and bulked segregant RNA sequencing. BMC Genomics 17, 915. DOI: 10.1186/s12864-016-3240-y
Xu, D., Yang, H., Zou, C., Li, W.-X., Xu, Y., and Xie, C*. (2016). Identification and functional characterization of the AGO1 ortholog in maize. Journal of Integrative Plant Biology 58:749-758. DOI: 10.1111/jipb.12467

Members of Research Group

 

 

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