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The Plant Journal 2000: Vol 24 Index & Table of Contents PDF

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Preview The Plant Journal 2000: Vol 24 Index & Table of Contents

The Plant Journal (2000) 24(6), 905-910 Author index Abbadi, A., Brummel, M. and Spener, F. Knockout of the Bougourd, S., Marrison, J. and Haseloff, J. An aniline blue regulatory site of 3-ketoacyl-ACP synthase Ill enhances short staining procedure for confocal microscopy and 3D imaging of and medium-chain acyl-ACP synthesis 1 normal and perturbed cellular phenotypes in mature Abbo, S. see Gorbunova, V Arabidopsis embryos 543 Abranches, R., Santos, A.P., Wegel, E., Williams, S., Castilho, A Bouvier, F. see Rosati, C Christou, P., Shaw, P. and Stoger, E.W idely separated multiple Bouvier, F., Suire, C., d’'Harlingue, A., Backhaus, R.A. and transgene integration sites in wheat chromosomes are brought Camara, B. Molecular cloning of gerany! diphosphate synthase together at interphase 713 and compartmentation of monoterpene synthesis in plant Allan, A.C. see Wood, N.T cells 241 Allan, V. see Barroso, C Bowyer, J.R. see Vinti, G Alvarez-Buylla, E.R., Liljegren, S.J., Pelaz, S., Gold, S.E Brady, S.R. see Hu, S Burgeff, C., Ditta, G.S., Vergara-Silva, F. and Yanofsky, M.F Bramley, P.M. see Fraser, P.D MADS-box gene evolution beyond flowers: expression in Bray, C.M. see West, C.E pollen, endosperm, guard cells, roots and trichomes 457 Brennicke, A. see Okada, S Amano, Y. see Ohmiya, Y Brennicke, A. see Schock, | Angenent, G.C. see Ge, Y.-X Briat, J.-F. see Bagnaresi, P Aoki, N. see Bauer, C.S Brummel, M. see Abbadi, A Aoyama, T. see Sakai, H Burgeff, C. see Alvarez-Buylla, E.R Apel, K. see Borner, R Busconi, L. see Martin, M.L Aquilani, R. see Rosati, C Busscher, M. see Ge, Y.-X Arazi, T. see Sunkar, R Atkinson, H. see Urwin, P Caldelari, D. see Rodriguez-Concepx Ausubel, F.M. see Dewdney, J Camara, B. see Bouvier, F Avivi-Ragolski, N. see Gorbunova, V Camara, B. see Rosati, C Campbell, S. see Vinti, G Baba, T. see Hase, Y Castilho, A. see Abranches, R Backhaus, R.A. see Bouvier, F Ceriotti, A. see Sparvoli, F Bagnaresi, P._, Mazars-Marty, D., Pupillo, P., Marty, F. and Chan, J. see Barroso, C Briat, J.-F. Tonoplast subcellular localization of maize Chandler, J. see Borner, R cytochrome bs reductases 645 Chang, K.S., Lee, S.H., Hwang, S.B. and Park, K.Y Balague, C. see Godard, F Characterization and translational regulation of the arginine Bao, F. see Hu, Y decarboxylase gene in carnation (Dianthus caryophylius L 45 Barroso, C., Chan, J., Allan, V., Doonan, J., Hussey, P. and Chatfield, S.P., Stirnberg, P., Forde, B.G. and Leyser, O. The Lloyd,C. Two kinesin-related proteins associated with the hormonal regulation of axillary bud t cold-stable cytoskeleton of carrot cells: characterization of a Arabidopsis 159 novel kinesin, DcKRP120-2 859 Chauhan, S., Forsthoefel, N., Ran, Y Nelson, D.E. and Bauer, C.S., Hoth, S., Haga, K., Philippar, K., Aoki, N. and Bohnert, H.J. Na*/myo-inositol syr antiport Hedrich,R. Differential expression and regulation of K* channels in Mesembryanthemum crystal! in the maize coleoptile: molecular and biophysical analysis of Chen, Z. see Du, L cells isolated from cortex and vasculature 139 Chételat, A. see Vollenweider, S Baur, B. see Hausler, R.E Chevalier see Marin-Olivier, M Bechtold, N. see Sarrobert, C Chory, J. see Vinti, G Bechtold, N. see Sherson, S.M Christou, P. see Abranches, R Beck, C.F. see Kropat, J Chua, N.-H. see Zuo, J Bernier, G. see Bonhomme, F Clark, G.B. see Hu, S Besenbeck, R. see Meyer, S Clarke, A., Desikan, R., Hurst, R.D., Hancock T. and Neill, S.J Bhalerao, R.P. see Yamaguchi, M NO way back: nitric oxide and programmed cell death in Blatt, M.R. see Leyman, B Arabidopsis thaliana suspension cultures 667 Blumwald, E. see Snedden, W.A Contard-David, P. see Sarrobert, C Bogucki, A. see Hanin, M Creemers-Molenaar, T. see Ge, Y.-x Bohnert, H.J. see Chauhan, S Criqui, M.C., Parmentier, Y., Derevier, A., Shen, W.