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George Coupland的文献有哪些?

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Corbesier, L. and Coupland, G. (2005). Photoperiodic flowering of Arabidopsis: integrating genetic and physiological approaches to characterization of the floral stimulus. Plant, Cell and Environment 28, 54-66

Coupland, G. (2005). Intercellular communication ring floral initiation and development. Intercellular Communication in Plants (Annual Plant Reviews, Vol. 16), ed. A.J. Fleming. Blackwell Publishing Ltd. , Oxford, pp 178-198.

An, H., Roussot, C., Suárez-López, P., Corbesier, L., Vincent, C., Piñeiro, M., Hepworth, S., Mouradov, A., Justin, S., Turnbull, C. and Coupland, G. (2004). CONSTANS acts in the phloem to regulate a systemic signal that inces photoperiodic flowering of Arabidopsis. Development 131, 3615-3626 (full text)

Casal, J.J., Fankhauser, C., Coupland, G. and Blázquez, M.A. (2004). Signalling for developmental plasticity. Trends in Plant Science 9, 309-314.

Hayama, R. and Coupland, G. (2004) The Molecular Basis of Diversity in the Photoperiodic Flowering Responses of Arabidopsis and Rice. Plant Physiology 135, 677-684

Novatchkova, M., Budhiraja, R., Coupland, G., Eisenhaber, F. and Bachmair, A. (2004). SUMO conjugation in plants. Planta 220, 1-8.

Oda, A., Fujiwara, S., Kamada, H., Coupland, G. and Mizoguchi, T. (2004). Antisense suppression of the Arabidopsis PIF3 gene does not affect circadian rhythms but causes early flowering and increases FT expression. FEBS Letters 557, 259-264.

Searle, I. and Coupland, G. (2004). Inction of flowering by seasonal changes in photoperiod. The EMBO Journal 23, 1217-1222.

Valverde, F., Mouradov, A., Soppe, W., Ravenscroft, D., Samach, A. and Coupland, G. (2004). Photoreceptor regulation of CONSTANS protein in photoperiodic flowering. Science 303, 1003-1006. (abstract) (full text)

Cremer, F. and Coupland, G. (2003). Distinct photoperiodic responses are conferred by the same genetic pathway in Arabidopsis and in rice. Trends in Plant Science 8, 405-407.

Griffiths, S., Dunford, R.P., Coupland, G. and Laurie, D.A. (2003). The evolution of CONSTANS-like gene families in barley, rice and Arabidopsis. Plant Physiology 131, 1855-1867.

Hayama, R. and Coupland, G. (2003). Shedding light on the circadian clock and the photoperiodic control of flowering. Current Opinion in Plant Biology 6, 13-19.

Lao, N. T., Long, D., Kiang, S., Coupland, G., Shoue, D. A., Carpita, N. C., Kavanagh, T. A., (2003). Mutation of a family 8 glycosyltransferase gene alters cell wall carbohydrate composition and causes a humidity-sensitive semi-sterile dwarf phenotype in Arabidopsis. Plant Molecular Biology 53 (5), 687-701.

Murtas, G., Reeves, P.H., Fu, Y.-F., Bancroft, I., Dean, C. and Coupland, G. (2003). A nuclear protease required for flowering-time regulation in Arabidopsis reces the abundance of SMALL UBIQUITIN-RELATED MODIFIER conjugates. Plant Cell 15, 2308-2319.

Piñeiro, M., Gómez-Mena, C., Schaffer, R, Martínez-Zapater, J.M. and Coupland, G. (2003). EARLY BOLTING IN SHORT DAYS is related to chromatin remodeling factors and regulates flowering in Arabidopsis by repressing FT. Plant Cell 15, 1552-1562.

Cecchini, E., Geri, C., Love, A.J., Coupland, G., Covey, S.N. and Milner, J.J. (2002). Mutations that delay flowering in Arabidopsis de-couple symptom response from cauliflower mosaic virus accumulation ring infection. Molecular Plant Pathology 3, 81-90.

Hepworth, S. R., Valverde, F., Ravenscroft, D., Mouradov, A. and Coupland, G. (2002). Antagonistic regulation of flowering-time gene SOC1 by CONSTANS and FLC via seperate promoter motifs. EMBO Journal 21, 4327-4337.

Lawand, S., Dorne, A.-J., Long, D., Coupland, G., Mache, R., Carol, P. (2002). Arabidopsis A BOUT DE SOUFFLE, which is homologous with mammalian carnitine acyl carrier, is required for postembryonic growth in the light. Plant Cell 14, 2161-2173.

Mizoguchi, T., Wheatley, K., Hanzawa, Y., Wright, L., Mizoguchi, M., Song, H-R., Carré, I.A. and Coupland, G. (2002). LHY and CCA1 are partially rendant genes required to maintain circadian rhythms in Arabidopsis. Developmental Cell 2, 629-641.

