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陈煜


发布时间:2015-09-14 文章作者 : 浏览次数:

(1)个人简介

教育经历

·           1999.09—2003.07,长江大学,园艺系,本科.学士

·           2003.09—2006.07,南京农业大学,草业工程系,研究生.硕士

·           2007.09—2012.07,南京农业大学,园艺系,研究生.博士

工作经历

·           2006.08—2007.09,扬州高尔夫球场,草坪主管

·           2012.07—2013.05,江苏省中国科学院植物研究所,助理研究员

·           2013.06—2016.12,南京农业大学草业学院,博士后,讲师

·           2016.12-至今,南京农业大学草业学院,副教授

(2)主持项目

·           国家自然基金面上项目,热激转录因子PvHSFA4a调控海滨雀稗耐镉的分子机制(31672193),2017.01—2020.12,72万

·           国家自然基金青年项目,基于FOX捕捉系统挖掘盐生植物—沟叶结缕草抗盐基因的研究(31301806),2014.01-2016.12,25万

·           中央高校基本科研业务费自主创新重点项目,SnRK2家族I类成员负调控海滨雀稗耐镉的分子互作机制(KYZ201755),2017.01—2019.12,15万

·           中国博士后基金,海滨雀稗耐镉基因的挖掘与表达分析(2014M551612),2014.05-2015.05,5万

·           江苏省自然基金青年项目,沟叶结缕草FOX捕捉系统的构建及抗盐基因的筛选(BK20130732),2013.07—2016.06,20万

·           江苏省博士后基金项目,基于酵母体系挖掘海滨雀稗抗盐基因的研究(1302018B),2013.12—2015.05,4万

·           江苏省盐土生物资源研究重点实验室开放基金,沟叶结缕草抗盐离子调控基因的挖掘与表达分析(JKLBS2012007),2013.01—2014.12,8万

(3)发表论文

Liu Y, Liu J, Xu L, Lai H, Chen Y*(通讯作者), Yang Z, Huang B (2017) Identification and Validation of Reference Genes for Seashore Paspalum Response to Abiotic Stresses. International Journal of Molecular Science 18: 1322.

Chen Y, Chen C, Tan Z, Liu J, Zhuang L, Yang Z, Huang B (2016) Functional Identification and Characterization of Genes Cloned from Halophyte Seashore Paspalum Conferring Salinity and Cadmium Tolerance. Frontiers in Plant Science 7: 102.

Chen Y, Zong J, Tan Z, Li L, Hu B, Chen C, Chen J, Liu J (2015) Systematic mining of salt-tolerant genes in halophyte-Zoysia matrella through cDNA expression library screening. Plant Physiology and Biochemistry 89: 44-52.

Chen Y, Tan Z, Hu B, Yang Z, Xu B, Zhuang L, Huang B (2015) Selection and validation of reference genes for target gene analysis with quantitative RT-PCR in leaves and roots of bermudagrass under four different abiotic stresses. Physiologia Plantarum 155: 138–148.

Chen Y, Li L, Zong J, Chen J, Guo H, Guo A, Liu J (2015) Heterologous expression of the halophyte Zoysia matrella H+-pyrophosphatase gene improved salt tolerance in Arabidopsis thaliana. Plant Physiology and Biochemistry 91: 49-55.

Chen Y, Hu B, Tan Z, Liu J, Yang Z, Li Z, Huang B (2015) Selection of reference genes for quantitative real-time PCR normalization in creeping bentgrass involved in four abiotic stresses. Plant Cell Reports 34:1825–1834.

Chen Y, Jiang J, Chang Q, Gu C, Song A, Chen S, Dong B, Chen F (2014) Cold acclimation induces freezing tolerance via antioxidative enzymes, proline metabolism and gene expression changes in two chrysanthemum species. Molecular Biology Reports 41: 815-822.

Chen Y, Jiang J, Song A, Chen S, Shan H, Luo H, Gu C, Sun J, Zhu L, Fang W, Chen F (2013) Ambient temperature enhanced freezing tolerance of Chrysanthemum dichrum CdICE1 Arabidopsis via miR398. BMC Biology 11: 121.

Chen Y, Chen S, Chen F, Li P, Chen L, Guan Z, Chang Q (2012) Functional Characterization of a Chrysanthemum dichrum Stress-Related Promoter. Molecular Biotechnology 52: 161-169.

Yang Z, Chen Y(Co-first author), Hu B, Tan Z, Huang B (2015) Identification and Validation of Reference Genes for Quantification of Target Gene Expression with Quantitative Real-time PCR for Tall Fescue under Four Abiotic Stresses. PLoS ONE 10: e0119569.

Xia S, Chen Y(Co-first author), Jiang J, Chen S, Guan Z, Fang W, Chen F (2013) Expression profile analysis of genes involved in horizontal gravitropism bending growth in the creeping shoots of ground-cover chrysanthemum by suppression subtractive hybridization. Molecular Biology Reports 40: 237-246.

Chen L, Chen Y(Co-first author), Jiang J, Chen S, Chen F, Guan Z, Fang W (2012) The constitutive expression of Chrysanthemum dichrum ICE1 in Chrysanthemum grandiflorum improves the level of low temperature, salinity and drought tolerance. Plant Cell Reports 31: 1747-1758.

 

 

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