-H., Dong, A Bollini, R. see Sparvoli, F and Genschik, P. Cell cycle-dependent olysis and ectopic Bonhomme, F., Kurz, B., Meizer, S., Bernier, G. and Jacqmard, A overexpression of cyclin B1 in tobac« 2 cells 763 Cytokinin and gibberellin activate SaMADS A, a gene Crouch, N.P. see Irmier, S apparently involved in the regulation of the floral transition in Cui, J. see Dewdney, J Sinapis alba 103 Cushman, J.C. see Patharkar, O.R Borner, R., Kampmann, G., Chandler, J., GleiBner, R., Wisman, E Apel, K. and Melzer, S. A MADS domain gene involved in the d'Harlingue, A. see Bouvier, F transition to flowering in Arabidopsis 591 Dahihaus, E. see Ge, Y.-X Bouché, N. see Sunkar, R Daminati, M.G. see Sparvoli, F Bouchez, D. see Sunkar, R Davies, H.V. see Taylor, M.A 2000 Blackwell Science Ltd 906 Author index de la Pena, A. see Martin, A.C Fromm, H. see Sunkar, R De Roover, J. see Van den Ende, W Fujisawa, M. see Okada, S de Wit, P.J.G.M. see Takken, F.L.W Fukuzawa, H. see Okada, S Deak, M. see Oberschall, A. Furbank, R. see Hurry, V del Pozo, J.C. see Martin, A.C. Fuse, T. see Horiguchi, G Derevier, A. see Criqui, M.C Desikan, R. see Clarke, A Gabriéls, S.H.E.J. see Takken, F.L.W Dessi, P., Rudhe, C. and Glaser, E. Studies on the topology of the Gaude, T. see Marin-Olivier, M protein import channel in relation to the plant mitochondrial Ge, Y.-X., Angenent, G.C., Wittich, P.E., Peters, J., Franken processing peptidase integrated into the cytochrome bc, Busscher, M., Zhang, L.-M., Dahihaus, E., Kater, M.M complex 637 Wullems, G.J. and Creemers-Molenaar, T. NEC1, a novel Devoto, A. see Dewdney, J. gene, highly expressed in nectary tissue of Petunia Dewdney, J., Reuber, T.L., Wildermuth, M.C., Devoto, A., Cui, J., hybrida 725 Stutius, L.M., Drummond, E.P. and Ausubel, F.M. Three unique Geelen, D. see Leyman, B mutants of Arabidopsis identify eds loci required for limiting Genschik, P. see Criqui, M.C growth of a biotrophic fungal pathogen 205 Germain, V. see Sherson, S.M Dharmapuri, S. see Rosati, C Giedt, C.D. and Weil, C.F. The maize LAG1-O mutant suggests that Ditta, G.S. see Alvarez-Buylla, E.R reproductive cell lineages show unique gene expression Dolev, D. see Sunkar, R patterns early in vegetative development 815 Dong, A. see Criqui, M.C Gilmartin, P.M. see Urwin, P Doonan, J. see Barroso, C Gilmer, S. see Wang, H Drummond, E.P. see Dewdney, J Gineste, S. see Sarrobert, C Du, L. and Chen, Z. Identification of genes encoding receptor-like Giuliano, G. see Rosati, C protein kinases as possible targets of pathogen- and salicylic Glaser, E. see Dessi, P acid-induced WRKY DNA-binding proteins in Arabidopsis 837 GleiBner, R. see Borner, R Dudits, D. see Oberschall, A Godard, F., Lummerzheim, M., Saindrenan, P., Balagué, C. and Dudler, R. see Schweizer, P Roby, D. hxc2, an Arabidopsis mutant with an altered Dumas, C. see Marin-Olivier, M hypersensitive response to Xanthomonas campestris pv Duncan, G. see Taylor, M.A campestris 749 Gold, S.E. see Alvarez-Buylla, E.R Ehtesham, N.Z. see Pham, X.H Golombek, S. see Weber, H Eicks, M. see Hausler, R.E Gorbunova, V., Avivi-Ragolski, N., Shalev, G., Kovalchuk Ellerstrom, M. see Ezcurra, | Abbo, S., Hohn, B. and Levy, A A A new hyperrecombinogeni Ezcurra, |., Wycliffe, P., Nehlin, L., Ellerstr6m, M. and Rask, L mutant of Nicotiana tabacum 60 7 Transactivation of the Brassica napus napin promoter by ABI3 Grant, J.J., Yun, B.-W. and Loake, G.J. Oxidative burst and requires interaction of the conserved B2 and B3 domains of cognate redox signalling reported by luciferase imaging ABI3 with different cis-elements: B2 mediates activation identification of a signal network that functions independently through an ABRE, whereas B3 interacts with an RY/G-box 57 of ethylene, SA and Me-JA but is dependent on MAPKK activity 569 Fabian, T. see Yamaguchi, M Gregan, J. see Schock Faoro, F. see Sparvoli, F Gruissem, W. see Rodriguez-C Farmer, E.E. see Vollenweider, S Gubatz, S. see Weber, H Feher, A. see Oberschall, A. Felle, H.H., Hanstein, S., Steinmeyer, R. and Hedrich, R.D ynamics Haga, K. see Bauer, C.S of ionic activities in the apoplast of the sub-stomatal cavity of Haley, A. see Wood, N.T intact Vicia faba leaves during stomatal closure evoked by ABA Hall, M. see Turner, S.R and darkness 297 Hamada, S., Onouchi, H., Tanaka, H., Kudo, M., Liu, Y.