Xing Wang Deng
Email:deng@pku.edu.cn
Fax:
Tel: 86-010-62765439
Introduction
EDUCATION:
1985.9-1989.4: Ph.D, Plant Biology, University of California at Berkeley, USA.
1982.9-1985.7: M.S, Plant Physiology, Department of Biology, Peking University, Beijing,China.
1978.9-1982.7: B.S, Biology, Department of Biology, Peking University, Beijing, China.
PROFESSIONAL EXPERIENCE:
2014.7.1-present:
Dean, School of Advanced Agricultural Sciences,Peking University, China;
University Endowed Professor, School of Life Sciences, Peking University, China
2013 to present:
Member of US National Academy of Sciences
2000.7-2014.6.30:
Cheung Kong Chair Professor, School of Life Sciences, Peking University, China
2003.5-2014.6.30:
Daniel C. Eaton Professor, Department of Molecular, Cellular and Developmental Biology,
Yale University, USA
2001.7-2014.6.30:
Full Professor, Department of Molecular, Cellular and Developmental Biology, Yale University, USA
2000.10-present:
Director (Part-time), Peking-Yale Joint Centre for Plant Genetics and Agri-Biotechnology,
Peking University, China
2003-2008:
Co-director (part-time), National Institute of Biological Sciences, Beijing, China
1998.7-2001.6:
Associate Professor with tenure, Department of Molecular, Cellular and Developmental Biology,
Yale University, USA
1995.7-1998.6:
Associate Professor with term, Department of Molecular, Cellular and Developmental Biology,
Yale University, USA
1992.1-1995.6:
Assistant professor, Department of Molecular, Cellular and Developmental Biology,
Yale University, USA
1989.5-1991.12:
Postdoc research on Plant Molecular Biology, University of California at Berkeley, USA
Plant Gene Research Center, United States Department of Agriculture, USA
SOCIETY:
Member of the American Society of Plant Physiologists
Member of the American Society for the Advancement of Science
EXTRAMURAL SERVICES
Organizer, The 2011 International Symposium of Plant Photobiology, 2-6 July, Beijing, China
Organizer and Chairman of the 18th International Conference on Arabidopsis Research, June 20-23,
2007, Beijing, China
Advisory board member of The Arabidopsis Information Research (TAIR) (2006-2008)
Chair of Multinational Arabidopsis Research Committee (2007-2008)
Co-Chair of Multinational Arabidopsis Research Committee (2006-2007)
Chair of North American Arabidopsis Research Steering Committee (2007-2008)
Member of North American Arabidopsis Research Steering Committee (2004-2008)
Scientific Advisory Board Member for Ohio State Arabidopsis Stock Center (2003- 2006)
Scientific Advisory Board Member for MPI for Plant Breeding Research (2003-2008)
Scientific Review Group Member for Samsbury Laboratory (2003)
Associate Editor for “Plant Cell” (2008-present)
Editorial Board member for “Annual Review of Plant Biology” (2010-2012)
Associate editor for “Plant Journal” (2000-2005)
Advisory board member of “Molecular Plant” (2006-present)
Associate Editor for “Journal of Integrated Plant Biology” (2004-present)
Associate editor for “Plant Molecular Biology” (1998-present)
Associate Editor for “Genes to Cell” (2000-present)
NOTABLE HONORS
2013: Elected member of US National Academy of Sciences
2013: Elected fellow of American Association for Advancement of Science
2013: Beijing Outstanding Experts in Science, Technology and Management
2009: Beijing Overseas Talents; Beijing Distinguished Specialist
2003: The Kumho Science International Award-2003 by The International Society for
Plant Molecular Biology (ISPMB)
1995: Presidential Faculty Fellow Award
PATENT AWARDED:
United States patent, patent No.: US6,579,716 B1, Date of patent: June 17, 2003;
Patent title: Better emergence characteristics and improved seedling growth under low-light environments
SCIENTIFIC PUBLICATIONS
(See http://www.esi-topics.com/arab/authors/b1a.html for citation summary)
(I) Book and Monograph:
1. Karplus,V. J., and Deng, X. W.(2007). Agricultural Biotechnology inChina: Origins and Prospects (a book with 10 chapters). Forwarded byNorman E. Borlaug. Published December 7, 2007 by Springer.
