Hort. Sci. (Prague), 2022, 49(1):38-47 | DOI: 10.17221/151/2020-HORTSCI
Effect of salicylic and ascorbic acids on post-harvest vase life of Chrysanthemum cut flowersOriginal Paper
- Indonesian Citrus and Subtropical Fruits Research Institute, Kota Batu, Indonesia *Coresponding author: kbud1arto@gmail.com
Flower vase life is one important aspect in determining the flower quality in the cut flower chrysanthemum. The use of ascorbic or salicylic acid as preservative solutions was expected to have an impact on the prolonged duration of the cut flower freshness. The research was designed in two parallel experiments. The first dealt with salicylic acid, while the second focused on ascorbic acid. Both experiments were arranged in a factorial completely blocked randomised design. Two chrysanthemum varieties, i.e., 'Reagent Sunny' and 'Yellow Fiji' were the first factor and concentrations of the salicylic or ascorbic acids, i.e., 0, 100, 200 and 300 ppm became the second factor. The results showed the termination of the flower freshness was recognised by the wilted leaves and petals, and petal colour changes. In all the treatments, the colour change of the wilted petals of each variety fell in the same colour, indicating the direction of the colour changes was not affected by the ascorbic/salicylic acids. Ascorbic acid at 200 ppm induced longer flower longevity than the control with delayed chlorophyll degradation in both tested cultivars. In the salicylic acid applications, a 100-ppm solution induced longer flower freshness only in the 'Reagent Sunny'. In higher concentrations, salicylic acid solutions induced shorter flower freshness with faster chlorophyll degradation and basal tissue damage in the 'Yellow Fiji'.
Keywords: flower freshness; preservatives; wilting; variety; chlorophyll content
Published: March 12, 2022 Show citation
References
- Abdolmaleki M., Khosh-khui M., Eshghi S., Ramezanian A. (2015): Improvement in vase life of cut rose cv. 'Dolce Vita' by preharvest foliar application of calcium chloride and salicylic acid. International Journal of Horticultural Science and Technology, 2: 55-66.
- Abdulrahman Y.A., Ali S.F., Faizi H.S. (2012): Effect of sucrose and ascorbic acid concentrations on vase life of snapdragon (Antirrhinum majus L.) cut flower. International Journal of Pure and Applied Sciences and Technology, 13: 32-41.
- Abri F., Ghasemmezhad M., Hasansajedi R., Bakhshi. D. (2013): Effect of ascorbic acid on vase life and petal senescence in cut rose flowers (Rosa hybrida) cv. 'Royal Class'. American-Eurasian Journal of Agricultural and Environmental Sciences, 13: 38-43.
- Ahmad I., Dole J.M., Blazich F.A. (2014): Effects of daily harvest time on postharvest longevity, water relations, and carbohydrate status of selected specialty cut flowers. HortScience, 49: 297-305.
Go to original source...
- Asrar A.W.A. (2012): Effects of some preservative solutions on vase life and keeping quality of snapdragon (Antirrhinum majus L.) cut flowers. Journal of the Saudi Society of Agricultural Sciences, 11: 29-35.
Go to original source...
- Azizi S., Onsinejad R., Kaviani B. (2015): Effect of ascorbic acid on post-harvest vase life of cut Lisianthus (Eustoma grandiflorum L.) flowers. ARPN Journal of Agricultural and Biological Science, 10: 417-420.
- Balouchi Z., Peyvast G.-A., Ghasemnezhad M., Dadi M. (2012): Effects of ascorbic acid in delaying florets senescence of broccoli during post-harvest storage. South Western Journal of Horticulture Biology and Environment, 3: 167-183.
- Banaee S., Hadavi E., Moradi P. (2013): Effect of ascorbic acid, 8-hydroxyquinoline sulfate and sucrose on the longevity and anthocyanin content of cut gerbera flowers. Current Agriculture Research Journal, 1: 29-33.
Go to original source...
- Banjaw D.T. (2017): Review on effect of essential oil on vase life of cut flowers. Research & Reviews: Journal of Agriculture and Allied Science, 6: 14-17.
- Basiri Y., Zarei H., Mashayekhy K., Pahlavany M.H. (2011): Effect of rosemary extract on vase life and some qualitative characteristics of cut carnation flowers (Dianthus carryophyllus cv. 'White Librity). Journal of Stored Products and Postharvest Research, 2: 261-265.
- Baskaran V., Jayanthi R., Janakiram T., Abirami K. (2010): Evaluation of post harvest quality of some cultivars of chrysanthemum. Journal of Horticultural Science, 5: 81-83.
Go to original source...
- Bayat H., Aminifard M.H. (2017a): Salicylic acid treatment extends the vase life of five commercial cut flowers. Electronic Journal of Biology, 13: 67-72.
- Bayat H., Aminifard M.H. (2017b): Salicylic acid treatment extends the vase life of five commercial cut flowers. Electronic Journal of Biology, 13: 67-72.
- Bhaskar V.V., Rao P.V., Reddy R.S. (2017): Effect of different chemicals on the microbial growth during vase life period of cut rose cv. 'First Red.' International Journal of Current Microbiology and Applied Science, 6: 812-820.
Go to original source...
- Budiarto K. (2019): Effects of ascorbic acids on post-harvest longevity of chrysantemum cut flowers. Planta Tropika: Journal of Agro Science, 7: 33-40.
Go to original source...
