Cite

Aebi H.E. 1983. Catalase. In: Bergmeyer H.U. (ed.), Methods of Enzymatic Analysis, Vol. 3. Verlag Chemie, Weinheim. Academic Press, New York, pp. 273-285.Search in Google Scholar

Beauchamp C.H., Fridovich I. 1971. Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. ANAL. BIOCHEM. 44: 276-87.10.1016/0003-2697(71)90370-8Search in Google Scholar

Bulens I., Van de Poel B., Hertog M.L., Proft M., Geeraerd A.H., Nicola B.M. 2011. Protocol: An updated integrated methodology for analysis of metabolites and enzyme activities of ethylene biosynthesis. PLANT METHODS 7:17.10.1186/1746-4811-7-17Search in Google Scholar

Carlos G., Marcela Simontacchi B., Montaldi E., Puntarulo P. 1996. Oxidative stress, antioxidant capacity and ethylene production during ageing of cut carnation (Dianthus caryophyllus) petals. J. EXP. BOT. 47(297): 595-601.Search in Google Scholar

Celikel F.G., Van Doorn W.G. 1995. Solute leakage lipid peroxidation, and protein degradation during the senescence of Iris tepals. PHYSIOL. PLANT. 94: 515-521.Search in Google Scholar

Cook D., Rasche M., Eisinger W. 1985. Regulation of ethylene biosynthesis and action in cut carnation flower senescence by cytokinins. J. AM. SOC. HORT. SCI. 110: 24-27.10.21273/JASHS.110.1.24Search in Google Scholar

Djanaguiraman M., Prasad P.V.V., Al- Khatib L. 2011. Ethylene perception inhibitor 1-MCP decreases oxidative damage of leaves through enhanced antioxidant defense mechanisms in soybean plants grown under high temperature stress. ENVIRON. EXPER. BOT. 71: 215-223.10.1016/j.envexpbot.2010.12.006Search in Google Scholar

Dhindsa R.S., Pulp- Dhindsa P., Thorpe T.A. 1981. Leaf senescence: correlated with increased levels of membrane permeability and lipid peroxidation and decreased levels of superoxide dismutase and catalase. J. EXP. BOT. 32: 93-101.10.1093/jxb/32.1.93Search in Google Scholar

Droillard M., Bureau J.D, Paulin A. 1989. Changes in activities of superoxide dismutase during aging of petals of cut carnations (Dianthus caryophyllus). PHYSIOL. PLANT. 76: 149-154.10.1111/j.1399-3054.1989.tb05624.xSearch in Google Scholar

Ferrante A., Mensuali-Sodi A., Serra G., Tognoni F. 2006. Evaluation of postproduction performance of Salvia splendens potted plants for interiors use. ACTA HORT. 723: 415-419.10.17660/ActaHortic.2006.723.58Search in Google Scholar

Han S.S., Miller J.A. 2003. Role of ethylene in postharvest quality of cut oriental lily ‘Stargazer’. PLANT GROWTH REGUL. 40: 213-222.10.1023/A:1025023904151Search in Google Scholar

Hassanpour Asil M, Karimi M. 2010. Efficiency of benzyladenine reduced ethylene production and extending vase life of cut Eustoma flowers. PLANT OMICS 3:199-203.Search in Google Scholar

Huang K.L., Chen W.S. 2002. BA and sucrose increase vase life of cut Eustoma flower. HORT. SCI. 37: 547-549.10.21273/HORTSCI.37.3.547Search in Google Scholar

Karimi M., Hassanpour Asil M. 2010. Role of benzyladenine on vase life and quality of cut lisianthus flowers. HORT. ENVIRON. BIOTECHNOL. 51: 284-287.Search in Google Scholar

Khan N.A. 2006. Ethylene action in plants. Springer. Springer-Verlag Berlin Heidelberg, Netherlands, pp. 206.Search in Google Scholar