Mouradov, A., Cremer, F. and Coupland, G. (2002). Control of flowering time: Interacting pathways as a basis for diversity. Plant Cell 14, Supplement, S111-S130.

Reeves, P.H., Murtas, G., Dash, S. and Coupland, G. (2002). early in short days 4, a mutation in Arabidopsis that causes early flowering and reces the mRNA abundance of the floral repressor FLC. Development 129, 5349-5361.

Gómez-Mena, C., Piñeiro, M., Franco-Zorrilla, J.M., Salinas, J., Coupland, G. and Martínez-Zapater, J.M. (2001). early bolting in short days: An Arabidopsis mutation that causes early flowering and partially suppresses the floral phenotype of leafy. Plant Cell 13, 1011-1024.

Reeves, P.H. and Coupland, G. (2001). Analysis of flowering time control in Arabidopsis by comparison of double and triple mutants. Plant Physiology 126, 1085-1091.

Robson, F., Costa, M.M.R., Hepworth, S.R., Vizir, I., Pineiro, M., Reeves, P.H., Putterill, J. and Coupland, G. (2001). Functional importance of conserved domains in the flowering-time gene CONSTANS demonstrated by analysis of mutant alleles and transgenic plants. Plant Journal 28, 619-631.

Roslan, H.A., Salter, M.G., Wood, C.D., White, M.R.H., Croft, K.P., Robson, F., Coupland, G., Doonan, J., Laufs, P., Tomsett, A.B., Caddick, M.X. (2001). Characterization of the ethanol-incible alc gene-expression system in Arabidopsis thaliana. Plant Journal 28, 225-235.

Suárez-López, P., Wheatley, K., Robson, F., Onouchi, H., Valverde, F. and Coupland, G. (2001). CONSTANS mediates between the circadian clock and control of flowering in Arabidopsis. Nature 410, 1116-1120.

Hanzawa, Y., Takahashi, T., Michael, A.J., Burtin, D., Long, D., Pineiro, M., Coupland, G. and Komeda, Y. (2000). ACAULIS 5, an Arabidopsis gene required for stem elongation, encodes a spermine synthase. EMBO Journal 19, 4248-4256.

Mizoguchi, T. and Coupland, G. (2000). ZEITLUPE and FKF1: novel connections between flowering time and circadian clock control. Trends in Plant Science 5, 409-411.

Onouchi, H., Igeño, M.I., Perilleux, C., Graves, K. and Coupland, G. (2000). Mutagenesis of plants overexpressing CONSTANS demonstrates novel interactions among Arabidopsis flowering-time genes. Plant Cell 12, 885-900.

Putterill, J. and Coupland, G. (2000). Map-based cloning in Arabidopsis. Arabidopsis (The Practical Approch Series, Vol. 223), ed Z.A. Wilson, Oxford University Press, Oxford/UK, pp 171-197.

Reeves, P.H. and Coupland, G. (2000). Response of plant development to environment: control of flowering by daylength and temperature. Current Opinion in Plant Biology 3, 37-42.

Samach, A. and Coupland, G. (2000). Time measurement and the control of flowering in plants. BioEssays 22, 38-47.

Samach, A., Onouchi, H., Gold, S.E., Ditta, G.S., Schwarz-Sommer, Zs., Yanofsky, M.F. and Coupland, G. (2000). Distinct roles of CONSTANS target genes in reproctive development of Arabidopsis. Science 288, 1613-1616.

Carol, P., Stevenson, D., Bisanz, C., Breitenbach, J., Sandmann, G., Mache, R., Coupland, G. and Kuntz, M. (1999). Mutations in the Arabidopsis gene IMMUTANS cause a variegated phenotype by inactivating a chloroplast terminal oxidase associated with phytoene desaturation. Plant Cell 11, 57-68.

Fowler, S., Lee, K., Onouchi, H., Samach, A., Richardson, K., Morris, B., Coupland, G. and Putterill, J. (1999). GIGANTEA: a circadian clock-controlled gene that regulates photoperiodic flowering in Arabidopsis and encodes a protein with several possible membrane-spanning domains. EMBO Journal 18, 4679-4688.

Alonso-Blanco, C., El-Din El-Assal, S., Coupland, G. And Koornneef, M. (1998). Analysis of natural allelic variation at flowering time loci in the Landsberg erecta and Cape Verde Islands ecotypes of Arabidopsis thaliana. Genetics 149, 749-764.

Coupland, G. (1998). Photoperiodic regulation of flowering time in Arabidopsis. In: Biological Rhythms and Photoperiodism in Plants, eds. P.J. Lumsden and A.J. Millar. BIOS Scientific Publishers Ltd., Oxford, pp 243-255.

Long, D. and Coupland, G. (1998). Transposon tagging with Ac /Ds in Arabidopsis. In: Arabidopsis Protocols (Vol 82 of Methods in Molecular Biology), eds J. Martinez-Zapater and J. Salinas. Humana Press, Totowa, New Jersey, pp 315-328.

