Agriculture Reference
In-Depth Information
Guo, H. and Ecker, J.R. 2004. The ethylene signaling pathway: new insights. Curr. Opin. Plant Biol., 7: 40-49.
Hackett, R.M., Ho, C.W., Lin, Z., Foote, H.C., Fray, R.G., and Grierson, D. 2000. Antisense inhibition of the Nr
gene restores normal ripening to the tomato Never-ripe mutant, consistent with the ethylene receptor-inhibition
model. Plant Physiol., 124: 1079-1086.
Hall, A.E., Findell, J.L., Schaller, G.E., Sisler, E.C., and Bleecker, A.B. 2000. Ethylene perception by the ERS1
protein in Arabidopsis . Plant Physiol., 123: 1449-1458.
Hua, J., Chang, C., Sun, Q., and Meyerowitz, E.M. 1995. Ethylene insensitivity conferred by Arabidopsis ERS
gene. Science, 269: 1712-1714.
Hua, J. and Meyerowitz, E.M. 1998. Ethylene responses are negatively regulated by a receptor gene family in
Arabidopsis thaliana. Cell, 94: 261-271.
Hua, J., Sakai, H., Nourizadeh, S., Chen, Q., Bleecker, A., Ecker, J., and Meyerowitz, E. 1998. EIN4 and ERS2
are members of the putative ethylene receptor gene family in Arabidopsis . Plant Cell, 10: 1321-1332.
Ichimura, K., Kohata, K., and Goto, R. 2000. Soluble carbohydrates in Delphinium and their influence on sepal
abscission in cut flowers. Physiol. Plant, 108: 307-313.
Katz, E., Lagunes, P.M., Riov, J., Weiss, D., and Goldschmidt, E.E. 2004. Molecular and physiological evidence
suggests the existence of a system II-like pathway of ethylene production in non-climacteric citrus fruit. Planta,
219: 243-252.
Klee, H. 2006. Highly conserved proteins that modify plant ethylene responses. Proc. Natl. Acad. Sci. U.S.A.,
103: 7537-7538.
Klee, H. and Tieman, D. 2002. The tomato ethylene receptor gene family: form and function. Physiol. Plant, 115:
336-341.
Klee, H.J. 2002. Control of ethylene-mediated processes in tomato at the level of receptors. J. Exp. Bot., 53:
2057-2063.
Klee, H.J. 2004. Ethylene signal transduction. Moving beyond Arabidopsis . Plant Physiol., 135: 660-667.
Kuroda, S., Hakata, M., Hirose, Y., Shiraishi, M., and Abe, S. 2003. Ethylene production and enhanced transcription
of an ethylene receptor gene, ERS1, in Delphinium during abscission of florets. Plant Physiol. Biochem., 41:
812-820.
Ma, B., Cui, M.L., Sun, H.J., Takada, K., Mori, H., Kamada, H., and Ezura, H. 2006a. Subcellular localization
and membrane topology of the melon ethylene receptor CmERS1. Plant Physiol., 141: 587-597.
Ma, N., Tan, H., Liu, X., Xue, J., Li, Y., and Gao, J. 2006b. Transcriptional regulation of ethylene receptor and
CTR genes involved in ethylene-induced flower opening in cut rose ( Rosa hybrida ) cv. Samantha. J Exp Bot.,
57: 2763-2773.
Mita, S., Kawamura, S., and Asai, T. 2002. Regulation of the expression of a putative ethylene receptor, PeERS2,
during the development of passion fruit ( Passiflo a edulis ). Physiol. Plant, 114: 271-280.
Mita, S., Kawamura, S., Yamawaki, K., Nakamura, K., and Hyodo, H. 1998. Differential expression of genes
involved in the biosynthesis and perception of ethylene during ripening of passion fruit ( Passiflo a edulis
Sims). Plant Cell Physiol., 39: 1209-1217.
Muller, R., Stummann, B.M., and Serek, M. 2000. Characterization of an ethylene receptor family with differential
expression in rose ( Rosa hybrid L.) flower. Plant Cell Rep., 19: 1232-1239.
Narumi, T., Aida, R., Ohmiya, A., and Satoh, S. 2005a. Transformation of chrysanthemum with mutated ethylene
receptor genes: mDG-ERS1 transgenes conferring reduced ethylene sensitivity and characterization of the
transformants. Postharvest Biol. Technol., 37: 101-110.
Narumi, T., Kanno, Y., Suzuki, M., Kishimoto, S., Ohmiya, A., and Satoh, A. 2005b. Cloning of a cDNA encoding
an ethylene receptor (DG-ERS1) from chrysanthemum and comparison of its mRNA level in ethylene-sensitive
and -insensitive cultivars. Postharvest Biol. Technol., 36: 21-30.
Ogawara, T., Higashi, K., Kamada, H., and Ezura, H. 2003. Ethylene advances the transition from vegetative
growth to flowering in Arabidopsis thaliana . J. Plant Physiol., 160: 1335-1340.
Owino, W.O., Nakano, R., Kubo, Y., and Inaba, A. 2002. Differential regulation of genes encoding ethylene
biosynthesis enzymes and ethylene response sensor ortholog during ripening and in response to wounding in
avocados. J. Am. Soc. Hort. Sci., 127: 520-527.
Pang, J.H., Ma, B., Sun, H.J., Ortiz, G.I., Imanishi, S., Sugaya, S., Gemma, H., and Ezura, H. 2006. Identification and
characterization of ethylene receptor homologs expressed during fruit development and ripening in persimmon
( Diospyros kaki Thumb.). Postharvest Biol. Technol., 44: 195-203.
Patterson, S.E. and Bleecker, A.B. 2004. Ethylene-dependent and -independent processes associated with floral
organ abscission in Arabidopsis . Plant Physiol., 134: 194-203.
Rasori, A., Ruperti, B., Bonghi, C., Tonutti, P., and Ramina, A. 2002. Characterization of two putative ethylene
receptor genes expressed during peach fruit development and abscission. J. Exp. Bot., 53: 2333-2339.
Search WWH ::




Custom Search