-G Finnemann, J. and Schjoerring, J.K. Post-translational regulation Shibata, D., Machida, C. and Machida, Y. Mutations in the of cytosolic glutamine synthetase by reversible WUSCHEL gene of Arabidopsis thaliana result in the phosphorylation and 14-3-3 protein interaction 171 development of shoot without juvenile leaves 91 Fischer, K. see Hausler, R.E. Hancock, J.T. see Clarke, A Fischer, K.L. see Hausler, R.E Hanin, M., Mengiste, T., Bogucki, A. and Paszkowski, J. Elevated Fliigge, U.-l. see Hausler, R.E levels of intrachromosomal homologous recombinatior Fobis-Loisy, |. see Marin-Olivier, M Arabidopsis overexpressing the MiMgene_ 183 Forbes, S. see Sherson, S.M Hanstein, S. see Felle, H.H Forde, B.G. see Chatfield, S.P Hase, Y., Tanaka, A., Baba, T and Watanabe, H. FAL7 is r Forsthoefel, N. see Chauhan, S for petal and sepal development in Arabidopsis 21 Fowke, L.C. see Wang, H Haseloff, J. see Bougourd, S Fowler, J.E. see lvanchenko, M Hause,B ., Stenzel, |., Miersch, O., Maucher, H., Kramel Franken, J. see Ge, Y.-X Ziegler, J. and Wasternack, C. Tissue-specific oxylipin signature Fraser, P.D., Pinto, M.E.S., Holloway, D.E. and Bramley, P.M of tomato flowers: allene oxide cyclase is highly expressed ir Application of high-performance liquid chromatography with distinct flower organs and vascular bundles 113 photodiode array detection to the metabolic profiling of plant Hausler, R.E., Baur, B., Scharte, J., Teichmann, T., Eicks, M isoprenoids 551 Fischer, K.L., Fliigge, U.-l., Schubert, S., Weber, A. and Blackwell Science Ltd, The Plarit Journal, (2000), 24, 905-910 Author index 907 Fischer, K. Plastidic metabolite transporters and their Kirschner, M., Winkelhaus, S., Thierfelder, J.M. and Nover physiological functions in the inducible crassulacean acid Transient expression and heat-stress aggregatior metabolism plant Mesembryanthemum crystallinum 285 of endogenous and heterologous sn heat-stress proteins in Hayashi, T. see Ohmiya, Y tobacco protoplasts 397 Hedrich, R. see Bauer, C.S Knoop, V. see Schock, | Hedrich, R. see Felle, H.H. Kodama, H. see Horiguchi, G Heim, U. see Weber, H. Kono, K. see Okada, S Hemmann, G. see Sherson, S.M Koornneef, M. see Weller, J.1 Hills, A. see Vinti, G. Koprek, T., McElroy, D., Louwerse Hohn, B. see Gorbunova, V Lemaux, P.G. An efficient method f g Ds elements Holloway, D.E. see Fraser, P.D the barley genome as a tool for determining gene Horiguchi, G., Fuse, T., Kawakami, N., Kodama, H. and Iba, K function 253 Temperature-dependent translational regulation of the ER w-3 Kovacs, |. see Oberschall, A fatty acid desaturase gene in wheat root tips 805 Kovalchuk, |. see Gorbunova Horvath, G.V. see Oberschall, A Kovar, D.R. see Hu, S Hoth, S. see Bauer, C.S Kovar, D.R., Staiger, C.J., Weaver, E.A. and irdy, D.W. AtFim1 Hotze, M. see Irmier, S is an actin filament crosslinking protein from Arabidopsis Howell, S.H. see Mockaitis, K thaliana 625 Hu, S., Brady, S.R., Kovar, D.R., Staiger, C.J., Clark, G.B., Roux, S.J Kramell, R. see Hause, B and Muday, G.K. Identification of plant actin-binding proteins Kropat, J., Oster, U., Riidiger, W 1 Be F. Chloroplast by F-actin affinity chromatography 127 signalling in the light induct 1f nuclear HSP70 genes Hu, Y., Bao, F. and Li, J. Promotive effect of brassinosteroids on requires the accumulation of chiorop pr j rs and their cell division involves a distinct CycD3-induction pathway in accessibility to cytoplasm/nucle Arabidopsis 693 Kudo, M. see Hamada, S Hiimmer, C. see Meyer, S Kurz, B. see Bonhomme, F Hurry, V., Strand, A., Furbank, R. and Stitt, M. The role of inorganic phosphate in the development of freezing tolerance and the acclimatization of photosynthesis to low temperature is Lee, S.H. see Chang, K.S revealed by the pho mutants of Arabidopsis thaliana 383 Lemaux, P.G. see Koprek, T Hurst, R.D. see Clarke, A Levy, A.A. see Gorbunova Hussey, P. see Barroso, C Leyman, B., Geelen, D. and Blatt Hwang, S.B. see Chang, K.S expression of Nt-Syr1, a toba Leyser, O. see Chatfield, S.P Leyva, A. see Martin, AA .C Iba, K. see Horiguchi, G Li, J. see Hu, Y Ichimura, K., Mizoguchi, T., Yoshida, R., Yuasa, T. and Li, J. see Ouyang, J Shinozaki, K. Various abiotic stresses rapidly activate Liljegren, S.J. see Alvarez Arabidopsis MAP kinases ATMPK4 and ATMPK6 655 Liu, Y.