陈琳

发布者:best365网页版登录发布时间:2023-02-27浏览次数:1364

一、基本信息

陈琳,男,汉族,19871月生,湖北仙桃市人,中共党员,博士研究生学历,理学博士学位学位,副教授,硕导。

通讯地址  best365网页版登录304

邮箱地址chen07041@126.com


二、学习与工作经历

2008/09–2013/12,华中农业大学,生命科学与技术学院,理学博士(硕博连读) 导师:柳俊教授


工作经历(科研与学术工作经历,按时间倒排序):

2022/01–今,华南农业大学,best365网页版登录,副教授

2019/08–2020/08,德国马克思普朗克研究所,分子植物生理所,访问学者                                                                                

2016/09–2021/12,华南农业大学,best365网页版登录,讲师

2014/07-2014/12,德国马克思普朗克研究所,分子植物生理所,访问学者

2014/04–2016/09,华中农业大学,园艺林学学院,博士后

    通过网络分析和多组学整合分析,结合分子生物学探究马铃薯低温抗性、其他园艺植物重要性状如菜心早衰、香蕉采后保鲜等分子作用机理,并在本领域高级别学术期刊上发表论文多篇,与华中农业大学、广东省人民医院、德国马克思普朗克研究所分子植物生理所长期合作。


三、主讲课程

园艺研究法、园艺植物分子与细胞生物学(双语)


四、研究领域

马铃薯抗寒分子机理研究

马铃薯应答磷饥饿分子机理研究

马铃薯绿色高效栽培模式

利用组学解析园艺植物采后相关性状机制


五、科研项目

广东省重点领域研发计划项目,马铃薯倍性育种技术创新与优质抗逆新品种选育,2022/01-2025/1265万、在研、主持

广东省自然科学基金面上项目,2022A1515010017,马铃薯抗寒候选基因SaCIPK的功能研究与机理解析,2022.01.01-2024.12.31,10万、在研、主持

广东省重点领域研发计划项目,2020B020219002,优质、早熟、抗病马铃薯品种选育及产业化技术研究,2020/01-2024/1240万、在研、主持

国家自然科学面上基金,31772306 ,洋葱果聚糖外切水解酶(AcFEH)调控果聚糖代谢的分子机理研究、2018/01-2021/1260万元、在研、参与
  
国家自然科学基金青年基金, 31801863  番茄果实花青素合成调控基因ATROVIOLACIUM候选基因的功能验证与分析、2019/01-2021/1225万元、在研、参与
  
国家马铃薯产业技术体系广州综合试验站,CARS-10-ES14 2016/01-2020/12250万元、在研、参与
  
国家自然科学基金青年基金,31501354、基于转录组和代谢组的马铃薯抗寒相关途径分析及抗寒机理解析、2016/01-2018/1220万元、结题、主持
中国博士后科学基金,2015M572167、马铃薯低温响应的代谢途径分析、2015/05-2016/125万元、结题、主持
  
国家自然科学面上基金,31571726、马铃薯Y病毒极端抗性基因Rychc的克隆与抗病机理解析、2016/01-2018/1262万元、在研、参与
国家自然科学基金青年基金,31401436、马铃薯晚疫病菌相关分子模式INF1及其识别受体ERL免疫互作机制、2015/01-2017/1222万元、结题、参与


六、个人论著

1.Chen, L., Zhou, F., Chen, Y., Fan, Y., Zhang, K., Liu, Q., Tu, W., Jiang, F., Li, G., Zhao, H. and Song, B. (2023) Salicylic Acid Improves the Constitutive Freezing Tolerance of Potato as Revealed by Transcriptomics and Metabolomics Analyses. International Journal of Molecular Sciences 24, 609. (二区,影响因子6.2) 

2. Mu, Y., Guo, X., Yu, J., Wang, R., Liu, Z., Hu, K., Song, J., Chen, L., Song, B. and Du, J. (2022) SWATH-MS based quantitative proteomics analysis reveals novel proteins involved in PAMP triggered immunity against potato late blight pathogen Phytophthora infestans. Frontiers in Plant Science 13.(二区,影响因子5.7

3.Cai, D #., Xu, H., Liu, Z., Chen, N., Zhu, L., Lin, Z., Wu, C., Shan, W., Chen, J., Lu, W., Chen, L*. and Kuang, J*. (2023) Banana MaERF124 negatively modulates carotenoid accumulation during fruit ripening through repression of carotenogenesis genes. Postharvest Biology and Technology. 195, 112151. (一区,影响因子6.7

4.Zhu, Lisha#, Lin Chen, Chaojie Wu, Wei Shan, Danling Cai, Zengxiang Lin, Wei Wei, Jianye Chen, Wangjin Lu, and Jianfei Kuang* (2022). Methionine Oxidation and Reduction of the Ethylene SignallingComponent Maeil9 Are Involved in Banana Fruit Ripening. Journal of integrative plant biology (doi.org/10.1111/jipb.13363.  一区,影响因子 9.1)   

