Showing results (1-10 of 21) with videos related to
Sort By:
Pageof 3
Plant Physiology|March 23, 2012
Quantitative phosphoproteome profiling of iron-deficient Arabidopsis rootsPing Lan, Wenfeng Li, Tuan-Nan Wen, et al.Methods in Molecular Biology (Clifton, N.J.)|July 19, 2016
Isobaric Tag for Relative and Absolute Quantitation (iTRAQ)-Based Protein Profiling in PlantsIsabel Cristina Vélez-Bermúdez, Tuan-Nan Wen, Ping Lan, et al.The Plant Cell|December 25, 2016
Protein Phosphatase 2Cs and Microtubule-Associated Stress Protein 1 Control Microtubule Stability, Plant Growth, and Drought ResponseGovinal Badiger Bhaskara, Tuan-Nan Wen, Thao Thi Nguyen, et al.International Journal of Medicinal Mushrooms|February 14, 2012
Proteomic analysis of differently cultured endemic medicinal mushroom Antrodia cinnamomea T.T. Chang et W.N. Chou from TaiwanYan-Liang Lin, Tuan-Nan Wen, Shang-Tzen Chang, et al.Journal of Experimental Botany|April 1, 2016
Quantitative phosphoproteomics of protein kinase SnRK1 regulated protein phosphorylation in Arabidopsis under submergenceHsing-Yi Cho, Tuan-Nan Wen, Ying-Tsui Wang, et al.Journal of Proteome Research|November 10, 2009
Differential proteomic profiling identifies novel molecular targets of paclitaxel and phytoagent deoxyelephantopin against mammary adenocarcinoma cellsWai-Leng Lee, Tuan-Nan Wen, Jeng-Yuan Shiau, et al.Biochemistry|June 22, 2005
A truncated Fibrobacter succinogenes 1,3-1,4-beta-d-glucanase with improved enzymatic activity and thermotoleranceTuan-Nan Wen, Jui-Lin Chen, Shu-Hua Lee, et al.Scientific Reports|November 3, 2016
Systems-wide analysis of manganese deficiency-induced changes in gene activity of Arabidopsis rootsJorge Rodríguez-Celma, Yi-Hsiu Tsai, Tuan-Nan Wen, et al.Plant Physiology|December 22, 2010
iTRAQ protein profile analysis of Arabidopsis roots reveals new aspects critical for iron homeostasisPing Lan, Wenfeng Li, Tuan-Nan Wen, et al.Molecular & Cellular Proteomics : MCP|August 9, 2015
Post-Transcriptional Coordination of the Arabidopsis Iron Deficiency Response is Partially Dependent on the E3 Ligases RING DOMAIN LIGASE1 (RGLG1) and RING DOMAIN LIGASE2 (RGLG2)I-Chun Pan, Huei-Hsuan Tsai, Ya-Tan Cheng, et al.Pageof 3