(II) BookChapters:
13. He,G., and Deng X. W. (2013). Chromatinand gene expression mechanisms in hybrids. Chapter 20 in Hybrid and Polyploid Genomics. John Wiley & Sons, Inc.:323-333.
12. Li,J., Li, G., Wang, H., and Deng, X. W.(2011). Phytochrome signaling mechanisms. ArabidopsisBook9: e0148.
11. Yanagawa, Y., Feng, S., and Deng, X. W. (2005). Light control ofplant development: a role of the ubiquitin/proteasome-mediated proteolysis.Chapter 29 in Light Sensing in Plants,pp. 253-260. Eds: Wada, M., Shimazaki, K., and Lino, M. Springer.
10. Li, L., Wang, X., Li, X., Su, N., Stolc,V., Han, B., Li, J., Xue, Y., Wang, J., and Deng, X. W. (2004). Toward genome-wide transcriptional analysis inrice using MAS oligonucleotide tiling-path microarrays. In Rice Is Life: Scientific Perspectives For The 21st Century.Eds: Toriyama K., Heong, K. L. and Hardy, B. Proceedings of the World Rice Research Conference.
9. Wang, H., and Deng, X. W. (2002). Phytochrome signaling mechanisms. In The Arabidopsis Book, Eds.Somerville, C. R., and Meyerowitz, E. M., AmericanSociety of Plant Biologists.
8. Schwechheimer, C., and Deng, X. W. (2002). FPLC GelFiltration. In Arabidopsis-ALaboratory Manual pp. 226-228, Eds: Weigel, D., and Glazebrook, J. Cold Spring Harbor Laboratory Press.
7. Schwechheimer, C., and Deng, X. W. (2002). Studyingprotein-protein interactions with the yeast two-hybid system. Chapter 9 in Molecular Plant Biology: A practicalApproach, volume II, pp. 173-198. Eds: Philip M. G. and Chris B. Oxford University Press.
6. Habashi, J., and Deng, X. W. (2002). Nondenaturing Gel Electrophoresis of Proteins.In Arabidopsis-A Laboratory Manual.pp. 228-233, Eds: Weigel, D., and Glazebrook, J. Cold Spring Harbor Laboratory Press.
5. Chamovitz, D.A., and Deng, X. W. (1998). Molecular approaches to biochemicalpurification: the COP9 complex paradigm. NATOASI series, vol. H104, 83-91.
4. Kwok, S. F., and Deng, X. W. (1996). The role of he pleiotropic Arabidopsis COP/DET/FUS genes in repression of photomorphogenicdevelopment in darkness. In CurrentTopics in Plant Physiology: an american Society of Plant Physiologists Serieson [regulation of plant growth and development by light]vol. 17 pg.134-143
3. Deng,X. W., and Gruissem, W. (1994). Chloroplast run-on transcription:determination of the transcription activity of chloroplast genes. A chapter ona published laboratory manual based on a COLDSPRING HARBOR COURSE.
2. Melis, A., and Deng, X. W. (1987). The physiological significance of thylakoidmembrane protein phosphorylation. In Progressin Photosynthesis Research, Eds: Biggins, J. Vol. II (2):257 260. Springer.
1. Gruissem, W., Deng, X. W., Jones, H., Stern, D, Tonkyn, J., and Zurawski, G.(1987). Transcriptional and post transcriptional regulation of chloroplast geneexpression. In Structure and Functionof Plant Genome, pp.135 148, Eds: Von Wettstein D., Chua, N. H. Plenum Press, New York.
