Oligogalacturonide-induced changes in the developmental pattern of Daucus carota L. somatic embryos
暂无分享,去创建一个
[1] G. Scherer. Secondary messengers and phospholipase A2 in auxin signal transduction , 2002, Plant Molecular Biology.
[2] N. Graham,et al. Auxin cross-talk: integration of signalling pathways to control plant development. , 2002 .
[3] G. De Lorenzo,et al. Oligogalacturonides inhibit the induction of late but not of early auxin-responsive genes in tobacco , 2002, Planta.
[4] Clément Thomas,et al. Immuno-cytochemical localization of indole-3-acetic acid during induction of somatic embryogenesis in cultured sunflower embryos , 2002, Planta.
[5] H. V. Van Onckelen,et al. hoc: An Arabidopsis mutant overproducing cytokinins and expressing high in vitro organogenic capacity. , 2002, The Plant journal : for cell and molecular biology.
[6] C. Bowler,et al. The role of calcium in oligogalacturonide-activated signalling in soybean cells , 2002, Planta.
[7] T. Laux,et al. Somatic embryogenesis from Arabidopsis shoot apical meristem mutants , 2002, Planta.
[8] Shibo Zhang,et al. Similarity of expression patterns of knotted1 and ZmLEC1 during somatic and zygotic embryogenesis in maize (Zea mays L.) , 2002, Planta.
[9] P. Bozhkov,et al. A key developmental switch during Norway spruce somatic embryogenesis is induced by withdrawal of growth regulators and is associated with cell death and extracellular acidification. , 2002, Biotechnology and bioengineering.
[10] T. J. Cooke,et al. An auxin surge following fertilization in carrots: a mechanism for regulating plant totipotency , 2002, Planta.
[11] C. Helliwell,et al. The Arabidopsis AMP1 Gene Encodes a Putative Glutamate Carboxypeptidase , 2001, The Plant Cell Online.
[12] B. Ridley,et al. Pectins: structure, biosynthesis, and oligogalacturonide-related signaling. , 2001, Phytochemistry.
[13] P. Label,et al. Plant growth regulator levels during maturation of larch somatic embryos , 2001 .
[14] G. Jürgens,et al. Is there a role for auxin in early embryogenesis? , 2000, Plant Growth Regulation.
[15] E. Dennis,et al. Cytokinin synthesis is higher in the Arabidopsis amp1 mutant , 2000, Plant Growth Regulation.
[16] V. S. Anil,et al. Calcium-mediated signaling during sandalwood somatic embryogenesis. Role for exogenous calcium as second messenger. , 2000, Plant physiology.
[17] G. De Lorenzo,et al. Extracellular H(2)O(2) induced by oligogalacturonides is not involved in the inhibition of the auxin-regulated rolB gene expression in tobacco leaf explants. , 2000, Plant physiology.
[18] G. Jürgens,et al. Coordinated polar localization of auxin efflux carrier PIN1 by GNOM ARF GEF. , 1999, Science.
[19] L. Mcintosh,et al. The alternative oxidase lowers mitochondrial reactive oxygen production in plant cells. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[20] E. T. Palva,et al. Oligogalacturonide-mediated induction of a gene involved in jasmonic acid synthesis in response to the cell-wall-degrading enzymes of the plant pathogen Erwinia carotovora. , 1999, Molecular plant-microbe interactions : MPMI.
[21] T. Boller,et al. Transgenic aequorin monitors cytosolic calcium transients in soybean cells challenged with β-glucan or chitin elicitors , 1999, Planta.
[22] P. Albersheim,et al. The transient nature of the oligogalaturonide‐induced ion fluxes of tobacco cells is not correlated with fragmentation of the oligogalacturonides , 1998 .
[23] S. Simpson,et al. Short chain oligogalacturonides induce ethylene production and expression of the gene encoding aminocyclopropane 1-carboxylic acid oxidase in tomato plants. , 1998, Glycobiology.
[24] J. Knox,et al. Stage-specific responses of embryogenic carrot cell suspension cultures to arabinogalactan protein-binding β-glucosyl Yariv reagent , 1998, Planta.
[25] P. Albersheim,et al. Biological activity of reducing-end-derivatized oligogalacturonides in tobacco tissue cultures. , 1998, Plant physiology.
[26] G. De Lorenzo,et al. Oligogalacturonides stimulate pericycle cell wall thickening and cell divisions leading to stoma formation in tobacco leaf explants , 1998, Planta.