-G. see Hamada, S Iglesias, J. see Martin, A.C Lloyd, C. see Barroso, C lida, A., Kazuoka, T., Torikai, S., Kikuchi, H. and Oeda, K. A zinc Loake, G.J. see Grant finger protein RHL41 mediates the light acclimatization Lopez-Juez, E. see Vint response in Arabidopsis 191 Louwerse, J. see Koprek, T irmier, S., Schréder, G., St-Pierre, B., Crouch, N.P., Hotze, M Lu, R. see Takken, F.L.W Schmidt, J., Strack, D., Matern, U. and Schréder, J. Indole Lucas, W.J. see Xoconostle-Caz alkaloid biosynthesis in Catharanthus roseus: new enzyme Luderer, R. see Takken, F.L.W activities and identification of cytochrome P450 CYP72A1 as Ludwig, A., Stolz, J. and Sauer secologanin synthase 797 mediate the transport of vitarn lvanchenko, M., Vejlupkova, Z., Quatrano, R.S. and Fowler, J.E nmerzheim, M. see Godard, F Maize ROP7 GTPase contains a unique, CaaX box-independent plasma membrane targeting signal 79 Maathuis, F.J.M. see Sunkar Machida, C. see Hamada Jacqmard, A. see Bonhomme, F Machida, Y. see Hamada Jiang, Q. see West, C.E Marin-Olivier, M., Chevalier, T., Fot Joosten, M.H.A.J. see Takken, F.L.W Gaude, T. Aquaporin PIP genes are papillae in Brassica oleracea Marrison, J. see Bougourd, S$ Kampmann, G. see Borner, R Martin, A.C., del Pozo, J.C., iglesias Kanda, T. see Ohmiya, Y Pena, A., Leyva, A. and Paz-Ares Kaplan, B. see Sunkar, R the expression of phosphate starv Kater, M.M. see Ge, Y.-X Arabidopsis 559 Kawakami, N. see Horiguchi, G Martin, H. see Urwin, P Kazuoka, T. see lida, A Martin, M.L. and Busconi, L. Membrane le n of a rice Kendrick, R.E. see Weller, J.L calcium-dependent protein kir nediated Dy Kikuchi, H. see lida, A myristoylation and paimitoyia Blackwell Science Ltd, The Plant Journal, (2000), 24, 905-910 908 Author index Marty, F. see Bagnaresi, P. Patharkar, O.R. and Cushman, J.C. A stress-induced Marusic, C. see Rosati, C. calcium-dependent protein kinase from Mesembryanthemum Matern, U. see Irmiler, S. crystallinum phosphorylates a two-component Matta, B. see Pham, X.H pseudo-response regulator 679 Maucher, H. see Hause, B. Paz-Ares, J. see Martin, A.C Mazars-Marty, D. see Bagnaresi, P. Pelaz, S. see Alvarez-Buylla, E.R McCurdy, D.W. see Kovar, D.R Peters, J. see Ge, Y.-X McElroy, D. see Koprek, T. Pham, X.H., Reddy, M.K., Ehtesham, N.Z., Matta, B. and Tuteja, N McRae, D. see Taylor, M.A. A DNA helicase from Pisum sativum is homologous to Melzer, M. see Meyer, S. translation initiation factor and stimulates topoisomerase | Meizer, S. see Bonhomme, F. activity 219 Melzer, S. see Borner, R. Philippar, K. see Bauer, C.S. Mengiste, T. see Hanin, M. Pinto, M.E.S. see Fraser, P.D. Meyer, S., Melzer, M., Truernit, E., Himmer, C., Besenbeck, R., Pokorny, J. see Schweizer, P Stadler, R. and Sauer, N. AtSUC3, a gene encoding a new Pupillo, P. see Bagnaresi, P Arabidopsis sucrose transporter, is expressed in cells adjacent to the vascular tissue and in a carpel cell layer 869 Quatrano, R.S. see lvanchenko, M Michiels, A. see Van den Ende, W. Quigley, F. see Chauhan, S Miersch, O. see Hause, B Millam, S. see Taylor, M.A. Mizoguchi, T. see Ichimura, K. Ran, Y. see Chauhan, S Mochizuki, N. see Vinti, G. Rask, L. see Ezcurra, | Mockaitis, K. and Howell, S.H. Auxin induces mitogenic activated Reddy, M.K. see Pham, X.H protein kinase (MAPK) activation in roots of Arabidopsis Reuber, T.L. see Dewdney, J seedlings 785 Robaglia, C. see Sarrobert, C Muday, G.K. see Hu, S Roberts, |. see Taylor, M.A. Roby, D. see Godard, F Rodriguez-Concepcion, M., Toledo-Ortiz, G., Yalovsky, S Nakayama, S. see Okada, S Caldelari, D. and Gruissem, W. Carboxyl-methylation of Nehlin, L. see Ezcurra, | prenylated calmodulin CaM53 is required for efficient plasma Neill, S.J. see Clarke, A. membrane targeting of the protein 775 Nelson, D.E. see Chauhan, S Rolletschek, H. see Weber, H Nishiyama, R. see Okada, S Rosati, C., Aquilani, R., Dharmapuri, S., Pallara, P., Marusic, C., Niu, Q.