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光合碳代谢
王柏臣
博士,课题组长,研究员;
1971年11月出生于黑龙江省哈尔滨市,2002年在哈尔滨师范大学获得硕士学位,2006年在北京大学获博士学位。2006年9月至2011年6月在东北林业大学担任教教授从事教学和科研工作。2011年6月入选中国科学院“百人计划”,以通讯作者和第一作者发表SCI收录论文10余篇。已培养硕士和博士8名;正在博士生和硕士生9名。
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  • 著作专利
植物光合碳代谢研究:
以C4植物玉米和C3植物拟南芥和杨树为研究材料,利用分子生物学,生物化学、细胞学和遗传学方法研究C4植物高效固碳的分子生物学机理以及C4途径关键酶酶转录、翻译、翻译后修饰以及酶活活性的调控机制。
1、Jie Shen, Rosalind Williams-Carrier, Alice Barkan*(2017). PSA3, a Protein on the Stromal Face of the Thylakoid Membrane, Promotes Photosystem I Accumulation in Cooperation with the Assembly Factor PYG7. Plant Physiolgy, 174(3): 1850-1862.
2、Zhuo Shen, Xiumei Dong, Zhifang Gao, Qing Chao, Baichen Wang*(2017). Phylogenic and phosphorylation regulation difference of phosphoenolpyruvate carboxykinase of C3 and C4 plants. Journal of Plant Physiology, 213: 16-22.
3、Yuan Li, Feng Jin, Qing Chao, Baichen Wang*(2017). Proteomics analysis reveals the molecular mechanism underlying the transition from primary to secondary growth of poplar. Journal of Plant Physiology, 213: 1-15.
4、Yuan Li, Xiumei Dong, Feng Jin, Zhuo Shen, Qing Chao, Baichen Wang*(2017). Histone Acetylation Modifications Affect Tissue-Dependent Expression of Poplar Homologs of C4 Photosynthetic Enzyme Genes. Frontiers in Plant Science, 8: 950.
5、Tiantian Bu, Jie Shen, Qing Chao, Zhuo Shen, Zhen Yan, Haiyan Zheng, Bai-chen Wang*(2017). Dynamic N-glycoproteome analysis of maize seedling leaves during de-etiolation using Concanavalin A lectin affinity chromatography and a nano-LC–MS/MS-based iTRAQ approach. Plant Cell Reports, 36(12): 1943–1958.
6、Qing Chao, Zhifang Gao, Yuefeng Wang, Zhe Li, Xiahe Huang, Yingchun Wang, Yingchang Mei, Biligengaowa Zhao, Liang Li, Yu-bo Jiang, and Baichen Wang*. (2016). The proteome and phosphoproteome of maize pollen uncovers fertility candidate proteins. Plant Molecular Biology  91(3): 287-304.
7、Xiumei Dong, Yuan Li, Qing Chao, Jie Shen, Xiujie Gong, Biligen-gaowa Zhao, and Baichen Wang*. (2016). Analysis of gene expression and histone modification between C4 and non-C4 homologous genes of PPDK and PCK in maize. Photosynthesis Research 016, 129: 71–83.
8、YiBo Chen, Dan Wang, XuanLiang Ge, BiligenGaowa Zhao, XuChu Wang, and BaiChen Wang*. (2016). Comparative proteomics of leaves found at different stem positions of maize seedlings. Journal of Plant Physiology 198:116-128.
9、Lun Jiang, Yibo Chen, Jiangge Zheng, Zhenhang Chen, Yujie Liu, Ye Tao, Wei Wu, Zhongzhou Chen*, Baichen Wang*. (2016). Structural basis of reversible phosphorylation by maize Pyruvate orthophosphate dikinase regulatory protein. Plant Physiology 170(2): 732-741.
10、Deli Ning, Kehui Liu, Changcai Liu, Jinwen Liu, Chunrong Qian, Yang Yu, Yuefeng Wang, Yingchun Wang, and Baichen Wang*. (2016). Large-scale comparative phosphoprotein analysis of maize seedling leaves during greening. Planta 243(2): 501-517.
11、Qing Chao, Zhifang Gao, Yuefeng Wang, Zhe Li、Xiahe Huang, Yingchun Wang, Yingchang Mei, Biligengaowa Zhao, Liang Li, Yubo Jiang and Baichen Wang*. (2016). The proteome and phosphoproteome of maize pollen uncovers fertility candidate proteins. Plant Molecular Biology 91(3):287-304.
12、Qing Chao, XiaoYu Liu, Yingchang Mei, Zhifang Gao, Yibo Chen, Chunrong Qian, Yubo Hao, and Baichen Wang*. (2014). Light-regulated phosphorylation of maize phosphoenolpyruvate carboxykinase plays a vital role in its activity. Plant Molecular Biology 85(1-2):95-105.
13、Yibo Chen, Tiancong Lu, Hongxia Wang, Jie Shen, Tiantian Bu, Qing Chao, Zhifang Gao, Xinguang Zhu, Yue-Feng Wang and Baichen Wang*. (2014). Posttranslational Modification of Maize Chloroplast Pyruvate Orthophosphate Dikinase Reveals the Precise Regulatory Mechanism of Its Enzymatic Activity. Plant Physiology 165(2):534-549.
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