Onouchi, H. and Coupland, G. (1998). The regulation of flowering time in response to daylength. Journal of Plant Research 111, 271-275.

Piñeiro, M. and Coupland, G. (1998). The control of flowering time and floral identity in Arabidopsis. Plant Physiology 117, 1-8.

Robert, L.S., Robson, F., Sharpe, A., Lydiate, D. and Coupland, G. (1998). Conserved structure and function of the Arabidopsis flowering time gene CONSTANS in Brassica napus. Plant Molecular Biology 37, 763-772.

Schaffer, R., Ramsay, N., Samach, A., Corden, S., Putterill, J., Carré, I.A. and Coupland, G. (1998). The late elongated hypocotyl mutation of Arabidopsis disrupts circadian rhythms and the photoperiodic control of flowering. Cell 93, 1219-1229.

Suárez-López, P. and Coupland, G. (1998). Plants see the blue light. Science 279, 1323-1324.

Coupland, G. (1997). Regulation of flowering by photoperiod in Arabidopsis. Plant, Cell and Environment 20, 785-789.

Coupland, G., Igeño, M.I., Simon, R. Schaffer, R., Murtas, G. Reeves, P., Robson, F., Pineiro, M., Costa, M., Lee, K. and Suárez-López, P. (1997). The regulation of flowering time by daylength in Arabidopsis. The Society for Experimental Biology SEB 1036, 105-110.

Davies, G.J., Sheikh M.A., Ratcliffe, O.J., Coupland, G. and Furner, I.J. (1997). Genetics of homology-dependent gene silencing in Arabidopsis; a role for methylation. Plant Journal 12, 791-804.

Fray, M.J., Puangsomlee, P., Goodrich, J., Coupland, G., Evans, E.J., Arthur, A.E. and Lydiate, D.J. (1997). The genetics of stamenoid petal proction in oilseed rape (Brassica napus) and equivalent variation in Arabidopsis thaliana. Theoretical and Applied Genetics 94, 731-736.

Goodrich, J., Puangsomlee, P., Martin, M., Long, D., Meyerowitz, E.M. and Coupland, G. (1997). A Polycomb-group gene regulates homeotic gene expression in Arabidopsis. Nature 386, 44-51.

Long, D., Goodrich, J., Wilson, K., Sundberg, E., Martin, M., Puangsomlee, P. and Coupland, G. (1997). Ds elements on all five Arabidopsis chromosomes and assessment of their utility for transposon tagging. Plant Journal 11, 145-148.

Putterill, J.J., Ledger, S.E., Lee, K., Robson, F., Murphy, G. and Coupland, G. (1997). The flowering time gene CONSTANS and homologue CONSTANS LIKE 1 exist as a tandem repeat on chromosome 5 of Arabidopsis. Plant Physiology 114, 396.

Sundberg, E., Slagter, J.G., Fridborg, I., Cleary, S.P., Robinson, C. and Coupland, G. (1997). Albino3, an Arabidopsis nuclear gene essential for chloroplast differentiation, encodes a chloroplast protein that shows homology to proteins present in bacterial membranes and yeast mitochondria. Plant Cell 9, 717-730.

Lagercrantz, U., Putterill, J., Coupland, G. and Lydiate, D. (1996). Comparative mapping in Arabidopsis and Brassica, fine scale genome collinearity and congruence of genes controlling flowering time. Plant Journal 9, 13-20.

Simon, R. and Coupland, G. (1996). Arabidopsis genes that regulate flowering time in response to day-length. Seminars in Cell and Developmental Biology. 7, 419-425.

Simon, R., Igeño, M.I. and Coupland, G. (1996). Activation of floral meristem identity genes in Arabidopsis. Nature 384, 59-62.

Wilson, K., Long, D., Swinburne, J. and Coupland, G. (1996). A Dissociation insertion causes a semidominant mutation that increases expression of TINY, an Arabidopsis gene related to APETALA2. Plant Cell 8, 659-671.

Coupland, G. (1995). Genetic and environmental control of flowering time in Arabidopsis. Trends in Genetics 11, 393-397.

Coupland, G. (1995). LEAFY blooms in aspen. Nature 377, 482-483.

Coupland, G. (1995). Regulation of flowering time: Arabidopsis as a model system to study genes that promote or delay flowering. Philosophical Transactions Royal Society London B 350, 27-34.

Putterill, J., Robson, F., Lee, K., Simon, R. and Coupland, G. (1995). The CONSTANS gene of Arabidopsis promotes flowering and encodes a protein showing similarities to zinc finger transcription factors. Cell 80, 847-857.
George Coupland的文献有哪些?

Carol, P., Stevenson, D., Bisanz, C., Breitenbach, J., Sandmann, G., Mache, R., Coupland, G. and Kuntz, M. (1999). Mutations in the Arabidopsis gene IMMUTANS cause a variegated phenotype by inactivating a chloroplast terminal oxidase associated with phytoene desaturation. Plant Cell 11,...

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