Open Access

The vase life of waxflower (Chamelaucium Desf.) is affected by the weight ratio of flowers to stem


Cite

Asrar A.W.A., 2012. Effects of some preservative solutions on vase life and keeping quality of snapdragon (Antirrhinum majus L.) cut flowers. J. Saudi Soc. Agric. Sci. 11: 29-35.10.1016/j.jssas.2011.06.002Search in Google Scholar

Bravdo B., Mayak S., Gravrieli Y., 1974. Sucrose and water uptake from concentrated sucrose solutions by gladiolus shoots and the effect of these treatments on floret life. Can. J. Bot. 52: 1271-1281.10.1139/b74-165Search in Google Scholar

Carpenter W.J., Rasmussen H.P., 1974. The role of flower and leaves in cut flower water uptake. Sci. Hort. 2: 293-298.10.1016/0304-4238(74)90038-7Search in Google Scholar

Dail J., Paull R.E., 1995. Source-sink relationship and Protea postharvest leaf blackening. J. Am. Soc. Hort. Sci. 120: 475-480.10.21273/JASHS.120.3.475Search in Google Scholar

He S., Joyce D.C., Irving D.E., 2006. Competition for water between inflorescences and leaves in cut flowering stems of Grevillea ‘Crimson Yul-lo’. J. Hort. Sci. Biotechnol. 81: 891-897.10.1080/14620316.2006.11512155Search in Google Scholar

Joyce D.C., 1988. Posthavest characteristics of Geraldton wax flowers. J. Am. Soc. Hort. Sci. 113: 738-742.10.21273/JASHS.113.5.738Search in Google Scholar

Joyce D.C., 1993. Posthavest floral fall in Geraldton wax flower (Chamelaucium uncinatum Schauer). Aust. J. Exp. Agric. 33: 481-487.10.1071/EA9930481Search in Google Scholar

Joyce D.C., Jones P.N., 1992. Water balance of the foliage of cut Geraldton waxflower. Postharvest Biol. Technol. 2: 31-39.10.1016/0925-5214(92)90025-KSearch in Google Scholar

Marissen N., La Brijn L., 1995. Source-sink relations in cut roses during vase life. Acta Hort. 405: 81-88.10.17660/ActaHortic.1995.405.9Search in Google Scholar

Murphy K.A., Kuhle R.A., Fischer A.M., Anterola A.M., Grimes H.D., 2005. The functional status of paraveinal mesophyll vacuoles changes in response to altered metabolic conditions in soybean leaves. Functional Plant Biol. 32: 335-344.10.1071/FP0500632689135Search in Google Scholar

Paulin A., 1981. Evolution comparee des glucides dans les divers organes de la rose coupee alimentee temporairement avec une solution de glucose au de saccharose. Phisiol. Veg. 19: 59-76.Search in Google Scholar

Pun U.K., Ichimura K., 2003. Role of sugars in senescence and biosynthesis of ethylene in cut flowers. Jpn. Agric. Res. Qrtl. 37: 219-244.10.6090/jarq.37.219Search in Google Scholar

Seaton K., Joyce D.C., 1996. Effect of postharvest dipping in insecticides on the vase life of Geraldton waxflower. Aust. J. Exp. Agric. 36: 373-378.10.1071/EA9960373Search in Google Scholar

Seaton K., Lee K., Tan B., 2010. Vase life and root propagation of Geraldton wax (Chamelaucium spp.) cut flowers treated with glyphosate. Hortic. Environ. Biotechnol. 51(6): 545-550.Search in Google Scholar

Seaton K., Poulish N., 2010. Production of premium waxflower. Department of Agriculture and Food, Western Australia. Bull. 4778.Search in Google Scholar

Turner G.W., Daniel J.C., Siau S.V., Matthew L.S., Howard D.G., Lange B.M., 2012. Experimental sink removal induces stress responses, including shifts in amino acid and phenylpropanoid metabolism, in soybean leaves. Planta 235: 939-954.10.1007/s00425-011-1551-4355154322109846Search in Google Scholar

van Doorn W.G., 1997. Water relations of cut flowers. Hortic. Rev. 18: 1-85.10.1002/9780470650608.ch1Search in Google Scholar

eISSN:
2083-5965
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, Plant Science, Zoology, Ecology, other