(III) Books Translated into Chinese
2. Published in Chinese in June 2006. Mechanismsin Plant Development. Eds:Ottoline Leyser, and Stephen Day. Wiley-Blackwell,Oxford. 2002 version.
1. Published in Chinese in February 2004. Biochemistry& Molecular Biology of Plants.Eds: Bob Buchanan, Wilhelm Gruissem, and Russell Jones. American Society of Plant Physiologists, Rockville, MD, USA. 2002version.
(IV) Research Articles
274 Dong,J., Tang, D., Gao, Z., Yu, R., Li, K., He, H., Terzaghi, W., Deng, X. W. and Chen, H. (2014).Arabidopsis DE-ETIOLATED1 Represses Photomorphogenesis by Positively RegulatingPhytochrome-Interacting Factors in the Dark. Plant Cell tpc.114.130666.
273 Wang,L., Li, J., Zhou, Q., Yang, G., Ding, X. L., Li, X., Cai, C. X., Zhang, Z., Wei,H. Y., Lu, T. H., Deng, X. W. andHuang, X. H. (2014). Rare earth elements activate endocytosis in plant cells. Proc Natl Acad Sci U S A. 111:12936-12941.
272 Chen,F., Li, B., Demone, J., Charron, J.B., Shi, X., and Deng, X.W. (2014). Photoreceptor partner FHY1 has an independentrole in gene modulation and plant development under far-red light. Proc Natl Acad Sci U S A 111:11888-11893.
271 Huang,X., Ouyang, X., and Deng, X.W.(2014). Beyond repression of photomorphogenesis: role switching of COP/DET/FUSin light signaling. Curr Opin PlantBiol 21C, 96-103.
270 Ouyang,X., Huang, X., Jin, X., Chen, Z., Yang, P., Ge, H., Li, S., and Deng, X.W. (2014). Coordinatedphotomorphogenic UV-B signaling network captured by mathematical modeling. Proc Natl Acad Sci U S A 111,11539-11544.
269 Wang,Y., Fan, X., Lin, F., He, G., Terzaghi, W., Zhu, D., and Deng, X.W. (2014). Arabidopsis noncoding RNA mediates control ofphotomorphogenesis by red light. ProcNatl Acad Sci U S A 111, 10359-10364.
268 Xu,D., Lin, F., Jiang, Y., Huang, X., Li, J., Ling, J., Hettiarachchi, C.,Tellgren-Roth, C., Holm, M., and Deng,X.W. (2014). The RING-Finger E3 Ubiquitin Ligase COP1 SUPPRESSOR1Negatively Regulates COP1 Abundance in Maintaining COP1 Homeostasis inDark-Grown Arabidopsis Seedlings. PlantCell26, 1981-1991.
267 Chen,F., Li, B., Li, G., Charron, J.B., Dai, M., Shi, X., and Deng, X.W. (2014). Arabidopsis Phytochrome A Directly TargetsNumerous Promoters for Individualized Modulation of Genes in a Wide Range ofPathways. Plant Cell 26,1949-1966.
266 Jin,D., Li, B., Deng, X.W., and Wei, N.(2014). Plant COP9 signalosome subunit 5, CSN5. Plant Sci224, 54-61.
265 Huang,X., Yang, P., Ouyang, X., Chen, L., and Deng,X.W. (2014). Photoactivated UVR8-COP1 module determines photomorphogenicUV-B signaling output in Arabidopsis. PLoSGenet 10, e1004218.
264 Zhong,S., Shi, H., Xue, C., Wei, N., Guo, H., and Deng, X.W. (2014). Ethylene-orchestrated circuitry coordinates aseedling's response to soil cover and etiolated growth. Proc Natl Acad Sci U S A 111, 3913-3920.
263 Xu,D., Li, J., Gangappa, S.N., Hettiarachchi, C., Lin, F., Andersson, M.X., Jiang,Y., Deng, X.W., and Holm, M. (2014).Convergence of Light and ABA signaling on the ABI5 promoter. PLoS Genet 10, e1004197.