-W. see Zuo, J. Tavazza, R., Bouvier, F., Camara, B. and Giuliano, G. Metabolic Nover, L. see Kirschner, M. engineering of beta-carotene and lycopene content in tomato Nussaume, L. see Sarrobert, C fruit 413 Ross, H.A. see Taylor, M.A Roux, S.J. see Hu, S Oberschall, A., Deak, M., Térék, K., Sass, L., Vass, |., Kovacs, I., Rubio, V. see Martin, A.C Feheér, A., Dudits, D. and Horvath, G.V. A novel aldose/aldehyde Rudhe, C. see Dessi, P reductase protects transgenic plants against lipid peroxidation Rudiger, W. see Kropat, J under chemical and drought stresses 437 Ruiz-Medrano, R. see Xoconostle-Cazares, B Oeda, K. see lida, A Ohmiya, Y., Samejima, M., Shiroishi, M., Amano, Y., Kanda, T., Sakai, F. and Hayashi, T. Evidence that endo-1,4-f-glucanases Saindrenan, P. see Godard, F act on cellulose in suspension-cultured poplar cells 147 Sakai, F. see Ohmiya, Y Ohyama, K. see Okada, S Sakai, H., Aoyama, T. and Oka, A. Arabidopsis ARR1 and ARR2 Oka, A. see Sakai, H. response regulators operate as transcriptional activators 703 Okada, S., Fujisawa, M., Sone, T., Nakayama, S., Nishiyama, R., Sakaida, M. see Okada, S Takenaka, M., Yamaoka, S., Sakaida, M., Kono, K., Samejima, M. see Ohmiya, Y Takahama, M., Yamato, K.T., Fukuzawa, H., Brennicke, A. and Sandberg, G. see Yamaguchi, M Ohyama, K. Construction of male and female PAC genomic Sanders, D. see Sunkar, R libraries suitable for identification of Y-chromosome-specific Santos, A.P. see Abranches, R clones from the liverwort, Marchantia polymorpha 421 Sarrobert, C., Thibaud, M.-C., Contard-David, P., Gineste, S., Onouchi, H. see Hamada, S. Bechtold, N., Robaglia, C.a nd Nussaume, L. Identification of an Oster, U. see Kropat, J. Arabidopsis thaliana mutant accumulating threonine resulting Ouyang, J., Shao, X. and Li, J. Indole-3-glycerol phosphate, a from mutation in a new dihydrodipicolinate synthase branchpoint of indole-3-acetic acid biosynthesis from gene 357 tryptophan biosynthetic pathway in Arabidopsis thaliana 327 Sass, L. see Oberschall, A Sauer, N. see Ludwig, A Sauer, N. see Meyer, S Pallara, P. see Rosati, C Sauer, N. see Sherson, S.M Park, K.Y. see Chang, K.S Sauter, M. see Yamaguchi, M Parmentier, Y. see Criqui, M.C. Scharte, J. see Hausler, R.E Paszkowski, J. see Hanin, M. Schjoerring, J.K. see Finnemann, J Blackwell Science Ltd, The Plant Journal, (2000), 24, 905-910 Author index 909 Schmidt, J. see Irmier, S Takken, F.L.W., Luderer, R., Gabriéls Schock, |., Gregan, J., Steinhauser, S., Schweyen, R., Brennicke, A Lu, R., de Wit, P.J.G.M. and Jooster and Knoop, V. A member of a novel Arabidopsis thaliana gene cloning strategy, based on a binary PV family of candidate Mg** ion transporters complements a yeast isolate HR-inducing cDNAs of plant 5 mitochondrial group Il intron-splicing mutant 489 Talke, |.N. see Sunkar, R Schrader, J. see Yamaguchi, M Tanaka, A. see Hase, Y Schreuder, M.E.L. see Weller, J.L Tanaka, H. see Hamada, S Schréder, G. see Irmier, S Tavazza, R. see Rosati, C Schréder, J. see Irmier, S Taylor, M.A., Ross, H.A., McRae Schubert, S. see Hausler, R.E Duncan, G., Wright, F., Millam, S Schuize-Lefert, P. see Schweizer, P 1-glucosidase gene encodes a gly Schweizer, P., Pokorny, J., Schulze-Lefert, P. and Dudler, R 1-glucosidase Il-like activity. Den Double-stranded RNA interferes with gene function at the and effects of down-regulatior single-cell level in cereals 895 Teichmann, T. see Hausier, R.E Schweyen, R. see Schock,| Thibaud, M.-C. see Sarrobert Shalev, G. see Gorbunova, V Thierfelder, J.M. see Kirschner, M Shao, X. see Ouyang, J Toledo-Ortiz, G. see Rodriguez-( Shaw, P. see Abranches, R Torikai, S. see lida, A Shen, W.