董臣

作者:时间:2020-03-16点击数:

姓名:董臣

性别:

学历:博士

职称:副教授

招生方向:1、萜类物质合成的分子机制解析及关键酶的理性设计2、食品加工与安全

联系方式:chen.dong@haut.edu.cn

个人简介

主要对植物萜类代谢途径中的关键分支酶进行研究,分析萜类物质合成的调控机制;通过理性设计对萜类物质合成关键酶进行改造,实现植物酶的人工智能设计,调控整个萜类物质合成的代谢流。主持完成国家自然科学基金项目1项,河南省自然科学基金面上项目1项,河南省科技攻关项目1项,以及河南省教育厅项目1项。以第一作者或者通讯作者在Science BulletinIJMS, Genes,RSC AdvancesPlant Growth RegulationPlant Cell Tissue And Organ Culture等发表SCI论文10余篇,参与申报发明专利17项。

代表性论文:

1.Du F#., Hu ZY#., Qin LL#., Zhang C., Wang ZW., Shi YC., Wang XR., Wang R., Gao YL*.,Dong C*. Suppression of carotenoid cleavage dioxygenase 1 (NtCCD1) increases carotenoid contents and attenuates reactive oxygen species (ROS) in Tobacco Leaves. Plant Growth Regul. 2023;https://doi.org/10.1007/s10725-023-00961-x

2.Dong C.,Zhang M., Song S., Wei F., Qin LL., Fan P., Shi Y., Wang X., Wang R*. A Small Subunit of Geranylgeranyl Diphosphate Synthase Functions as an Active Regulator of Carotenoid Synthesis inNicotiana tabacum. Int. J. Mol. Sci. 2023; 24:992.

3.Qin LL., Du F., Yang NN., Zhang C., Wang ZW., Zheng XW., Tang JW., Yang LB.,Dong C*. Transcriptome Analyses Revealed the Key Metabolic Genes and Transcription Factors Involved in Terpenoid Biosynthesis in Sacred Lotus. Molecules. 2022; 27:4599.

4.Dong C#., Wang QD#., Wang YB., Qin LL., Shi YC., Wang XR., Wang R*. NtDREB-1BL1 Enhances Carotenoid Biosynthesis by Regulating Phytoene Synthase inNicotiana tabacum. Genes. 2022; 13:1134.

5.Dong C#.,Qu G#., Guo JG#., Wei F., Gao SW., Sun ZT., Jin LF., Sun XW., Rochaix JD., Miao YC*., Wang R*. Rational Design of Geranylgeranyl Diphosphate Synthase Enhances Carotenoid Production and Improves Photosynthetic Efficiency inNicotiana tabacum. Sci Bull. 2022; 67:315-327.

6.Dong C#., Zhang M#., Wei F#., Guo YS., Qin LL., Wei P., Wang YB., Jin LF., Song WN., Sun T., Li F., Wang R*. Inhibition of red chlorophyll catabolite reductase improved chlorophyll and carotenoid synthesis in tobacco, Plant Cell Tiss Org. 2022; 148(3): 687-698.



上一条:张莉 下一条:刘娜

学院地址:郑州市高新区莲花街 450001 电话:0371-67756513

Copyright©河南工业大学生物工程学院 版权所有

Baidu
map