262 Xu,X., Paik, I., Zhu, L., Bu, Q., Huang, X., Deng,X.W., and Huq, E. (2014). PHYTOCHROME INTERACTING FACTOR1 Enhances the E3Ligase Activity of CONSTITUTIVE PHOTOMORPHOGENIC1 to Synergistically RepressPhotomorphogenesis in Arabidopsis. PlantCell26, 1992-2006.
261 Wang,Y., Wang, X., Deng, W., Fan, X., Liu, T.T., He, G., Chen, R., Terzaghi, W.,Zhu, D., and Deng, X.W. (2014).Genomic features and regulatory roles of intermediate-sized non-coding RNAs inArabidopsis. Mol Plant 7,514-527.
260 Seo,K.I., Lee, J.H., Nezames, C.D., Zhong, S., Song, E., Byun, M.O., and Deng, X.W. (2014). ABD1 is anArabidopsis DCAF substrate receptor for CUL4-DDB1-based E3 ligases that acts asa negative regulator of abscisic acid signaling. Plant Cell 26, 695-711.
259 Irigoyen,M.L., Iniesto, E., Rodriguez, L., Puga, M.I., Yanagawa, Y., Pick, E.,Strickland, E., Paz-Ares, J., Wei, N., De Jaeger, G., Rodriguez, P.L., Deng, X.W., and Rubio, V. (2014).Targeted degradation of abscisic acid receptors is mediated by the ubiquitinligase substrate adaptor DDA1 in Arabidopsis. Plant Cell 26, 712-728.
258 Chen,W., Chen, H., Zheng, T., Yu, R., Terzaghi, W.B., Li, Z., Deng, X.W., Xu, J., and He, H. (2014). Highly efficient genotypingof rice biparental populations by GoldenGate assays based on parentalresequencing. Theor Appl Genet127, 297-307.
257 Chen,S., He, H., and Deng, X.W. (2014).Allele-specific DNA methylation analyses associated with siRNAs in Arabidopsishybrids. Science China. Life sciences.
256 Chen,H., Xie, W., He, H., Yu, H., Chen, W., Li, J., Yu, R., Yao, Y., Zhang, W., He,Y., Tang, X., Zhou, F., Deng, X.W.,and Zhang, Q. (2014). A high-density SNP genotyping array for rice biology andmolecular breeding. Mol Plant 7,541-553.
255 Zhang, H., Deng, X.W., and Li, L. (2013). Analysis of allele-specific geneexpression using a target-oriented tiling microarray assay. Methods in molecular biology (Clifton,N.J.) 1067, 65-76.
254 Yu, Y., Wang, J., Zhang, Z., Quan, R.,Zhang, H., Deng, X.W., Ma, L., andHuang, R. (2013). Ethylene promotes hypocotyl growth and HY5 degradation byenhancing the movement of COP1 to the nucleus in the light. PLoS Genet 9, e1004025.
253 Wang, J., Yu, Y., Zhang, Z., Quan, R.,Zhang, H., Ma, L., Deng, X.W., andHuang, R. (2013). Arabidopsis CSN5B interacts with VTC1 and modulates ascorbicacid synthesis. Plant Cell 25,625-636.
252 Shi, H., Zhong, S., Mo, X., Liu, N.,Nezames, C.D., and Deng, X.W.(2013). HFR1 sequesters PIF1 to govern the transcriptional network underlyinglight-initiated seed germination in Arabidopsis. Plant Cell25, 3770-3784.
251 Liu, T.T., Zhu, D., Chen, W., Deng, W., He,H., He, G., Bai, B., Qi, Y., Chen, R., and Deng,X.W. (2013). A global identification and analysis of small nucleolar RNAsand possible intermediate-sized non-coding RNAs in Oryza sativa. Mol Plant 6, 830-846.
