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个人简介

教育背景 2007/09-2011/06,山东农业大学,生命科学学院,博士 2003/09-2007/06,山东农业大学,生命科学学院,学士 工作经历 2016/03-至今, 山东大学,生命科学学院,助理研究员 2013/01-2016/03,山东大学,生命科学学院,博士后 2011/07-2012/12,山东农业大学,生命科学学院,讲师

研究领域

1. 根尖干细胞维持和分化的分子机制 2. 外界逆境胁迫调控植物根的可塑性生长发育的分子机制 3. 植物减数分裂同源重组的分子机制

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Xiangpei Kong, Huiyu Tian, Qianqian Yu, Feng Zhang, Rong Wang, Shan Gao, Wenhong Xu, Jiajia Liu, Eilon Shani, Chunxiang Fu, Gongke Zhou, Liangran Zhang, Xiansheng Zhang and Zhaojun Ding*. PHB3 maintains root stem cell niche identity through ROS responsive AP2/ERF transcription factors in Arabidopsis. Cell Reports, 2018, 22: 1350-1363. (SCI, 5Y-IF: 8.700) 2. Sha Yang#, Qianqian Yu#, Youming Zhang, Shubo Wan*, Xiangpei Kong* and Zhaojun Ding*. ROS: the fine-tuner of plant stem cell fate. Trends in Plant Science, 2018, 23: 850-853. (SCI, 5Y-IF: 13.181) 3. Xiangpei Kong#,*, Cuiling Li#, Feng Zhang, Qianqian Yu, Shan Gao, Maolin Zhang, Huiyu Tian, Jian Zhang, Xianzheng Yuan and Zhaojun Ding*. Ethylene Promotes Cadmium-induced Root Growth Inhibition through EIN3 controlled XTH33 and LSU1 expression in Arabidopsis. Plant, Cell and Environment, 2018, 41: 2449-2462. (SCI, 5Y-IF: 6.151) 4. Xiangpei Kong#,* , Guangchao Liu#, Jiajia Liu and Zhaojun Ding*. The Root Transition zone: a hot spot for signal crosstalk. Trends in Plant Science, 2018, 23: 403-409. (SCI, 5Y-IF: 13.181) 5. Xiangpei Kong, Liangran Zhang* and Zhaojun Ding*. 26S proteasome: hunter and prey in auxin signaling. Trends in Plant Science, 2016, 21: 546-548. (SCI, 5Y-IF: 13.181) 6. Xiangpei Kong#, Songchong Lu# and Zhaojun Ding*. WOX5 is shining in the root stem cell niche. Trends in Plant Science, 2015, 20: 601-603. (SCI, 5Y-IF: 13.181) 7. Maolin Zhang#, Xiangpei Kong#, Xiangbo Xu, Cuiling Li, Huiyu Tian and Zhaojun Ding*. Comparative transcriptome profiling of the maize primary, crown and seminal root in response to salinity stress. PLoS ONE, 2015, 10: e0121222 (SCI, 5Y-IF: 3.352) 8. Xiangpei Kong, Maolin Zhang, Ive De Smet and Zhaojun Ding*. Designer crops: optimal root system architecture for nutrient acquisition. Trends in Biotechnology, 2014, 32: 597-598. (SCI, 5Y-IF: 14.635) 9. Xiangpei Kong, Maolin Zhang, Xiangbo Xu, Xiaoming Li, Cuiling Li and Zhaojun Ding*. System analysis of MicroRNAs in the development and aluminium-stress responses of the maize root system. Plant Biotechnology Journal, 2014, 12: 1108-1121. (SCI, 5Y-IF: 6.107) 10. Xiangpei Kong, Maolin Zhang and Zhaojun Ding*. D53: the missing link in strigolactone signaling. Molecular Plant, 2014, 7: 761-763. (SCI, 5Y-IF: 8.065) (Cover Page) 11. Xuejing Wen, Tiantian Niu and Xiangpei Kong*. In Silico analysis of PHB gene family in maize. Plant Growth Regulation, 2014, 73: 181-191. (SCI, 5Y-IF: 2.186) 12. Xiangpei Kong#, Wei Lv#, Shanshan Jiang, Dan Zhang, Guohua Cai, Jiaowen Pan and Dequan Li*. Genome-wide identification and expression analysis of Calcium-Dependent Protein Kinase (CDPK) in maize. BMC Genomics, 2013, 14: 433. (SCI, 5Y-IF: 4.257) 13. Xiangpei Kong, Wei Lv, Dan Zhang, Shanshan Jiang, Shizhong Zhang and Dequan Li*. Genome-wide identification and analysis of expression profiles of maize Mitogen-Activated Protein Kinase Kinase Kinase. PLoS ONE, 2013, 8: e57714. (SCI, 5Y-IF: 3.352) 14. Xiangpei Kong#, Jiaowen Pan#, Dan Zhang, Shanshan Jiang, Guohua Cai, Li Wang and Dequan Li*. Identification of Mitogen-Activated Protein Kinase Kinase gene family and MKK-MAPK interaction network in maize. Biochemical and Biophysical Research Communications, 2013, 441: 964-969. (SCI, 5Y-IF: 2.455) 15. Xiangpei Kong, Dan Zhang, Jiaowen Pan, Yan Zhou and Dequan Li*. Hydrogen peroxide is involved in nitric oxide-induced cell death in maize leaves. Plant Biology, 2013, 15: 53–59. (SCI, 5Y-IF: 2.411) 16. Xiangpei Kong, Jiaowen Pan, Guohua Cai and Dequan Li*. Recent insights into brassinosteroids signaling in plants: Its dual control of plant Immunity and stomatal development. Molecular Plant, 2012, 5: 1179-1181. (SCI, 5Y-IF: 8.065) 17. Xiangpei Kong, Jiaowen Pan, Maoying Zhang, Xin Xing, Yan Zhou, Yang Liu, Dapeng Li and Dequan Li*. ZmMKK4, a novel group C MAPK kinase in maize (Zea mays), confers salt and cold tolerance in transgenic Arabidopsis. Plant, Cell and Environment, 2011, 34: 1291-1303. (SCI, 5Y-IF: 6.151) 18. Xiangpei Kong, Liping Sun, Yan Zhou, Maoying Zhang, Yang Liu, Jiaowen Pan and Dequan Li*. ZmMKK4 regulates osmotic stress through reactive oxygen species scavenging in transgenic tobacco. Plant Cell Reports, 2011, 30: 2097-2104. (SCI, 5Y-IF: 2.992)

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