-H. see Criqui, M.C T6rdk, K. see Oberschall, A Sherson, S.M., Hemmann, G., Wallace, G., Forbes, S., Germain, V Trewavas, A.J. see Wood, N Stadler, R., Bechtold, N., Sauer, N. and Smith, S.M Truernit, E. see Meyer, S Monosaccharide/proton symporter AtSTP1 plays a major role Turner, S.R. and Hall, M in uptake and response of Arabidopsis seeds and seedlings to common regulatory ster sugars 849 Tuteja, N. see Pham, X.H Shibata, D. see Hamada, S Shinozaki, K. see Ichimura, K Uchimiya, H. see Yamagu Shiroishi, M. see Ohmiya, Y \ Jmeda, M. see Yamaguct Smith, H. see Weller, J.L Urv L., Martir Smith, S.M. see Sherson, S.M \ctlo naracterizat Snedden, W.A. and Blumwaid, E. Alternative splicing of a nove diacylglycerol kinase in tomato leads to a calmodulin-binding isoform 317 Solano, R. see Martin, A.C Sone, T. see Okada, S . es Sparvoli, F., Faoro, F., Daminati, M.G., Ceriotti, A. and Bollini, R er A Misfolding and aggregation of vacuolar glycoproteins in plant Laere, A. see Var Vas see Oberscha cells 825 Spener, F. see Abbadi, A - zane ee eee _— Stadler, R. see Meyer, S ae —_ r. aBOA — Stadler, R. see Sherson, S.M VOREEN, V. S59 VER C58 Snes Staiger, C.J. see Hu, S ps Bn Fo cay “800 Staiger, C.J. see Kovar, D.R tarp whee eerie Steinhauser, S. see Schock, | tants of Arabidopsis ear signallir Steinmeyer, R. see Felle, H.H Moussaid, M. see We Stenzel, |. see Hause, B Stewart, D. see Taylor, M.A 7 enweider. S.. WA eber. H Stirnberg, P. see Chatfield, S.P reRy Scie Netocenes af Stitt, M. see Hurry, V vaherup sedge Stoger, E. see Abranches, R — —— Stolz, J. see Ludwig, A Sohneer s< Stolz, S. see Vollenweider, S St-Pierre, B. see Irmier, S » pla nlant Strack, D. see irmier, S Strand, A. see Hurry, V pia see Mause Stutius, L.M. see Dewdney, J H. see Hase Suire, C. see Bouvier, F Sunkar, R., Kaplan, B., Bouché, N., Arazi, T., Dolev, D., Talke EA. see Kovar Maathuis, F.J.M., Sanders, D., Bouchez, D. and Fromm, H see Hausler, R.E Expression of a truncated tobacco NtCBP4 channel ir see Vollenweider transgenic plants and disruption of the homologous Rolletschek, H.. Heir Arabidopsis CNGC1 gene confer Pb** tolerance 533 J. Antisense-inhibit pyrophosphorylase in developir Takahama, M. see Okada, S moderately decreases starch t Takenaka, M. see Okada, S affects seed maturation 33 Blackwell Science Ltd, The Plant Journal, (2000), 24, 905-910 910 Author index Wegel, E. see Abranches, R Xoconostle-Cazares, B., Ruiz-Medrano, R. and Lucas, W.J Weil, C.F. see Giedt, C.D. Proteolytic processing of CmPP36, a protein from the Weller, J.L., Schreuder, M.E.L., Smith, H., Koornneef, M. and cytochrome bz reductase family, is required for entry into the Kendrick, R.E. Physiological interactions of phytochromes A, B1 phloem translocation pathway 735 and B2 in the control of development in tomato 345 West, C.E., Waterworth, W.M., Jiang, Q. and Bray, C.M Yalovsky, S. see Rodriguez-Concepciéon, M Arabidopsis DNA ligase IV is induced by y-irradiation and Yamaguchi, M., Fabian, T., Sauter, M., Bhalerao, R.P., Schrader, J interacts with an Arabidopsis homologue of the double strand Sandberg, G., Umeda, M. and Uchimiya, H. Activation of break repair protein XRCC4 67 CDK-activating kinase is dependent on interaction with H-type Westerink, N. see Takken, F.L.W cyclins in plants 11 Whitwill, S. see Wang, H. Yamaoka, S. see Okada, S Wildermuth, M.C. see Dewdney, J Yamato, K.T. see Okada, S Williams, S. see Abranches, R. Yanofsky, M.F. see Alvarez-Buylla, E.R Williams-Carrier, R. see Koprek, T Yi, L. see Urwin, P Winkelhaus, S. see Kirschner, M Yoshida, R. see Ichimura, K Wisman, E. see Borner, R Yuasa, T. see Ichimura, K Wittich, P.E. see Ge, Y.-X Yun, B.-W. see Grant, J.J Wobus, U. see Weber, H. Wood, N.T., Allan, A.C., Haley, A., Viry-Moussaid, M. and Zhang, L.-M. see Ge, Y.-X Trewavas, A.J. The characterization of differential calcium Zhou, Y. see Wang, H signalling in tobacco guard cells 335 Ziegler, J. see Hause, B Wright, F. see Taylor, M.A Zuo, J., Niu, Q.-W. and Chua, N.-H. An estrogen receptor-based Wullems, G.J. see Ge, Y.