250 Liu, C., Guo, L.Q., Menon, S., Jin, D.,Pick, E., Wang, X., Deng, X.W., andWei, N. (2013). COP9 signalosome subunit Csn8 is involved in maintaining properduration of the G1 phase. J Biol Chem288, 20443-20452.
249 Li, J., Yang, L., Jin, D., Nezames, C.D.,Terzaghi, W., and Deng, X.W. (2013).UV-B-induced photomorphogenesis in Arabidopsis. Protein & cell 4, 485-492.
248 Li, B., Duan, H., Li, J., Deng, X.W., Yin, W., and Xia, X.(2013). Global identification of miRNAs and targets in Populus euphratica undersalt stress. Plant Mol Biol 81,525-539.
247 Huang, X., Ouyang, X., Yang, P., Lau, O.S.,Chen, L., Wei, N., and Deng, X.W.(2013). Conversion from CUL4-based COP1-SPA E3 apparatus to UVR8-COP1-SPAcomplexes underlies a distinct biochemical function of COP1 under UV-B. Proc Natl Acad Sci U S A 110,16669-16674.
246 Huang, X., and Deng, X.W. (2013). Organization of protein complexes underphotomorphogenic UV-B in Arabidopsis. PlantSignal Behav 8.
245 He, G., He, H., and Deng, X.W. (2013). Epigenetic variations in plant hybrids and theirpotential roles in heterosis. J GenetGenomics 40, 205-210.
244 He, G., Chen, B., Wang, X., Li, X., Li, J.,He, H., Yang, M., Lu, L., Qi, Y., and Deng,X.W. (2013). Conservation and divergence of transcriptomic and epigenomicvariation in maize hybrids. GenomeBiol14, R57.
243 Guo, L., Nezames, C.D., Sheng, L., Deng, X.W., and Wei, N. (2013).Cullin-RING ubiquitin ligase family in plant abiotic stress pathways(F). J Integr Plant Biol 55,21-30.
242 Franciosini, A., Lombardi, B., Iafrate, S.,Pecce, V., Mele, G., Lupacchini, L., Rinaldi, G., Kondou, Y., Gusmaroli, G.,Aki, S., Tsuge, T., Deng, X.W.,Matsui, M., Vittorioso, P., Costantino, P., and Serino, G. (2013). TheArabidopsis COP9 SIGNALOSOME INTERACTING F-BOX KELCH 1 protein forms an SCFubiquitin ligase and regulates hypocotyl elongation. Mol Plant 6, 1616-1629.
241 Dai, M., Xue, Q., McCray, T., Margavage, K.,Chen, F., Lee, J.H., Nezames, C.D., Guo, L., Terzaghi, W., Wan, J., Deng, X.W., and Wang, H. (2013). ThePP6 Phosphatase Regulates ABI5 Phosphorylation and Abscisic Acid Signaling inArabidopsis. Plant Cell 25,517-534.
240 Chen, H., He, H., Zhou, F., Yu, H., and Deng, X.W. (2013). Development ofgenomics-based genotyping platforms and their applications in rice breeding. Curr Opin Plant Biol 16,247-254.
239 Bowler, C., Botto, J., and Deng, X.W. (2013). Photomorphogenesis,B-Box transcription factors, and the legacy of Magnus Holm. Plant Cell 25, 1192-1195.
238 Zhu, D., and Deng, X.W. (2012). A non-coding RNA locus mediatesenvironment-conditioned male sterility in rice. Cell Res 22, 791-792.
237 Zhou, H., Zhao, J., Yang, Y., Chen, C., Liu,Y., Jin, X., Chen, L., Li, X., Deng,X.W., Schumaker, K.S., and Guo, Y. (2012). Ubiquitin-specific protease16modulates salt tolerance in Arabidopsis by regulating Na(+)/H(+) antiportactivity and serine hydroxymethyltransferase stability. Plant Cell 24, 5106-5122.
236 Zhong, S., Shi, H., Xue, C., Wang, L., Xi,Y., Li, J., Quail, P.H., Deng, X.W.,and Guo, H. (2012). A molecular framework of light-controlled phytohormoneaction in Arabidopsis. Curr Biol22, 1530-1535.
