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Effects of Anti-Ethylene Treatments on Ethylene Production and Antioxidant Activities in Cut Spray Carnation Cover

Effects of Anti-Ethylene Treatments on Ethylene Production and Antioxidant Activities in Cut Spray Carnation

Open Access
|May 2013

References

  1. 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.
  2. Beauchamp C.H., Fridovich I. 1971. Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. ANAL. BIOCHEM. 44: 276-87.
  3. 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.
  4. 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.
  5. 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.
  6. 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.
  7. 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.
  8. 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.
  9. Droillard M., Bureau J.D, Paulin A. 1989. Changes in activities of superoxide dismutase during aging of petals of cut carnations (). PHYSIOL. PLANT. 76: 149-154.
  10. 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.
  11. Han S.S., Miller J.A. 2003. Role of ethylene in postharvest quality of cut oriental lily ‘Stargazer’. PLANT GROWTH REGUL. 40: 213-222.
  12. 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.
  13. Huang K.L., Chen W.S. 2002. BA and sucrose increase vase life of cut Eustoma flower. HORT. SCI. 37: 547-549.
  14. Karimi M., Hassanpour Asil M. 2010. Role of benzyladenine on vase life and quality of cut lisianthus flowers. HORT. ENVIRON. BIOTECHNOL. 51: 284-287.
  15. Khan N.A. 2006. Ethylene action in plants. Springer. Springer-Verlag Berlin Heidelberg, Netherlands, pp. 206.
  16. 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.
  17. Lerslerwong L., Ketsa S. 2008. Autocatalytic ethylene production by Dendrobium flowers during senescence induced by exogenous ethylene. THAI J. AGRIC. SCI. 41: 91-99.
  18. 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.
  19. 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.
  20. McCord J.M., Fridovich I. 1969. Superoxide dismutase. Enzymatic function forerithrocuprein (hemocuprein). J. BIOL. CHEM. 244: 6049-6055.
  21. Mensuali-Sodi A., Ferrante A., Tognoni F., Serra G. 2005. Inhibitors of ethylene action and biosynthesis on cut carnation. AGRIC MEDITERRANEA 135: 161-165.
  22. Muller R., Stummann B.M., Sisler E.C., Serek M. 2001 Cultivar differences in regulation of ethylene production in miniature Rose flowers (L.). GARTENBAUWISSENSCHAFT 66: 34-38.
  23. Nichols R. 1977. Sites of ethylene production in the pollinated and unpollinated senescing carnation (Dianthus caryophyllus) inflorescence. PLANTA 135: 155-159.
  24. 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.
  25. Pemberton H.B., Kelly J.W., Ferare J., Armitage A. 1997. Pot Rose Production. Timber Press, Portland, Oregon, USA, pp. 112-117.
  26. 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.
  27. 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 ofcut flowers. POSTHARVEST BIOL. TECHNOL. 59: 200-205.
  28. 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.
  29. 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.
  30. 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.
Language: English, Polish
Page range: 173 - 182
Published on: May 30, 2013
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2013 Mahnaz Karimi, Moazzam Hassanpour Asil, Ghorbanali Nematzadeh, Hedayat Zakizadeh, published by Sciendo
This work is licensed under the Creative Commons License.