Have a personal or library account? Click to login

Effect of pre-harvest salicylic acid treatments on the quality and shelf life of the ‘Cresthaven’ peach cultivar

Open Access
|Sep 2020

References

  1. Ali I., Abbasi, N. A., and Hafiz I. A. (2014). Physiological Response and quality attributes of peach fruit cv. Florida king as affected by different treatments of calcium chloride, putrescine and salicylic acid. Pakistan Journal of Agricultural Sciences, 51(1), 33–39.
  2. Asghari, M., and Aghdam, M. (2010). Impact of salicylic acid on postharvest physiology of horticultural crops. Trends in Food Science and Technology, 21, 502–509.
  3. Bal, E. (2016). Combined treatment of modified atmosphere packaging and salicylic acid improves postharvest quality of nectarine (Prunus persica L.). Journal of Agricultural Science and Technology, 18, 1345–1354.
  4. Baxber, G. J., Graham, A. B., Lawrence, J. R., Wile, D., and Paterson, J. R. (2001). Salicylic acid in soups prepared from organically and nonorganically grown vegetables. European Journal of Nutrition, 40, 289–292.
  5. Babalar, M., Asghari, M., Talaei, A., and Khosroshahi, A. (2007). Effect of pre and post harvest salicylic acid treatment on ethylene production, fungal decay and overall quality of Selva strawberry fruit. Food Chemistry, 105, 449–453.
  6. Benzie, I., and Strain, J. (1996). The ferric reducing ability of plasma (FR AP) as a measure of “Antioxidant Power: The FRAP Assay”. Analytical and Bioanalytical Chemistry, 239, 70–76.
  7. Davarynejad, G. H., Zarei, M., Nasrabadi, M. E., and Ardakani, E. (2015). Effects of salicylic acid and putrescine on storability, quality attributes and antioxidant activity of plum cv. ‘Santa Rosa’. Journal of Food Science and Technology, 52(4), 2053–2062.
  8. Ding, C. K., Wang, C. Y., Gross, K. C., and Smith, D. L. (2001). Reduction of chilling injury and transcript accumulation of heat shock proteins in tomato fruit by methyl jasmonate and methyl salicylate. Plant Science, 161, 1153–1159.
  9. Ding, C. K., and Wang, C. Y. (2003). The dual effects of methyl salicylate on ripening and expression of ethylene biosynthetic genes in tomato fruit. Plant Science, 164, 589–596.
  10. Fariduddin, Q., Hayat, S., and Ahmad, A. (2003). Salicylic acid influences net photosynthetic rate, carboxylation efficiency, nitrate reductase activity and seed yield in Brassica juncea. Photosynthetica, 41, 281–284.
  11. Giménez, J. M., Valverde, J. M., Valverdo, M. J., Valero, D., Guillén, F., Martínez-Romero, D., Serrano, M., and Castillo S. (2014). Quality and antioxidant properties on sweet cherries as affected by preharvest salicylic and acetylsalicylic acids treatments. Food Chemistry, 160, 226–232.
  12. Hajilou, J., and Fakhimrezaei, S. (2013). Effects of post-harvest calcium chloride or salicylic acid treatments on the shelf-life and quality of apricot fruit. Journal of Horticultural Science and Biotechnology, 88(5), 600–604.
  13. Hayat, S., Fariduddin, Q., Ali B., and Ahmad, A. (2005). Effect of salicylic acid on growth and enzyme activities of wheat seedlings. Acta Agronomica Hungarica, 53, 433–437.
  14. Hayat Q., Hayat, S., Irfan, M., and Ahmad, A. (2010). Effect of exogenous salicylic acid under changing environment: A review. Environmental and Experimental Botany, 68, 14–25.
  15. Huang, Y., Deverall, B. J., Tang, W. H., Wang, W., and Wu, F. W. (2000). Foliar application of asilbenzolar-S-methyl and protection of postharvest rock melons and Hami melons from disease. European Journal of Plant Pathology, 106, 651–656.
  16. Huang, R., Xia, R., Lu, Y., Hu, L., and Xu, Y. (2008). Effect of preharvest salicylic acid spray treatment on post-harvest antioxidant in the pulp and peel of ‘Cara cara’ navel orange (Citrus sinenisis L. Osbeck). Journal of the Science of Food and Agriculture, 88, 229–236.
  17. Karacali, I. (2014). Storage and marketing of horticultural products. İzmir, Turkey: Ege University Agricultural Faculty Publication, No: 494.
  18. Khademi, Z., and Ershadi A. (2013). Postharvest application of salicylic acid improves storability of peach (Prunus persica cv. Elberta) fruits. International Journal of Agriculture and Crop Sciences, 5(6), 651–655.