Larrigaudiere C., Vilaplana R., Soria Y., Recasens I. 2004. Oxidative behaviour of Blanquilla pears treated with 1-methylcyclopropene during cold storage. J. SCI. FOOD AGRIC. 84: 1871-1877.10.1002/jsfa.1850Search in Google Scholar

Lerslerwong L., Ketsa S. 2008. Autocatalytic ethylene production by Dendrobium flowers during senescence induced by exogenous ethylene. THAI J. AGRIC. SCI. 41: 91-99.Search in Google Scholar

Macnisha A.J., Jiang C., Reida M.S. 2010. Treatment with thidiazuron improves opening and vase life of iris flowers. POSTHARVEST BIOL. TECHNOL. 56: 77-84.10.1016/j.postharvbio.2009.11.011Search in Google Scholar

Mayak S., Legge R.L., Thompson J.E. 1983. Superoxide radical production by microsomal membranes from senescing carnation flowers: an effect on membrane fluidity. PHYTOCHEMISTRY 11: 1375-1380.10.1016/S0031-9422(00)84018-2Search in Google Scholar

McCord J.M., Fridovich I. 1969. Superoxide dismutase. Enzymatic function forerithrocuprein (hemocuprein). J. BIOL. CHEM. 244: 6049-6055.10.1016/S0021-9258(18)63504-5Search in Google Scholar

Mensuali-Sodi A., Ferrante A., Tognoni F., Serra G. 2005. Inhibitors of ethylene action and biosynthesis on cut carnation. AGRIC MEDITERRANEA 135: 161-165.Search in Google Scholar

Muller R., Stummann B.M., Sisler E.C., Serek M. 2001 Cultivar differences in regulation of ethylene production in miniature Rose flowers (Rosa hybrida L.). GARTENBAUWISSENSCHAFT 66: 34-38.Search in Google Scholar

Nichols R. 1977. Sites of ethylene production in the pollinated and unpollinated senescing carnation (Dianthus caryophyllus) inflorescence. PLANTA 135: 155-159.10.1007/BF00387165Search in Google Scholar

Pathak N., Asif M.H, Dhawan P., Srivastava M.K., Nath P. 2003. Ex pression and activities of ethylene biosynthesis enzymes during ripening of banana fruits and effect of 1-MCP treatment. PLANT GROWTH REGUL. 40: 11-19.10.1023/A:1023040812205Search in Google Scholar

Pemberton H.B., Kelly J.W., Ferare J., Armitage A. 1997. Pot Rose Production. Timber Press, Portland, Oregon, USA, pp. 112-117.Search in Google Scholar

Rattanawisalanona C., Ketsa S., van Doorn W.G. 2003. Effect of aminooxyacetic acid and sugars on the vase life of Dendrobium flowers. POSTHARVEST BIOL. TECHNOL. 29: 93-100.10.1016/S0925-5214(02)00242-9Search in Google Scholar

Segliea L., Martinab K., Devecchia M., Roggerod C., Trottac F., Scariota V. 2011. The effects of 1-MCP in cyclodextrin- based nanosponges to improve the vase life of Dianthus caryophyllus cut flowers. POSTHARVEST BIOL. TECHNOL. 59: 200-205.10.1016/j.postharvbio.2010.08.012Search in Google Scholar

Serek M., Sisler E.C., Reid M.S. 1995. Effects of 1-MCP on the vase life and ethylene response of cut flowers. PLANT GROWTH REGUL. 16: 93-97.10.1007/BF00040512Search in Google Scholar

Wang B., Wang J., Feng X., Zhao Y., Jiang W. 2009. Effects of 1-MCP and exogenous ethylene on fruit ripening and antioxidants in stored mango. PLANT GROWTH REGUL. 57: 185-192.10.1007/s10725-008-9335-ySearch in Google Scholar

Yu Y.B., Adams D.O., Yang S.F. 1979. 1-aminocyclopropane-1-carboxylate synthase, a key enzyme in ethylene biosynthesis. ARCH. BIOCHEM. BIOPHYS. 198: 289-286.Search in Google Scholar

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