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4 Jonak C., Páy A., Bögre L., Hirt H. and Heberle-Bors E. (1993) The plant homolog of MAP kinase is expressed in a cell cycle-dependent and organ specific manner. Plant J. 3: 611-617
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MMK2, a novel alfalfa MAP kinase, specifically complements the yeast MPK1 function
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5 Jonak C., Kiegerl S., Lloyd C., Chan J. and Hirt H. (1995) MMK2, a novel alfalfa MAP kinase, specifically complements the yeast MPK1 function. Mol. Gen. Genet. 248: 686-694
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6 Jonak C., Kiegerl S., Ligterink W., Barker P. J., Huskisson N. S. and Hirt H. (1996) Stress signalling in plants: a MAP kinase pathway is activated by cold and drought. Proc. Natl. Acad. Sci. USA 93: 11274-11279
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Characterization of two cDNAs that encode MAP kinase homologues in Arabidopsis thaliana and analysis of the possible role of auxin in activating such kinase activities in cultured cells
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8 Mizoguchi T., Gotoh Y., Nishida E., Yamaguchi-Shinozaki K., Hayashida N., Iwasaki T. et al. (1994) Characterization of two cDNAs that encode MAP kinase homologues in Arabidopsis thaliana and analysis of the possible role of auxin in activating such kinase activities in cultured cells, Plant J. 5: 111-122
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Giberellin-regulaled expression in oat aleurone cells of two kinases that show homology to MAP kinase and a ribosomal protein kinase
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9 Huttly A. and Phillips A. L. (1995) Giberellin-regulaled expression in oat aleurone cells of two kinases that show homology to MAP kinase and a ribosomal protein kinase. Plant Mol. Biol. 27: 1043-1052
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10 Ligterink W., Kroj T., zur Nieden U., Hirt H. and Scheel D. (1997) Receptor-mediated activation of a MAP kinase in pathogen defense of plants. Science 276: 2054-2057
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Molecular cloning and expression of a MAP kinase homologue from pea
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11 Stafstrom J. P., Altschuler M. and Anderson D. H. (1993) Molecular cloning and expression of a MAP kinase homologue from pea. Plant Mol. Biol. 22: 83-90
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A homolog of the MAP/ERK family of protein kinase genes is expressed in vegetative and in female reproductive organs of Petunia hybrida
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12 Decroocq-Ferrant V., Decroocq S., vanWent J., Schmidt E. and Kreis M. (1995) A homolog of the MAP/ERK family of protein kinase genes is expressed in vegetative and in female reproductive organs of Petunia hybrida. Plant Mol. Biol. 27: 339-350
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Isolation and characterization of a tobacco cDNA clone encoding a putative MAP kinase
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13 Wilson C., Eller N., Gartner A., Vicente O. and Heberle-Bors E. (1993) Isolation and characterization of a tobacco cDNA clone encoding a putative MAP kinase. Plant Mol. Biol. 23: 543-551
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Tobacco MAP kinase: A possible mediator in wound signal transduction pathways
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14 Seo S., Okamoto M., Seto H., Ishizuka K., Sano H. and Ohashi Y. (1995) Tobacco MAP kinase: a possible mediator in wound signal transduction pathways. Science 270: 1988-1992
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15 Wilson C., Anglmayer R., Vicente O. and Heberle-Bors E. (1995) Molecular cloning, functional expression in Escherichia coli and characterization of multiple mitogen-activated-protein kinases from tobacco. Eur. J. Biochem. 233: 249-257
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Salicylic acid activates a 48 kD MAP kinase in tobacco
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16 Zhang S. and Klessig D. F. (1997) Salicylic acid activates a 48 kD MAP kinase in tobacco. Plant Cell 9: 809-824
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A gene encoding a mitogen-activated protein kinase kinase kinase is induced simultaneously with genes for a mitogen-activated protein kinase and S6 ribosomal protein kinase by touch, cold, and water stress in Arabidopsis thaliana
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17 Mizoguchi T., Irie K., Hirayama T., Hayashida N., Yamaguchi-Shinozaki K., Matsumoto K. et al. (1996) A gene encoding a mitogen-activated protein kinase kinase kinase is induced simultaneously with genes for a mitogen-activated protein kinase and S6 ribosomal protein kinase by touch, cold, and water stress in Arabidopsis thaliana. Proc. Natl. Acad. Sci. USA 93: 765-769
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A developmentally regulated MAP kinase activated by hydration in tobacco pollen