[27] G. Neuhaus,et al. Auxin-induced developmental patterns in Brassica juncea embryos. , 1998, Development.
[28] M. Kreis,et al. REVIEW ARTICLE Zygotic embryogenesis versus somatic embryogenesis , 1997 .
[29] Jeff Schell,et al. Cell signalling by oligosaccharides , 1997 .
[30] T. J. Cooke,et al. The Effects of Exogenous Auxins on Endogenous Indole-3-Acetic Acid Metabolism (The Implications for Carrot Somatic Embryogenesis) , 1996, Plant physiology.
[31] D. Wettstein,et al. Digalacturonates from pectin degradation induce tissue responses against potato soft rot , 1996 .
[32] C. Gatz,et al. Oligogalacturonides Prevent Rhizogenesis in rolB-Transformed Tobacco Explants by Inhibiting Auxin-Induced Expression of the rolB Gene. , 1996, The Plant cell.
[33] S. Fry,et al. The longevity of biologically-active oligogalacturonides in rose cell cultures: degradation by exo-polygalacturonase , 1995 .
[34] F. Guzzo,et al. A stage-specific block is produced in carrot somatic embryos by 1,2-benzisoxazole-3-acetic acid , 1995 .
[35] R Marsault,et al. Transfected Aequorin in the Measurement of Cytosolic Ca2+ Concentration ([Ca2+]c) , 1995, The Journal of Biological Chemistry.
[36] M. Hahn,et al. Oligosaccharins: structures and signal transduction , 1994, Plant Molecular Biology.
[37] E. Dennis,et al. amp1 ‐ a mutant with high cytokinin levels and altered embryonic pattern, faster vegetative growth, constitutive photomorphogenesis and precocious flowering , 1993 .
[38] P. Albersheim,et al. Oligogalacturonides inhibit the formation of roots on tobacco explants , 1993 .
[39] G. Hagen,et al. Altered morphology in transgenic tobacco plants that overproduce cytokinins in specific tissues and organs. , 1992, Developmental biology.
[40] T. Moloshok,et al. Oligouronide signaling of proteinase inhibitor genes in plants: structure-activity relationships of Di- and trigalacturonic acids and their derivatives. , 1992, Archives of biochemistry and biophysics.
[41] T. J. Cooke,et al. Auxin levels at different stages of carrot somatic embryogenesis , 1992 .
[42] P. Albersheim,et al. Oligogalacturonides are able to induce flowers to form on tobacco explants , 1991 .
[43] M. Jansen,et al. Calcium increases the yield of somatic embryos in carrot embryogenic suspension cultures , 1990, Plant Cell Reports.
[44] F. Cervone,et al. Competitive inhibition of the auxin‐induced elongation by α‐D‐oligogalacturonides in pea stem segments , 1988 .
[45] Z. R. Sung,et al. Mechanisms of plant embryo development. , 2000, Current topics in developmental biology.
[46] J. Dumville,et al. Uronic acid-containing oligosaccharins : Their biosynthesis, degradation and signalling roles in non-diseased plant tissues , 2000 .
[47] B. Dumas,et al. Cell wall degrading enzymes, inhibitory proteins, and oligosaccharides participate in the molecular dialogue between plants and pathogens , 2000 .
[48] M. Kreis,et al. Zygotic embryogenesis versus somatic embryogenesis , 1997 .
[49] S. Fry,et al. Upper limits for endogenous oligogalacturonides and free galacturonic acid in rose cell-suspension cultures: Implications for the action of Exo- and Endo-polygalacturonases in vivo , 1997 .
[50] R. Forrest,et al. Extracellular Accumulation of an Auxin-Regulated Protein in Phaseolus Vulgaris L. Cells is Inhibited by Oligogalacturonides , 1995 .
[51] P. Overvoorde,et al. The Role of Calcium and Calmodulin in Carrot Somatic Embryogenesis , 1994 .
[52] S. Wolff. [18] Ferrous ion oxidation in presence of ferric ion indicator xylenol orange for measurement of hydroperoxides , 1994 .
[53] C. M. Karssen,et al. Progress in Plant Growth Regulation , 1992, Current Plant Science and Biotechnology in Agriculture.
[54] F. Filippini,et al. Phytoalexin elicitor-active α-1,4-D-oligogalacturonides reduce auxin perception by plant cells and tissues , 1992 .