-X transactivator XVE mediates highly inducible gene expression Wycliffe, P. see Ezcurra, | in transgenic plants 265 Blackwell Science Ltd, The Plant Journal, (2000), 24, 905-910 The Plant Journal (2000) 24(6), 911-914 Subject index a-glucosidase 305 cell cycle 11, 763 a-linolenic acid 805 cell death 477 ABA 57, 297, 335, 369 cell differentiation 33 ABI3 57 cell division 613, 693 abiotic stress 679 cell size 613 abiotic stress (salt, wounding) 369 cell-to-cell trafficking 735 ABRE 57 cellular architecture 543 abscisic acid 159 cellulose 147 Ac 815 cGMP 667 Actransposase 253 chlorophyll precursor pools 523 actin cytoskeleton 127 chromatin organization 713 actin filament crosslinking 625 Cichorium intybus 447 ADP-glucose pyrophosphorylase 33 Cladosporium fulvum 275 AGL20 591 cold acclimatization 383 Agrobacterium tumefaciens 275 cold shock 335 aldo-keto reductase 437 complementation cloning 503 allene oxide cyclase 113 confocal microscopy 543, 713 aniline blue 543 Cucurbita maxima 735 annexin 127 Cuphea 1 anther stomium 725 CycD3 693 anthocyanin 895 cyclic nucleotides 533 antisense 305, 413 cyclin 763 antisense RNA 327 cyclin-dependent protein kinase apical dominance 159 cyclinH 11 apoplast 297 cytochrome bs reductase 35 aquaporin 231 cytochrome P450 797 Arabidopsis 21, 205, 357, 383, 457, 467, 477, 489, 503, 511, 559 cytokinin 103, 159, 559 591, 625, 837 cytoskeleton 625 Arabidopsis thaliana 91, 103, 183, 327, 543, 613, 693, 749, 849 cytosol 241 arginine decarboxylase 45 aspartate 357 3D visualization 543 AtFim1 625 Dbox 763 auxin 147, 159 DEAD-box protein 219 auxin-activated gene expression 785 de-etiolation 345 auxin response mutants 785 defence-related 895 auxin transport 127 defense response 205 detoxification 437 bs reductase 645 DHDPS 357 barley 253, 895 liacyiglycero!l 317 be, complex 637 dioecious plant 421 BimC 859 disease susceptibility 205 biotin transport 503 diurnal cycle 285 Bilumeria graminis 895 DNA binding 703 Brassica 231 DNA repair 67, 183 Brassica napus Ll. 171, 725 DNA replication 219 brassinosteroid 693 drought tolerance 437 BRCT domain 67 Ds-transposition 253 bud growth 159 elicitor 275 calcium 533, 679 embryo 543 calcium-dependent protein kinase 429, 679 encephalomyocarditis virus (ECMV) 583 calcium signalling 335 endo, 1-4--glucanase 147 calmodulin 317, 775 endomembrane 775 CAM 285 endoplasmic reticulum 825 CaM53 775 endo-reduplication 21 carnation 45 endosperm 457 carrot cells 859 epidermal strips 335 caspase 667 Erysiphe orontii 205 Catharanthus roseus 797 estradiol-inducible 265 CDK-activating kinase 11 estrogen receptor 265 CDK inhibitor 613 ethylene 159 2000 Blackwell Science Ltd 912 Subject index exocytosis 369 K* channel 139 exporter 869 3-ketoacyl-ACP synthase Ill 1 expression 503, 869 kinesin-like protein 859 knockout mutant 533 F-actin affinity chromatography 127 fatty acid synthase 1 leaf identity 91 1-FEH 447 legume seed development 33 fimbrin/plastin 625 LexA 265 FISH 713 lignin 477 floral induction 591 lipid 467, 805 floral signal 103 lipid peroxidation 437 flower 21 localization signal 79 fluorescence in situ hybridization (FISH) 421 loganin 797 frit 21 low temperature 383, 655, 805 fructan breakdown 447 lycopene beta-cyclase 413 function 583 lysine 357 functional genomics 253 MADS box 591, 457 gene expression 265 magnesium homeostasis 489 gene family 489 maize coleoptile 139 gene tagging 253 maize 79, 645 gene targeting 601 MALDI-TOF 447 geranyl diphosphate synthase 241 malonaldehyde 467 germination 849 MAP kinase 655, 667 GFP 79 Marchantia polymorpha 421 gibberellin 103 mechanical 335 glucose transporter 285 medium-chain fatty acids 1 glucosidase |i 305 MEK inhibitor 785 glutamine synthetase 171 membrane localization 429 glycoprotein processing 305 meristem 815 glycosylation 825 Mesembryanthemum 511 group Il intron splicing cofactors 489 Mesembryanthemum crystallinum 285, 679 guard cells 335, 457 metabolic profiling 551 gun mutants 883 metabolic regulation 33 metal reductase 645 heat-stress granules 397 Michael addition 467 heavy metals 533 micro-injection 625 high light acclimatization 191 microtubule-associated proteins (MAPs) 859 high-performance liquid chromatography 551 MIM 183 homologous recombination 183 mitochondrial processing peptidase 637 hormone signaling 785 Mio 895 HSP70 light induction 523 monosaccharide transporter 