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19 Wilson C., Voronin V., Touraev A., Vicente O. and Heberle-Bors E. (1997) A developmentally regulated MAP kinase activated by hydration in tobacco pollen. Plant Cell 9: 2093-2100
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The Pisum saticum MAP kinase homologue (PsMAPK) rescues the Saccharomyces cerevisiae hogl deletion mutant under conditions of high osmotic stress
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20 Pöpping B., Gibbons T. and Watson M. D. (1996) The Pisum saticum MAP kinase homologue (PsMAPK) rescues the Saccharomyces cerevisiae hogl deletion mutant under conditions of high osmotic stress. Plant Mol. Biol. 31: 355-363
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Cutting activates a 46-kilodalton protein kinase in plants
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21 Usami S., Banno H., Ito Y., Nishimama R. and Machida. Y. (1995) Cutting activates a 46-kilodalton protein kinase in plants. Proc. Natl. Acad. Sci. USA 92: 8660-8664
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22
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Myelin basic protein kinase activity in tomato leaves is induced systemically by wounding and increases in response to systemin and oligosaccharide elicitors
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22 Stratmann J. W. and Ryan C. A. (1997) Myelin basic protein kinase activity in tomato leaves is induced systemically by wounding and increases in response to systemin and oligosaccharide elicitors. Proc. Natl. Acad. Sci. USA 94: 11085-11089
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23
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Wounding induces the rapid and transient activation of a specific MAP kinase pathway
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23 Bögre L., Ligterink W., Meskiene I., Barker P. J., Heberle-Bors E., Huskisson N. S. et al. (1997) Wounding induces the rapid and transient activation of a specific MAP kinase pathway. Plant Cell 9: 75-83
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MP2C, a plant protein phosphatase 2C; functions as a negative regulator of mitogen-activated protein kinase pathways in yeast and plants
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24 Meskiene I., Bögre L., Glaser W., Balog J., Brandstötter M., Zwerger K. et al. (1998) MP2C, a plant protein phosphatase 2C; functions as a negative regulator of mitogen-activated protein kinase pathways in yeast and plants. Proc. Natl. Acad. Sci. USA 95: 1938-1943
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Fungal elicitor triggers rapid, transient and specific protein phosphorylation in parsley cell suspension cultures
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Rapid changes of protein phosphorylation are involved in transduction of the elicitor signal in plant cells
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Transient activation and tyrosine phosphorylation of a protein kinase in tobacco cells treated with fungal elicitor
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27 Suzuki K. and Shinshi H. (1995) Transient activation and tyrosine phosphorylation of a protein kinase in tobacco cells treated with fungal elicitor. Plant Cell 7: 639-647
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Activation of the tobacco SIP kinase by both a cell wall-derived carbohydrate elicitor and purified proteinaceous elicitins from Phythophthora spp
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28 Zhang S., Du H. and Klessig D. F. (1998) Activation of the tobacco SIP kinase by both a cell wall-derived carbohydrate elicitor and purified proteinaceous elicitins from Phythophthora spp. Plant Cell 10: 435-449
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Rapid and transient activation of a myelin basic protein kinase in tobacco leaves treated with harpin from Erwinia amylocora
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30 Adam A. L., Pike S., Hoyos M. E., Stone J. M., Walker J. C. and Novacky A. (1997) Rapid and transient activation of a myelin basic protein kinase in tobacco leaves treated with harpin from Erwinia amylocora. Plant Physiol. 115: 853-861
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Abscisic acid induces mitogen-activated protein kinase activation in barley aleurone protoplasts
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31 Knetsch M. L. W., Wang M., Snaar-Jagalska B. E. and Heimovaara-Dijkstra S. (1996) Abscisic acid induces mitogen-activated protein kinase activation in barley aleurone protoplasts. Plant Cell 8: 1061-1067
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CTR1, a negative regulator of the ethylene response pathway in Arabidopsis, encodes a member of the Raf family of protein kinases
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32 Kieber J. J., Rothenberg M., Roman G., Feldmann K. A. and Ecker J. R. (1993) CTR1, a negative regulator of the ethylene response pathway in Arabidopsis, encodes a member of the Raf family of protein kinases. Cell 72: 427-441
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