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领域:现代农业 学校:扬州大学职称:教授

  黄瓜遗传育种:以黄瓜品质性状(果实长度、果肉厚度、果皮颜色、果实风味等)和抗逆性状(抗白粉病、枯萎病、蚜虫、涝、高温、单性结实等)为主要研究性状,从资源收集、遗传效应、优异基因挖掘、基因功能解析、种质创新、新品种选育等方面开展相关的研究工作。建有黄瓜遗传育种与生长发育团队,担任该团队的首席科学家。...

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教育背景

  1979.9-1983.7 原江苏农学院园艺系 蔬菜专业 本科毕业;

  1983.8-2006.7 扬州大学 农学院 教师; 期间于:

  1987.9-1990.7 原江苏农学院蔬菜学专业 硕士研究生毕业;

  1998.9-2001.7浙江大学 蔬菜学专业 博士研究生毕业;

工作经历

2001.12-2002.11 荷兰Wageningen大学学习研修(国家留学基金委公派);   2006.8-至今 扬州大学 园艺与植物保护学院 教师; 期间于:   2012.9-2012.12 美国Wisconsin大学学习研修(国家留学基金委公派)。

项目课题经历

 1、主要蔬菜重要品质性状形成的遗传机理及分子改良(2012CB113900),国家973计划,2012-2016,子课题负责人;

  2、基于染色体片段代换系的黄瓜抗白粉病基因精细定位及克隆研究(31171978),国家自然科学基金,2012-2015,主持;

  3、黄瓜涝胁迫下不定根数基因精细定位及功能鉴定(31372087),国家自然科学基金,2012-2015,主持;

  4、黄瓜染色体片段代换系SSL508-28抗白粉病基因挖掘及功能解析(31672176),国家自然科学基金,2017-2020,主持;

  5、设施果菜绿色生产全产业链技术创新与集成应用(CX(17)2004),江苏省农业科技自主创新资金,2017-2019,主持;

  6、江苏现代农业(蔬菜)产业技术体系瓜菜创新团队(SXGC[2017]303),江苏省农业三新工程项目,2017-2020,主持;

  7、高类胡萝卜素含量黄瓜新品种选育与产业化应用(PZCZ201720),江苏省农业重大新品种创制项目,2018-2022,主持。

论文、成果、著作等

  1. The major-effect quantitative trait locus CsARN6.1 encodes an AAA ATPase domain-containing protein that is associated with waterlogging stress tolerance by promoting adventitious root formation.The Plant Journal,2018, 93, 917–930,Correspondence author: Chen Xuehao

  2. Elucidation of the molecular responses of a cucumber segment substitution line

  carrying Pm5.1 and its recurrent parent triggered by powdery mildew by comparative transcriptome profiling. BMC Genomics, Xu et al. BMC Genomics,2017,18: 21,DOI 10.1186/s12864-016-3438-z,Correspondence author: Chen Xuehao

  3. Fine mapping of a dominantly inherited powdery mildewresistance major-effect QTL, Pm1.1, in cucumber identifies a 41.1 kb region containing two tandemly arrayedcysteine-rich receptor-like protein kinase genes. Theoretical and Applied Genetics, 2016, 129(3): 507-516, Correspondence author: Chen Xuehao

  4. QTL Mapping by SLAF-seq and Expression Analysis of Candidate Genes for Aphid Resistance in Cucumber. Frontiers in Plant Science,2016, 2016 doi: 10.3389/2016.01000, Correspondence author: Chen Xuehao

  5. Comparative Proteomic Analysis Provides Insight into the Key Proteins Involved in Cucumber (Cucumis sativus L.) Adventitious Root Emergence under Waterlogging Stress. Frontiers in Plant Science, 2016, doi: 10.3389/2016.01515, Correspondence author: Chen Xuehao

  6. Whole-genome Resequencing of a Cucumber Chromosome Segment Substitution Line and its Recurrent Parent to Identify Candidate Genes Governing Powdery Mildew Resistance. Plos one, 2016, 11(10): e0164469. doi:10.1371, Correspondence author: Chen Xuehao

  7.QTL mapping of cucumber fruit flesh thickness by SLAF-seq. Scientific Reports, 2015,5:15829 | DOI: 10.1038/15829, Correspondence author:Chen Xuehao

  8. Identification of differentially expressed genes related to aphid resistance in cucumber (Cucumis sativus L.). Scientific Reports, 2015,5 : 9645 | DOI: 10.1038/09645, Correspondence author: Chen Xuehao

  9. Genetic inheritance analysis of melon aphid (Aphis gossypii Glover) resistance in cucumber (Cucumis sativus L.). Euphytica, 2015,205:361-367, Correspondence author: Chen Xuehao

  10. Molecular Progress in Research on Fruit Astringency. Molecules, 2015,20:1434-1451,Correspondence author: Chen Xuehao

专利、著作版权等

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