  19. Lu, X., Sun, D., Li, Y., Shi, W., and Sun, G. (2011). Pre- and post-harvest salicylic acid treatments alleviate internal browning and maintain quality of winter pineapple fruit. Scientia Horticulturae, 130, 97–101.
  20. Martínez-Esplá, A., Zapata, P. J., Valero, D., Martínez-Romero, D., Diaz-Mulab, H. M., and Serranoc, M. (2017). Preharvest treatments with salicylates enhance nutrient and antioxidant compounds in plum at harvest and after storage. Journal of the Science of Food and Agriculture, 98, 2742–2750.
  21. Mirdehghan, S. H., and Ghotbi F. (2014). Effects of salicylic acid, jasmonic acid, and calcium chloride on reducing chilling injury of pomegranate (Punica granatum L.). Journal of Agricultural Science and Technology, 16, 163–173.
  22. Mo, Y., Gong, D., Liang, G., Han, R., Xiel, J., and Lil, W. (2008). Enhanced preservation effects of sugar apple fruits by salicylic acid treatment during post-harvest storage. Journal of the Science of Food and Agriculture, 88, 2693–2699.
  23. Mohamadi, H., and Pakkish, Z. (2014). Role of salicylic acid on yield improvement of ‘Elberta’ Peach (Prunus persica L. Batsch) tree. International Journal of Advanced Biological and Biomedical Research, 2(4), 970–973.
  24. Rehab, M. A. (2013). Effect of post-harvest salicylic acid treatments on fruit quality of peach cv. “Flordaprince” during cold storage. Australian Journal of Basic and Applied Sciences, 7(7), 920–927.
  25. Sayyari, M., Babalar, M., Kalantari, S., Serrano, M., and Valero, D. 2009. Effect of salicylic acid treatment on reducing chilling injury in stored pomegranates. Postharvest Biology and Technology, 53, 152–154.
  26. Shafiee, M., Taghavi, T. S., and Babalar, M. (2010). Addition of salicylic acid to nutrient solution combined with postharvest treatments (hot water, salicylic acid, and calcium dipping) improved postharvest fruit quality of strawberry. Scientia Hortıculturae, 124, 40–45.
  27. Shakirova, F. M. (2007). Role of hormonal system in the manisfestation of growth promoting and anti-stress action of salicylic acid. In S. Hayat and A. Ahmad (Eds), Salicylic acid. A plant hormone. Dordrecht, Netherlands: Springer.
  28. Shirzadeh, E., and Kazemi, M. (2012). Effect of salicylic acid and essential oils treatments on quality characteristics of apple (Malus domestica var. Granny Smith) fruits during storage. Asian Journal of Chemistry, 7(3), 165–170.
  29. Srivastava, M. K., and Dwivedi, U. (2000). Delayed ripening of banana fruit by salicylic acid. Plant Science, 158(1), 87–96.
  30. Tareen, J. M., Abbasi, N. A., and Hafiz, I. A. (2012). Effect of salicylic acid treatments on storage life of peach fruits cv. ‘Flordaking’. Pakistan Journal of Botany, 44(1), 119–124.
  31. Wang, L. J., Chen, S. J., Kong, W. F., Li, S. H., and Archbold, D. D. (2006). Salicylic acid pretreatment alleviates chilling injury and effects the anti-oxidant system and heat shock proteins of peaches during cold storage. Postharvest Biology and Technology, 41, 244–251.
  32. Xu, W. P., Chen, K. S., Lif., and Zhang, S. L. (2000). Regulation of lipoxygenase on jasmonic acid biosynthesis in ripening kiwifruit. Acta Petrologica Sinica, 26, 507–514.
  33. Yang, Y. N., Qi, M., and Mei, C. S. (2004). Endogenous salicylic acid protects rice plants from oxidative damage caused by aging as well as biotic and abiotic stress. The Plant Journal, 40, 909–919.
  34. Zhang, Y., Chen, K., Zhang, S., and Ferguson, I. (2003). The role of salicylic acid in postharvest ripening of kiwifruit. Postharvest Biology and Technology, 28(1), 67–74.
  35. Zheng, W., and Wang, S. Y. (2001). Antioxidant activity and phenolic compounds in selected herbs. Journal of Agricultural and Food Chemistry, 49(11), 5165–5170.
DOI: https://doi.org/10.2478/fhort-2020-0020 | Journal eISSN: 2083-5965 | Journal ISSN: 0867-1761
Language: English
Page range: 221 - 227
Submitted on: Jul 6, 2020
Accepted on: Sep 3, 2020
Published on: Sep 30, 2020
Published by: Polish Society for Horticultural Sciences (PSHS)
In partnership with: Paradigm Publishing Services
Publication frequency: 2 times per year

© 2020 Deniz Erogul, İsmail Özsoydan, published by Polish Society for Horticultural Sciences (PSHS)
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.