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公開日期題名作者關聯scopusWOS全文
2004A cytosolic glycosyltransferase is required for conversion of starch to sucrose in Arabidopsis leaves at nightChia, T.; Thorneycroft, D.; Chapple, A.; Messerli, G.; Chen, J. ; Smith, A. M.Plant J 37, 853-863
1992A maize cryptic Ac-homologous sequence derived from an Activator transposable element does not transposeLeu, J. Y.; Sun, Y. H. ; Lai, Y. K.; Chen, J. Molecular and General Genetics 233, 411-418
1998A mutant of Arabidopsis lacking a chloroplastic isoamylase accumulates both starch and phytoglycogenZeeman, S. C.; Umemoto, T.; Lue, W. L.; Au-Yeung, P.; Martin, C.; Smith, A. M.; Chen, J. Plant Cell 10, 1699-1712
2004A previously unknown maltose transporter essential for starch degradation in leavesNiittyla, T.; Messerli, G.; Trevisan, M.; Chen, J. ; Smith, A. M.; Zeeman, S. C.Science 303, 87-89
2010A putative phosphatase, LSF1, is required for normal starch turnover in Arabidopsis leavesComparot-Moss, S; Kötting, O; Stettler, M; Edner, C; Graf, A; Weise, SE; Streb, S; Lue, WL; MacLean, D; Mahlow, S; Ritte, G; Steup, M; Chen, J ; Zeeman, SC; Smith, AMPlant Physiol. 152, 685-697
1997adg2-1 represents a missense mutation in the ADPG pyrophosphorylase large subunit gene of Arabidopsis thalianaWang, S. M.; Chu, B.; Lue, W. L.; Yu, T. S. ; Eimert, K.; Chen, J. The Plant Journal 11(5), 1121-1126
2012Arabidopsis thaliana CENTRORADIALIS homologue (ATC) acts systemically to inhibit floral initiation in ArabidopsisHuang, NC; Jane, WN; Chen, J ; Yu, TS The Plant journal 72(2), 175-184
1997Characterization of a maize beta-amylase cDNA clone and its expression during seed germinationWang, S. M.; Lue, W. L.; Wu, S. Y.; Huang, H. W.; Chen, J. Plant Physiol 113, 403-409
1998Characterization of ADG1, an Arabidopsis locus encoding for ADPG pyrophosphorylase small subunit, demonstrates that the presence of the small subunit is required for large subunit stabilityWang, S. M.; Lue, W. L.; Yu, T. S. ; Long, J. H.; Wang, C. N.; Eimert, K.; Chen, J. The Plant Journal 13(1), 63-70
2022Cytosolic phosphoglucose isomerase is essential for microsporogenesis and embryogenesis in ArabidopsisLiu, Hung-Chi; Chen, Hsiu-Chen; Huang, Tzu-Hsiang; Lue, Wei-Ling; Chen, Jychian ; Suen, Der-Fen Plant Physiology 191(1), 177-198
1994Isolation of a cDNA encoding a 70 kDa heat-shock cognate protein expressed in vegetative tissues of Arabidopsis thalianaWu, S. H.; Wang, C.; Chen, J. ; Lin, B. L.Plant Mol Biol 25, 577-583
1995Monogenic Recessive Mutations Causing Both Late Floral Initiation and Excess Starch Accumulation in ArabidopsisEimert, K.; Wang, S. M.; Lue, W. I.; Chen, J. Plant Cell 7, 1703-1712
2000Mutation of Arabidopsis plastid phosphoglucose isomerase affects leaf starch synthesis and floral initiationYu, T. S. ; Lue, W. L.; Wang, S. M.; Chen, J. Plant Physiology 123(1), 319-326
1996Phytohormone-regulated beta-amylase gene expression in riceWang, S. M.; Lue, W. L.; Eimert, K.; Chen, J. Plant Mol Biol 31, 975-982
2007Rapid classification of phenotypic mutants of Arabidopsis via metabolite fingerprintingMesserli, G.; Nia, V. P.; Trevisan, M.; Kolbe, A.; Schauer, N.; Geigenberger, P.; Chen, J. ; Davison, A. C.; Fernie, A. R.; Zeeman, S. C.Plant Physiol 143, 1484-1492
2012Rice LGD1 containing RNA binding activity affects growth and development through alternative promotersThangasam, Y S.; Chen, P. W.; Lai, M. H .; Chen, J. ; Jauh, G. YPlant J. 71(2), 288-302
2011Rice SIZ1, a SUMO E3 ligase, controls spikelet fertility through regulation of anther dehiscenceThangasamy, S; Guo, C. -L.; Chuang, M. -H.; Lai, M. -H.; Chen, J. ; Jauh, G. -Y. New Phytologist 189(3), 869-882
2006Similar Protein Phosphatases Control Starch Metabolism in Plants and Glycogen Metabolism in MammalsNiittyla, T.; Comparot-Mos, S.s; Lue, W. L.; Messerli, G.; Trevisan, M.; Seymour, M. D. J.; Gatehouse, J. A.; Villadsen, D.; Smith, S. M.; Chen, J. ; Zeeman, S. C.; Smith, S. M.J Biol Chem 281, 11815-11818
2009Starch synthesis in Arabidopsis is achieved by spatial cotranscription of core starch metabolism genes.Tsai, HL; Lue, WL; Lu, KJ; Hsieh, MH ; Wang, SM; Chen, J Plant Physiology 151(3), 1582-1595
2009STARCH-EXCESS4 is a laforin-like Phosphoglucan phosphatase required for starch degradation in Arabidopsis thaliana.Kotting, O; Santelia, D; Edner, C; Eicke, S; Marthaler, T; Gentry, MS; Comparot-Moss, S; Chen, J ; Smith, AM; Steup, M; Ritte, G; Zeeman, SCPlant Cell 21, 334-346
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