5. Chen, Lin#; Zhao, Hongbo; Chen, Ye; Jiang, Fujing; Zhou, Feiyan; Liu, Qing; Fan, Yongqi; Liu, Tiantian; Tu, Wei; Walther, Dirk; Song, Botao* (2022) Comparative transcriptomics analysis reveals a calcineurin B-like gene to positively regulate constitutive and acclimated freezing tolerance in potato. Plant cell and environment  (doi: 10.1111/pce.14432, 一区,影响因子7.9)  

6.Ye Chen#, Lin Chen, Xiaomeng Sun, Shuang Kou, Tiantian Liu, Jianke Dong, Wei Tu, Yiling Zhang, and Botao Song* (2022) The Mitogen-Activated Protein Kinase Kinase Mkk2 Positively Regulates Constitutive Cold Resistance in the Potato. Environmental and Experimental Botany 194:104702   (二区,影响因子5.9) 

7.Lin Chen#, Fenghua Zheng, Zili Feng, Yue Li, Muxuan Ma, Guoping Wang*, and Hongbo Zhao* (2021) A Vacuolar Invertase Csvi2 Regulates Sucrose Metabolism and Increases Drought Tolerance in Cucumis Sativus L. Int. J. Mol. Sci.  (二区,影响因子5.9)

8.Jianfei Kuang#, Chaojie Wu, Yufan Guo, Dirk Walther, Wei Shan, Jianye Chen, Lin Chen*, Wangjin Lu*.(2021) Deciphering Transcriptional Regulators of Banana Fruit Ripening by Regulatory Network Analysis.Plant Biotechnology Journal ( 一区,影响因子9.8,植物类top杂志

9. XunLiu#, LinChen#, Weiling Shi, Xuan Xu, Zhijing Li, Tengfei Liu, Qin He, Conghua Xie, Bihua Nie, Botao Song* (2020). Comparative transcriptome reveals distinct starch-sugar interconversion patterns in potato genotypes contrasting for cold-induced sweetening capacity. Food Chemistry ( 一区,影响因子7.5)  
  10. Lin Chen#, Xiaohong Liu, Xiaojia Huang, Wei Luo, Yuming Long, Steffen Greiner, Thomas Rausch, Hongbo Zhao (2019). Functional Characterization of a Drought-Responsive Invertase Inhibitor from Maize (Zea mays L.) Int. J. Mol. Sci. 20(17), 4081 (
二区,影响因子4.2)  
  11. Kou S#, Chen L#, Tu W, Song BT, Xie CH* (2018). The arginine decarboxylase gene ADC1, associated to putrescine pathway, plays an important role in potato cold-acclimated freezing tolerance as revealed by transcriptome and metabolome analyses
The Plant Journal  doi:10.1111/tpj.14126 (co-author, 一区影响因子6.1,植物类top杂志)
  12. Liu T#, Huang B, Chen L, Xian Z, Song S, Chen R, Hao Y* (2018) Genome-wide identification, phylogenetic analysis, and expression profiling of polyamine synthesis gene family members in tomato. Gene 661:1-10
(五年影响因子2.2
  13. Chen L#, Guo Xianpu, Wang Haibo, Xie Conghua, Cai Xingkui, He Li, Zhou Jun, Liu Jun*  Tetrasomic inheritance pattern of the pentaploid Solanum chacoense (+) S. tuberosum somatic hybrid (resistant to bacterial wilt) revealed by SSR detected alleles. Plant Cell, Tissue and Organ Culture, 2016, 127(2): 315-323
(五年影响因子2.0
  14. Du J#, Guo X, Chen L, Xie C, Liu J*. Proteomic analysis of differentially expressed proteins of Nicotiana benthamiana triggered by INF1 elicitin from Phytophthora infestans. Journal of General Plant Pathology 2016
  15. Zhou Jun#, Fang Hui, Shan Jianwei, Gao Xiaoxi, Chen Lin, Xie Conghua, Xie Tingting, Liu Jun*. A major QTL located on chromosome V associates with in vitro tuberization in a tetraploid potato population. Molecular Genetics and Genomics, 2014, 289 (4): 575-587
(五年影响因子2.7
  16. Chen L#, Guo XP, Xie CH, He L, Cai XK, Tian LL, Song BT and Liu J*. Nuclear and cytoplasmic genome components of Solanum tuberosum + S. chacoense somatic hybrids and three SSR alleles related to bacterial wilt resistance. Theoretical and Applied Genetics, 2013, 126: 1861-1872
(五年影响因子4.1) 

personal resume

Associate Prof. Lin Chen

College of Horticulture

South China Agricultural University

Guangzhou, Guangdong 510642,P. R. China

Tel: (+86) 18818870162

E-mailchenlin_304@scau.edu.cn

https://yjsglxt.scau.edu.cn/open/wxtkss/teacherinfo.aspx?jsbh=30004357

Education

l  Ph.D. (Genetics)

