王官锋
教授
所属院部: 生命科学学院
访问次数:
基本信息
  • 教师拼音名称:
    Wang GuanFeng
  • 入职时间:
    2015-10-22
  • 所在单位:
    生命科学学院
  • 学历:
    博士研究生毕业
  • 性别:
  • 学位:
    博士生
  • 毕业院校:
    中科院遗传发育所
  • 博士生导师
  • 硕士生导师
教师简介

王官锋,山东大学齐鲁青年学者特聘教授,杰出中青年学者,博士生导师。博士毕业于中科院遗传发育所,先后在美国马里兰大学巴尔的摩郡分校和北卡罗来纳州立大学从事博士后研究。主持多项国家级课题,主要研究方向为玉米抗病基因的挖掘和抗病分子机理研究。以通讯作者在The Plant Cell, Trends in Plant Science, Plant Biotechnology Journal, Plos Pathogens, The Plant Journal, Plant Physiology国际著名期刊发表了二十多篇科研论文担任中国生物工程学会农业分会委员,中国植物病理学位青年委员会委员,中国植物保护学会青年委员会委员,山东省植物生理与分子生物学会常务理事,山东省植物病理学会常务理事;国际著名植物病理杂志Molecular Plant-Microbe Interactions编委 (Associate editor);多个国际期刊的审稿人。

教育经历
  • 2005-9 — 2009-7
    中国科学院
    遗传学
    理学博士学位
  • 2002-9 — 2005-7
    南京农业大学
    作物遗传育种
    硕士生
  • 1998-9 — 2002-7
    山东农业大学
    农学
    学士
工作经历
  • 2015-10-至今
    山东大学
  • 2011-06 — 2015-10
    美国北卡罗来纳州立大学
  • 2009-07 — 2011-05
    美国马里兰大学巴尔的摩郡
科研成果
论文

1.  . Genome editing of the susceptibility gene <i>ZmNANMT</i> confers multiple disease resistance without agronomic penalty in maize.  Plant Biotechnology J.,  21,  1525, 2023. 

2.  孙扬. The maize ZmVPS23-like protein relocates the nucleotide-binding leucine-rich repeat protein Rp1-D21 to endosomes and suppresses the defense response.  PLANT CELL,  2023. 

3.  . Genome editing of the susceptibility gene ZmNANMT confers multiple disease resistance without agronomic penalty in maize.  PLANT BIOTECHNOLOGY JOURNAL,  2023. 

4.  Yang Sun , Yu-Xiu Zhu , Peter J. Balint-Kurit  and Guan-Feng Wang. Fine-tuning immunity: Players and regulators for plant NLRs.  Trends in Plant Science,  25,  695, 2020. 

5.  栾庆玲. Maize metacaspases modulate the defense response mediated by the NLR protein Rp1-D21 likely by affecting its subcellular localization.  Plant Journal,  2021. 

6.  刘孟洁. Maize nicotinate N-methyltransferase interacts with the NLR protein Rp1-D21 and modulates the hypersensitive response.  MOLECULAR PLANT PATHOLOGY,  22,  564, 2021. 

7.  葛春霞. Multi-Omics Analyses Reveal the Regulatory Network and the Function of ZmUGTs in Maize Defense Response.  Frontiers in plant science,  2021. 

8.  朱玉秀. Maize ZmFNSI homologs interact with an NLR protein to modulate hypersensitive response.  INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ,  2020. 

9.  马世骏. The potential roles of different metacaspases in maize defense response.  PLANT SIGNALING & BEHAVIOR,  16,  2021. 

10.  葛春霞. Genome-wide identification of the maize 2OGD superfamily genes and their response to Fusarium verticillioides and Fusarium graminearum.  Gene ,  2021. 

11.  王官锋. Molecular and functional analyses of a maize autoactive NB-LRR protein identify precise structural requirements for activity.  PLOS Pathogens,  2015. 

12.  王官锋. Maize homologs of CCoAOMT and HCT, two key enzymes in lignin biosynthesis, form complexes with the NLR Rp1 protein to modulate the defense response.  plant physiology,  171,  2166, 2016. 

13.  王官锋. Maize homologs of hydroxycinnamoyltransferase, a key enzyme in lignin biosynthesis, bind the nucleotide binding leucine-rich repeat Rp1 proteins to modulate the defense response.  plant physiology,  2015. 

14.  王官锋. Cytoplasmic and nuclear localizations are important for the hypersensitive response conferred by maize autoactive Rp1-D21 protein.  Molecular Plant-Microbe Interactions,  2015. 

15.  王官锋. TaSGT1 and TaRAR1 associated with TaHsp90 function in wheat seedling growth and disease resistance to stripe rust.  Plant Molecular Biology,  2015. 

16.  王官锋. A genome-wide association study of the maize hypersensitive defense response identifies genes that cluster in related pathways.  Plos Genetics,  2014. 

17.  王官锋. Molecular analysis of common wheat genes encoding three types of cytosolic Hsp90s: evidence for differential involvement of cytosolic Hsp90s in the control of wheat seedling growth and disease resistance.  New Phytologist,  2011. 

18.  王官锋. Multiple roles of WIN3 in regulating disease resistance, cell death, and flowering time in Arabidopsis.  plant physiology,  2011. 

19.  王官锋. Characterization of temperature and light effects on the defense response phenotypes associated with the maize Rp1-D21 gene.  BMC Plant Biology,  2013. 

20.  黄戌戌. The novel pathogen-responsive glycosyltransferase UGT73C7 mediates the redirection of phenylpropanoid metabolism and promotes SNC1-dependent Arabidopsis immunity.  Plant Journal,  2021. 

21.  Saet-Byul Kim. Analysis of the transcriptomic, metabolomic, and gene regulatory responses to Puccinia sorghi in maize.  MOLECULAR PLANT PATHOLOGY,  2021. 

22.  王官锋. Overexpression of a citrus NDR1 ortholog increases disease resistance in Arabidopsis.  Frontiers in plant science,  2013. 

23.  王官锋. Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues.  BMC Plant Biology,  2010. 

专利
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