235 Zhao, J., Huang, X., Ouyang, X., Chen, W.,Du, A., Zhu, L., Wang, S., Deng, X.W.,and Li, S. (2012). OsELF3-1, an ortholog of Arabidopsis early flowering 3,regulates rice circadian rhythm and photoperiodic flowering. PLoS One 7, e43705.
234 Yang, D.L., Yao, J., Mei, C.S., Tong, X.H.,Zeng, L.J., Li, Q., Xiao, L.T., Sun, T.P., Li, J., Deng, X.W., Lee, C.M., Thomashow, M.F., Yang, Y., He, Z., and He,S.Y. (2012). Plant hormone jasmonate prioritizes defense over growth byinterfering with gibberellin signaling cascade. Proc Natl Acad Sci U S A 109, E1192-1200.
233 Wu, D., Hu, Q., Yan, Z., Chen, W., Yan, C.,Huang, X., Zhang, J., Yang, P., Deng, H., Wang, J., Deng, X.W., and Shi, Y. (2012). Structural basis of ultraviolet-Bperception by UVR8. Nature 484,214-219.
232 Shen, H., He, H., Li, J., Chen, W., Wang,X., Guo, L., Peng, Z., He, G., Zhong, S., Qi, Y., Terzaghi, W., and Deng, X.W. (2012). Genome-wide analysisof DNA methylation and gene expression changes in two Arabidopsis ecotypes andtheir reciprocal hybrids. Plant Cell24, 875-892.
231 Nezames, C.D., and Deng, X.W. (2012). The COP9 signalosome: its regulation of cullin-basedE3 ubiquitin ligases and role in photomorphogenesis. Plant Physiol 160, 38-46.
230 Li, J., Terzaghi, W., and Deng, X.W. (2012). Genomic basis forlight control of plant development. Protein& cell 3, 106-116.
229 Lau, O.S., and Deng, X.W. (2012). The photomorphogenic repressors COP1 and DET1:20 years later. Trends Plant Sci17, 584-593.
228 Huang, X., Ouyang, X., Yang, P., Lau, O.S.,Li, G., Li, J., Chen, H., and Deng, X.W.(2012). Arabidopsis FHY3 and HY5 positively mediate induction of COP1 transcriptionin response to photomorphogenic UV-B light. PlantCell 24, 4590-4606.
227 Fan, D., Dai, Y., Wang, X., Wang, Z., He,H., Yang, H., Cao, Y., Deng, X.W.,and Ma, L. (2012). IBM1, a JmjC domain-containing histone demethylase, isinvolved in the regulation of RNA-directed DNA methylation through theepigenetic control of RDR2 and DCL3 expression in Arabidopsis. Nucleic Acids Res 40,8905-8916.
226 Dai, M., Zhang, C., Kania, U., Chen, F.,Xue, Q., McCray, T., Li, G., Qin, G., Wakeley, M., Terzaghi, W., Wan, J., Zhao,Y., Xu, J., Friml, J., Deng, X.W.,and Wang, H. (2012). A PP6-type phosphatase holoenzyme directly regulates PINphosphorylation and auxin efflux in Arabidopsis. Plant Cell 24, 2497-2514.
225 Chen, H., Chen, W., Zhou, J., He, H., Chen,L., and Deng, X.W. (2012). Basicleucine zipper transcription factor OsbZIP16 positively regulates droughtresistance in rice. Plant Sci 193-194,8-17.
224 Chen, F., Shi, X., Chen, L., Dai, M., Zhou,Z., Shen, Y., Li, J., Li, G., Wei, N., and Deng,X.W. (2012). Phosphorylation of FAR-RED ELONGATED HYPOCOTYL1 is a keymechanism defining signaling dynamics of phytochrome A under red and far-redlight in Arabidopsis. Plant Cell24, 1907-1920.