Huazhong Agricultural University, Wuhan, 2013

l  B.S. (Biology engineering)

Hubei Minzu University, Enshi, 2008

Area of Expertise

Molecular biology and multiple-omic analysis of potato, banana and Chinese flowering cabbage

Selected Publications

1. Li X, Chen L, Liu T, Chen Y, Wang J, Song B (2024) Integrated analysis of ATAC-seq and transcriptomic reveals the ScDof3-ScproC molecular module regulating the cold acclimation capacity of potato. Plant Physiology Biochemistry 210: 108576

2. Chen, L., Zhou, F., Chen, Y., Fan, Y., Zhang, K., Liu, Q., Tu, W., Jiang, F., Li, G., Zhao, H. and Song, B. Salicylic Acid Improves the Constitutive Freezing Tolerance of Potato as Revealed by Transcriptomics and Metabolomics Analyses. International Journal of Molecular Sciences 24, 609.

3. Cai, D., Xu, H., Liu, Z., Chen, N., Zhu, L., Lin, Z., Wu, C., Shan, W., Chen, J., Lu, W., Chen, L*. and Kuang, J*. Banana MaERF124 negatively modulates carotenoid accumulation during fruit ripening through repression of carotenogenesis genes. Postharvest Biology and Technology. 195,112151.

4. Zhu, Lisha, Lin Chen, Chaojie Wu, Wei Shan, Danling Cai, Zengxiang Lin, Wei Wei, Jianye Chen, Wangjin Lu, and Jianfei Kuang*. Methionine Oxidation and Reduction of the Ethylene Signalling Component MaEIL9 Are Involved in Banana Fruit Ripening. Journal of integrative plant biology

5. Chen, Lin; Zhao, Hongbo; Chen, Ye; Jiang, Fujing; Zhou, Feiyan; Liu, Qing; Fan, Yongqi; Liu, Tiantian; Tu, Wei; Walther, Dirk; Song, Botao* Comparative transcriptomics analysis reveals a calcineurin B-like gene to positively regulate constitutive and acclimated freezing tolerance in potato. Plant cell and environment

6. Ye Chen, Lin Chen, Xiaomeng Sun, Shuang Kou, Tiantian Liu, Jianke Dong, Wei Tu, Yiling Zhang, and Botao Song* The Mitogen-Activated Protein Kinase Kinase Mkk2 Positively Regulates Constitutive Cold Resistance in the Potato. Environmental and Experimental Botany 194:104702

7. Lin Chen, Fenghua Zheng, Zili Feng, Yue Li, Muxuan Ma, Guoping Wang*, and Hongbo Zhao* (2021) A Vacuolar Invertase Csvi2 Regulates Sucrose Metabolism and Increases Drought Tolerance in Cucumis Sativus L. Int. J. Mol. Sci.

8. Jianfei Kuang, Chaojie Wu, Yufan Guo, Dirk Walther, Wei Shan, Jianye Chen, Lin Chen*, Wangjin Lu*. (2021) Deciphering Transcriptional Regulators of Banana Fruit Ripening by Regulatory Network Analysis. Plant Biotechnology Journal 

9. Xun Liu#, Lin Chen#, Weiling Shi, Xuan Xu, Zhijing Li, Tengfei Liu, Qin He, Conghua Xie, Bihua Nie, Botao Song*. Comparative transcriptome reveals distinct starch-sugar interconversion patterns in potato genotypes contrasting for cold-induced sweetening capacity. Food Chemistry

10. Lin Chen, Xiaohong Liu, Xiaojia Huang, Wei Luo, Yuming Long, Steffen Greiner, Thomas Rausch, Hongbo Zhao. Functional Characterization of a Drought-Responsive Invertase Inhibitor from Maize (Zea mays L.) Int. J. Mol. Sci. 20(17), 4081

 11. Kou S#, Chen L#, Tu W, Song BT, Xie CH* The arginine decarboxylase gene ADC1, associated to putrescine pathway, plays an important role in potato cold-acclimated freezing tolerance as revealed by transcriptome and metabolome analyses. The Plant Journal

12. Chen L, Guo Xianpu, Wang Haibo, Xie Conghua, Cai Xingkui, He Li, Zhou Jun, Liu Jun*. Tetrasomic inheritance pattern of the pentaploid Solanum chacoense (+) S. tuberosum somatic hybrid (resistant to bacterial wilt) revealed by SSR detected alleles. Plant Cell, Tissue and Organ Culture, 2016, 127(2): 315-323

13. Chen L, Guo XP, Xie CH, He L, Cai XK, Tian LL, Song BT and Liu J*. Nuclear and cytoplasmic genome components of Solanum tuberosum + S. chacoense somatic hybrids and three SSR alleles related to bacterial wilt resistance. Theoretical and Applied Genetics, 2013, 126: 1861-1872


 

  


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