Agriculture Reference
In-Depth Information
van Doorn, W.G. and Woltering, E.J. 2004. Senescence and programmed cell death: substance or semantics? J.
Exp. Bot., 55: 2147-2153.
van Meeteren, U. 1979. Water relations and keeping-quality of cut Gerbera flowers: III. Water content, permeability
and dry weight of aging petals. Sci. Hort., 10: 261-269.
van Meeteren, U., van Gelder, H., and van Ieperen, W. 2000. Reconsideration of the use of deionized water as
vase water in postharvest experiments on cut flowers. Postharvest Biol. Technol., 18: 169-181.
Van Staden, J., Cook, E.L., and Nooden, L.D. 1988. Cytokinins and senescence. In: Senescence and Aging in
Plants (ed., L.D. Nooden), Academic Press, San Diego, pp. 281-328.
Van Staden, J. and Dimalla, G.G. 1980. The effect of silver thiosulfate preservative on the physiology of cut
carnations: II. Influence of endogenous cytokinins. Z Pflanzenphysiol., 99: 19-26.
Verlinden, S., Boatright, J., and Woodson, W.R. 2002. Changes in ethylene responsiveness of senescence-related
genes during carnation flower development. Physiol. Plantarum, 116: 503-511.
Verlinden, S. and Garcia, J.J.V. 2004. Sucrose loading decreases ethylene responsiveness in carnation ( Dianthus
caryophyllus cv. White Sim) petals. Postharvest Biol. Technol., 31: 305-312.
Verlinden, S. and Woodson, W.R. 1998. The physiological and molecular responses of carnation flowers to high
temperature. Postharvest Biol. Technol., 14: 185-192.
Wagstaff, C., Leverentz, M.K., Griffiths, G., Thomas, B., Chanasut, U., Stead, A.D., and Rogers, H.J. 2002.
Cysteine protease gene expression and proteolytic activity during senescence of Alstroemeria petals. J. Exp.
Bot., 53: 233-240.
Wagstaff, C., Malcolm, P., Rafiq, A., Leverentz, M., Griffiths, G., Thomas, B., Stead, A., and Rogers, H. 2003. Pro-
grammed cell death (PCD) processes begin extremely early in Alstroemeria petal senescence. New Phytologist,
160: 49-59.
Wang, H. and Woodson, W.R. 1991. A flower senescence-related mRNA from carnation shares sequence similarity
with fruit ripening-related mRNAs involved in ethylene biosynthesis. Plant Physiol., 96: 1000-1001.
Weaver, L.M., Froehlich, J.F., and Amasino, R.M. 1999. Chloroplast-targeted ERD1 protein declines but its mRNA
increases during senescence in Arabidopsis . Plant Physiol., 119: 1209-1216.
Weaver, L.M., Gan, S., Quirino, B., and Amasino, R.M. 1998. A comparison of the expression patterns of several
senescence-associated genes in response to stress and hormone treatment. Plant Mol. Biol., 37: 455-469.
Weaver, L.M., Himelblau, E., and Amasino, R.M. 1997. Leaf senescence: gene expression and regulation. In:
Genetic Engineering: Principles and Methods (ed., J.K. Setlow), Vol. 19, Plenum Press, New York, pp. 215-
234.
Wilkinson, J.Q., Lanahan, M.B., Clark, D.G., Bleecker, A.B., Chang, C., Meyerowitz, E.M., and Klee, H.J. 1997.
A dominant mutant receptor from Arabidopsis confers ethylene insensitivity in heterologous plants. Nat.
Biotechnol., 15: 444-447.
Wisniewski, K. and Zagdanska, B. 2001. Genotype-dependent proteolytic response of spring heat to water defi-
ciency. J. Exp. Bot., 52: 1455-1463.
Woltering, E.J. 1987. Effects of ethylene on ornamental pot plants: a classification. Sci. Hort., 31: 283-294.
Woltering, E.J. and Harkema, H. 1994. Use of AOA to prevent emasculation induced quality loss in cut flowers.
Proceedings of NIOC , pp. 139-145.
Woltering, E.J., Somhorst, D., and de Beer, C.A. 1993. Roles of ethylene production and sensitivity in senescence
of carnation flowers ( Dianthus caryophyllus ) cultivars White Sim, Chinera and Epomeo. J. Plant Physiol.,
141: 329-335.
Woltering, E.J. and van Doorn, W.G. 1988. Role of ethylene in senescence of petals: morphological and taxonomical
relationships. J. Exp. Bot., 39: 1605-1616.
Woltering, E.J., van Schaik, A.C.R., and Jongen, W.M.F. 1994. Physiology and biochemistry of controlled at-
mosphere storage: the role of ethylene. Proceedings of Cost94, the Post Harvest Treatment of Fruit and
Vegetables—Controlled Atmosphere Storage of Fruit and Vegetables , pp. 35-42.
Woodson, W.R. 1987. Changes in protein and mRNA populations during carnation petal senescence. Physiol.
Plant, 71: 495-502.
Woodson, W.R. 1994. Molecular biology of flower senescence in carnation. In: Molecular and Cellular Aspects
of Plant Reproduction (eds, R.J. Scott and A.D. Stead), Cambridge University Press, Cambridge, UK, pp.
225-267.
Woodson, W.R., Brandt, A.S., Itzhaki, H., Maxon, J.M., Park, K.Y., and Wang, H. 1993. Regulation and function
of flower senescence-related genes. Acta Hort., 336: 41-46.
Woodson, W.R. and Lawton, K.A. 1988. Ethylene-induced gene expression in carnation petals: relationship to
autocatalytic ethylene production and senescence. Plant Physiol., 87: 498-503.
Search WWH ::




Custom Search