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Moeder, W., Barry, C.S., Tauriainen, A.A., Betz, C., Tuomainen, J., Utrianen, M., Grierson, D.,
Sandermann, H., Langerbartels, C. and Kangasjarvi, J. (2002) Ethylene synthesis regulated by
biphasic induction of 1-aminocyclopropane-1-carboxylic acid synthase and 1-aminocyclopropane-
1-carboxylic acid oxidase genes is required for hydrogen peroxide accumulation and cell death in
ozone-exposed tomato. Plant Physiology 130, 1918-1926.
Nakajima, N. and Imaseki, H. (1986) Purifi cation and properties of 1-aminocyclopropane-1-
carboxylate synthase of mesocarp of Cucurbita maxima Duch. fruits. Plant Cell Physiology 27,
969-980.
Nakajima, N., Nakagawa, N. and Imaseki, H. (1988) Molecular size of wound-induced
1-aminocyclopropane-1-carboxylate synthase from Cucurbita maxima Duch. and change of
translatable mRNA of the enzyme after wounding. Plant Cell Physiology 29, 989-998.
Nakatsuka, A., Murachi, S., Okunishi, H., Shiomi, S., Nakano, R., Kubo, Y. and Inaba, A. (1998)
Differential expression and internal feedback regulation of 1-aminocyclopropane-1-carboxylate
synthase, 1-aminocyclopropane-1-carboxylate oxidase, and ethylene receptor genes in tomato
fruit during development and ripening . Plant Physiology 18, 1295-1305.
Oeller, P.W., Lu, M.W., Taylor, L.P., Pike, D.A. and Theologis, A. (1991) Reversible inhibition of
tomato fruit senescence by antisense RNA. Science 254, 437-439.
Picton, S. and Grierson, D. (1988) Inhibition of expression of tomato-ripening genes at high
temperature. Plant, Cell and Environment 11, 265-272.
Picton, S., Barton, S.L., Bouzayen, M., Hamilton, A.J. and Grierson, D. (1993) Altered fruit ripening
and leaf senescence in tomatoes expressing an antisense ethylene-forming enzyme transgene.
Plant Journal 3, 469-481.
Pirrello, J., Prasad, B.C.N, Zhang, W., Chen, K., Mila, I., Zouine, M., Latché, A., Pech, J.C., Ohme-
Takagi, M., Regad, F., and Bouzayen, M. (2012) Functional analysis and binding affi nity of
tomato ethylene response factors provide insight on the molecular bases of plant differential
responses to ethylene. BMC Plant Biology 12, 190.
Primrose, S.B. (1979) Ethylene and agriculture: the role of the microbe. Journal of Applied
Bacteriology 46, 1-25.
Rottmann, W.H., Peter, G.F., Oeller, P.W., Keller, J.A., Shen, N.F., Nagy, B.P., Taylor, L.P., Campbell,
A.D. and Theologis, A. (1991) 1-Aminocyclopropane-1-carboxylate synthase in tomato is
encoded by a multigene family whose transcription is induced during fruit and fl oral
senescence. Journal of Molecular Biology 12, 937-961.
Salman-Minkov, A., Levi, A., Wolf, S. and Trebitsh, T. (2008) ACC synthase genes are polymorphic in
watermelon ( Citrullus spp.) and differentially expressed in fl owers and in response to auxin and
gibberellin. Plant and Cell Physiology 49, 740-750.
Sato, T., Oeller, P.W. and Theologis, A. (1991) The l-aminocyclopropane-1-carboxylate synthase of
Cucurbita . Purifi cation, properties, expression in Escherichia coli , and primary structure
determination by DNA sequence analysis. Journal of Biological Chemistry 266, 3752-3759.
Schofi eld, C.J. and Zhang, Z. (1999) Structural and mechanistic studies on 2-oxoglutarate-dependent
oxygenases and related enzymes. Current Opinion in Structural Biology 9, 722-731.
Smith, C.J.S., Slater, A. and Grierson, D. (1986) Rapid appearance of an mRNA correlated with
ethylene synthesis encoding a protein of molecular weight 35,000. Planta 168, 94-100.
Spanu, P., Reinhardt, D. and Boller, T. (1991) Analysis and cloning of the ethylene-forming enzyme
from tomato by functional expression of its messenger-RNA in Xenopus laevis oocytes. EMBO
Journal 10, 2007-2013.
Tatsuki, M. and Mori, H. (2001) Phosphorylation of tomato 1-aminocyclopropane-1-carboxylic acid
synthase, LE-ACS2, at the C-terminal region. Journal of Biological Chemistry 276, 28051-28057.
Tournier, B., Sanchez-Ballesta, M.T., Jones, B., Pesquet, E., Regad, F., Latché, A., Pech, J.C. and
Bouzayen, M. (2003) New members of the tomato ERF family show specifi c expression pattern
and diverse DNA-binding capacity to the GCC box element. FEBS Letters 550, 149-154.
Tsuchisaka, A. and Theologis, A. (2004) Unique and overlapping expression patterns among the
Arabidopsis 1-amino-cyclopropane-1-carboxylate synthase gene family members. Plant
Physiology 136, 2982-3000.
Tuomainen, J., Betz, C., Kangasjarvi, J., Ernst, D., Yin, Z-H., Langebartels, C. and Sandermann, H. Jr
(1997) Ozone induction of ethylene emission in tomato plants: regulation by differential
accumulation of transcripts for the biosynthetic enzymes. Plant Journal 12, 1151-1162.
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