223 Zhang, H., He, H., Wang, X., Yang, X., Li,L., and Deng, X.W. (2011).Genome-wide mapping of the HY5-mediated gene networks in Arabidopsis thatinvolve both transcriptional and post-transcriptional regulation. Plant J 65, 346-358.
222 Zang, B., Li, H., Li, W., Deng, X.W., and Wang, X. (2011).Analysis of trehalose-6-phosphate synthase (TPS) gene family suggests theformation of TPS complexes in rice. PlantMol Biol 76, 507-522.
221 Wang, F., and Deng, X.W. (2011). Plant ubiquitin-proteasome pathway and its rolein gibberellin signaling. Cell Res21, 1286-1294.
220 Ouyang, X., Li, J., Li, G., Li, B., Chen,B., Shen, H., Huang, X., Mo, X., Wan, X., Lin, R., Li, S., Wang, H., and Deng, X.W. (2011). Genome-wide bindingsite analysis of FAR-RED ELONGATED HYPOCOTYL3 reveals its novel function inArabidopsis development. Plant Cell23, 2514-2535.
219 Lozano-Duran, R., Rosas-Diaz, T., Gusmaroli,G., Luna, A.P., Taconnat, L., Deng, X.W.,and Bejarano, E.R. (2011). Geminiviruses subvert ubiquitination by alteringCSN-mediated derubylation of SCF E3 ligase complexes and inhibit jasmonatesignaling in Arabidopsis thaliana. PlantCell 23, 1014-1032.
218 Li, W., Zang, B., Liu, C., Lu, L., Wei, N.,Cao, K., Deng, X.W., and Wang, X.(2011). TSA1 interacts with CSN1/CSN and may be functionally involved inArabidopsis seedling development in darkness. J Genet Genomics 38, 539-546.
217 Li, H.W., Zang, B.S., Deng, X.W., and Wang, X.P. (2011). Overexpression of thetrehalose-6-phosphate synthase gene OsTPS1 enhances abiotic stress tolerance inrice. Planta 234,1007-1018.
216 Li, G., Siddiqui, H., Teng, Y., Lin, R.,Wan, X.Y., Li, J., Lau, O.S., Ouyang, X., Dai, M., Wan, J., Devlin, P.F., Deng, X.W., and Wang, H. (2011).Coordinated transcriptional regulation underlying the circadian clock inArabidopsis. Nat Cell Biol 13,616-622.
215 Lee, J.H., Terzaghi, W., and Deng, X.W. (2011). DWA3, an ArabidopsisDWD protein, acts as a negative regulator in ABA signal transduction. Plant Sci 180, 352-357.
214 Lau, O.S., Huang, X., Charron, J.B., Lee,J.H., Li, G., and Deng, X.W. (2011).Interaction of Arabidopsis DET1 with CCA1 and LHY in mediating transcriptionalrepression in the plant circadian clock. MolCell43, 703-712.
213 He, G., Elling, A.A., and Deng, X.W. (2011). The epigenome andplant development. Annu Rev Plant Biol62, 411-435.
212 Cui, H., Hao, Y., Kovtun, M., Stolc, V., Deng, X.W., Sakakibara, H., and Kojima,M. (2011). Genome-wide direct target analysis reveals a role for SHORT-ROOT inroot vascular patterning through cytokinin homeostasis. Plant Physiol 157, 1221-1231.
211 Chen, H., He, H., Zou, Y., Chen, W., Yu, R.,Liu, X., Yang, Y., Gao, Y.M., Xu, J.L., Fan, L.M., Li, Y., Li, Z.K., and Deng, X.W. (2011). Development andapplication of a set of breeder-friendly SNP markers for genetic analyses andmolecular breeding of rice (Oryza sativa L.). Theor Appl Genet 123, 869-879.