849 hy? mutant 883 monoterpene compartmentation 241 hyper-osmolarity 655 mutant 205, 345, 357, 477, 749, 849 hyperrecombinogenic mutants 601 Myb 703 hypersensitive response 275, 569, 749 myristoylation 429 |AA biosynthesis 327 naphthylphthalamic acid 127 in situ RT-PCR 735 napin 57 indole 327 NEC1 gene 725 indole acetic acid 785 nectar secretion 725 indole alkaloids 797 nectary 725 indole-3-glycerol phosphate 327 Nicotiana 369 insertional mutagen 253 Nicotiana tabacum 601 internal ribosome entry site (IRES) 583 nitric oxide 667 intracellular communication 883 nitrogen remobilization 171 intracellular transport 825 non-homologous end joining 67 inulin 447 ion channel 533 @-3 fatty acid desaturase 805 ion-selective micro-electrodes 297 organ development 21 isoprenoids 551 overexpression 413 ovules 113 jam mutant 91 oxidative burst 569 jasmonates 113 oxylipin 467 juvenile leaves 91 oxylipin signature 113 © Blackwell Science Ltd, The Plant Journal, (2000), 24, 911-914 Subject index PAC libraries 421 SaMADS A 103 palisade parenchyma formation 191 secologanin 797 palmitoylation 429 secondary cell wall 477 petal 21 secretory tissue 241 Petunia hybrida 725 seed storage proteins 825 Phaseolus lunatus 825 seedling growth 849 phiocem 869 sex chromosomes 421 phioem proteins 735 SH4 domain 429 PHO1 559 shade avoidance 345 phosphate 383 shoot apical meristem 91 phosphate starvation 559 signal transduction 317, 569, 693 phosphate translocators 285 Sinapis alba 103 phosphorylation 655 sodium/myo-inositol symport 511 photomorphogenesis 345 solanaceous plants 275 photoperiod 591 Solanum lycopersicum 345 photoreceptor 345 splicing 317 photosynthesis 383 starch 33 phytochrome 883 starch metabolism 285 pigment composition 191 stigma papillae 231 PIP 231 stomata 297 plant cytoskeleton 859 storage proteins 33 plant cytosolic small Hsps 397 stress resistance 437 plant defense 837 stress stimuli 785 plant development 613 stress tolerance 191 plant disease resistance 569 subcellular targeting 645 plant DNA helicase 219 sucrose 147 plant growth 613 sucrose synthesis 383 plant mitochondria 637 sucrose transport plant-pathogen interactions 205 sucrose transporter plasma membrane 79, 369, 775 sugar response 849 plastid 241 sugar sensing 869 plastid factor 523 susceptibility 749 plastid signal 883 syntaxin 369 pollen hydration 231 pollutant 467 poplar 11 targeting 429, 775 Populus alba 147 T-DNA 533 potato 305 tetrapyrrole 883 prenylated 775 threonine 357 prenylation 79 tissue-specific expression 797 presequence 637 tobacco 583, 591, 763 processing 45 tobacco protoplasts 397 programmed cell death 667 tomato 317 promoter 57 tomato (Lycopersicon esculentur protein import 637 tonoplast 645 14-3-3 protein interaction 171 topoisomerase | 219 protein interaction 397 touch 655 proteolysis 763 transcript leader 45 proton block 139 transcription 57 transcription factor 275, 703 rapeseed 1 transgene integration 713 reactive oxygen species 667 transgenic 305 receptor-like protein kinases 837 transgenic plants 191, 265 recombination 601 transgenic wheat 713 regulation 1, 171, 815 translation 583 resistance 749 translation initiation factor 219 response regulator 703 translational regulation 805 reversible phosphorylation 171 translocation intermediate 637 riboregulators 559 transposon 815 rice 11 trichome 457 root 457 tryptophan 327 Rop GTPase 79 tunicamycin 825 salicylic acid 837 two-component pseudo-response regulator 679 salinity stress 511 two-component regulatory system 703 > Blackwell Science Ltd, The Plant Journal, (2000), 24, 911-914 914 Subject index ubiquitin 763 Xanthomonas campestris pv. campestris 749 unwinding enzyme 219 xylem 477 uORF 45 xyloglucan 147 vascular bundies 113 Y-chromosome-specific clone 421 vegetative phase change 91 yeast complementation 489 Vicia faba 297 yeast two-hybrid system 397, 679 viral movement protein 735 vitamin H 503 zinc finger protein 191 voltage independent 139 wheat 805, 895 wounding 655 WRKY proteins 837 © Blackwell Science Ltd, The Plant Journal, (2000), 24, 911-914

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