210 Zhou, J., Wang, X., He, K., Charron, J.B.,Elling, A.A., and Deng, X.W. (2010).Genome-wide profiling of histone H3 lysine 9 acetylation and dimethylation inArabidopsis reveals correlation between multiple histone marks and geneexpression. Plant Mol Biol 72,585-595.
209 Yang, Y., Qin, Y., Xie, C., Zhao, F., Zhao,J., Liu, D., Chen, S., Fuglsang, A.T., Palmgren, M.G., Schumaker, K.S., Deng, X.W., and Guo, Y. (2010). TheArabidopsis chaperone J3 regulates the plasma membrane H+-ATPase throughinteraction with the PKS5 kinase. PlantCell 22, 1313-1332.
208 Li, J., Li, G., Gao, S., Martinez, C., He,G., Zhou, Z., Huang, X., Lee, J.H., Zhang, H., Shen, Y., Wang, H., and Deng, X.W. (2010). Arabidopsistranscription factor ELONGATED HYPOCOTYL5 plays a role in the feedbackregulation of phytochrome A signaling. PlantCell 22, 3634-3649.
207 Lee, J.H., Yoon, H.J., Terzaghi, W.,Martinez, C., Dai, M., Li, J., Byun, M.O., and Deng, X.W. (2010). DWA1 and DWA2, two Arabidopsis DWD proteincomponents of CUL4-based E3 ligases, act together as negative regulators in ABAsignal transduction. Plant Cell22, 1716-1732.
206 Lau, O.S., and Deng, X.W. (2010). Plant hormone signaling lightens up: integratorsof light and hormones. Curr Opin PlantBiol 13, 571-577.
205 Kong, Y.M., Elling, A. A., Chen, B., and Deng, X.W. (2010). DifferentialExpression of microRNAs in Maize Inbred and Hybrid Lines During Salt andDrought Stress. Am J Plant Sci1, 69-76.
204 He, H., Zhang, H., Wang, X., Wu, N., Yang,X., Chen, R., Li, Y., Deng, X.W.,and Li, L. (2010). Development of a versatile, target-oriented tilingmicroarray assay for measuring allele-specific gene expression. Genomics 96, 308-315.
203 He, G., Zhu, X., Elling, A.A., Chen, L.,Wang, X., Guo, L., Liang, M., He, H., Zhang, H., Chen, F., Qi, Y., Chen, R.,and Deng, X.W. (2010). Globalepigenetic and transcriptional trends among two rice subspecies and theirreciprocal hybrids. Plant Cell22, 17-33.
202 Chen, H., Huang, X., Gusmaroli, G., Terzaghi,W., Lau, O.S., Yanagawa, Y., Zhang, Y., Li, J., Lee, J.H., Zhu, D., and Deng, X.W. (2010). ArabidopsisCULLIN4-damaged DNA binding protein 1 interacts with CONSTITUTIVELYPHOTOMORPHOGENIC1-SUPPRESSOR OF PHYA complexes to regulate photomorphogenesisand flowering time. Plant Cell22, 108-123.
201 Chen, F., He, G., He, H., Chen, W., Zhu, X.,Liang, M., Chen, L., and Deng, X.W.(2010). Expression analysis of miRNAs and highly-expressed small RNAs in tworice subspecies and their reciprocal hybrids. J Integr Plant Biol 52, 971-980.
200 Bai, S., Zhao, J., Zhang, Y., Huang, W., Xu,S., Chen, H., Fan, L.M., Chen, Y., and Deng,X.W. (2010). Rapid and reliable detection of 11 food-borne pathogens usingthin-film biosensor chips. ApplMicrobiol Biotechnol 86, 983-990.
199 Xie, C.G., Lin, H., Deng, X.W., and Guo, Y. (2009). Roles of SCaBP8 in salt stressresponse. Plant Signal Behav 4,956-958.
198 Wang, X., Yu, Z., Yang, X., Deng, X.W., and Li, L. (2009).Transcriptionally active gene fragments derived from potentially fast-evolvingdonor genes in the rice genome. Bioinformatics25, 1215-1218.
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