- Clark E.M.R., Dole J.M., Carlson A.S., Moody E.P., McCall I.F., Fanelli F.L., Fonteno W.C. (2010): Vase life of new cut flower cultivars. HortTechnology, 20: 1016-1025.
Go to original source...
- Conklin P. L. (2001): Recent advances in the role and biosynthesis of ascorbic acid in plants. Plant, Cell and Environment, 24: 383-394.
Go to original source...
- Davey M.W., Van Montagu M., Inze D., Sanmartin M., Kanellis A., Smirnoff N., Benzie I.J.J., Strain J.J., Favell D., Fletcher J. (2000): Plant L-Ascorbic acid : Chemistry, function, metabolism, bioavailability and effects of processing. Journal of the Science of Food and Agriculture, 80: 825-860.
Go to original source...
- Davies F.T., He C., Chau A., Heinz K.M., Cartmill A.D. (2004): Fertility affects susceptibility of chrysanthemum to cotton aphids: Influence on plant growth, photosynthesis, ethylene evolution, and herbivore abundance. Journal of the American Society for Horticultural Science, 129: 344-353.
Go to original source...
- Dole J.M., Carlson A.S., Crawford B.D., McCall I.F. (2013): Vase life of new cut flowers. Acta Horticulturae (ISHS), 1000: 63-70.
Go to original source...
- Dung C.D., Seaton K., Singh Z. (2016): Factors affecting variation in the vase life response of waxflower cultivars (Myrtaceae: Chamelaucium Desf. and Verticordia spp. Desf.) tested under various vase solutions. Folia Horticulturae, 28: 41-50.
Go to original source...
- Edrisi B., Sadrpoor A., Saffari V.R. (2011): Effects of chemicals on vase life of cut carnation (Dianthus carryophyllus L. 'Delphi) and microorganisms population in solution. Journal of Ornamental and Horticultural Plants, 2: 1-11.
- Elbimabi M.E.N.E. (2011): Vase life extension of rose cut flowers as influenced by silver nitrate and sucrose pulsing. American Journal of Agricultural and Biological Sciences, 6: 128-133.
Go to original source...
- Elhindi K.M. (2012): Evaluation of several holding solutions for prolonging vase-life and keeping quality of cut sweet pea flowers (Lathyrus odoratus L.). Saudi Journal of Biological Sciences, 19: 195-202.
Go to original source...
Go to PubMed...
- Forti G., Elli G. (1995): The function of ascorbic acid in photosynthetic phosphorylation. Plant Physiology, 109: 1207-1211.
Go to original source...
Go to PubMed...
- Fragniere C., Serrano M., Abou-Mansour E., Métraux J.P., L'Haridon F. (2011): Salicylic acid and its location in response to biotic and abiotic stress. FEBS Letters, 585: 1847-1852.
Go to original source...
Go to PubMed...
- Gallie D.R. (2013): L-Ascorbic acid: A multifunctional molecule supporting plant growth and development. Scientifica, ID: 795964.
Go to original source...
- Hariri H., Seman A., Hayati H., Rafdi M. (2019): Effects of salicylic acid and sucrose solution on vase life of cut Antigonon leptopus. Universiti Malaysia Terengganu Journal of Undergraduate Research, 1: 80-91.
Go to original source...
- Hashemabadi D. (2014): The role of silver nano-particle and silver thiosulfate on the longevity of cut carnation (Dianthus carryophyllus) flowers. Journal of Environmental Biology, 35: 661-666.
- Heidarnezhadian H., Eghbali B., Kazemi M. (2017): Postharvest life of cut gebera flowers as affected by salicylic acid and citric acid. Trakia Journal of Science, 15: 27-29.
Go to original source...
- Hossain A.B.M.S., Boyce A.N., Majid H.M.A. (2008): Vase life extension and chlorophyll fluorescence yield of bougainvillea flower as influenced by ethanol to attain maximum environmental beautification as ornamental components. American Journal of Environmental Sciences, 4: 625-630.
Go to original source...
- Ichimura K. (1998): Improvement of postharvest life in several cut flowers by the addition of sucrose. Jarq-Japan Agricultural Research Quarterly, 32: 275-280.
- In B.C., Seo J.Y., Lim J.H. (2016): Preharvest environmental conditions affect the vase life of winter-cut roses grown under different commercial greenhouses. Horticulture Environment and Biotechnology, 57: 27-37.
Go to original source...
- Jowkar M.M., Kafi M., Khalighi A., Hasanzadeh N. (2012): Postharvest physiology and microbial impact of hydroxy quinoline citrate as "Cherry Brandy" rose vase solution biocide. Annals of Biological Research, 3: 2238-2247.
- Kazemi M., Gholami M., Bahmanipour F. (2012): Effect of silicon and acetic acid on antioxidant activity, membrane stability and ACC-oxidase activiy in relation to vase life of carnation cut flower. Biotechnology, 11: 87-90.
Go to original source...
- Kazemi M., Hadavi E., Hekmati J. (2011): Role of salicylic acid in decreaes of membrane sanescence in cut carnation flowers. American Journal of Plant Physiology, 6: 106-112.
Go to original source...
- Kazemi M., Ameri A. (2012): Posthavest life of cut gerbera flowers as affected by nano-silver and acetylsalicylic acid. Asian Journal of Biochemistry, 7: 106-111.
Go to original source...
- Khan P., Mehraj H., Taufique T., Ahsan N., Jamaluddin A.F.M. (2015): Vase life and keeping qulaity of Dendrobium orchid (Dendrobium sp.) on preservative solutions. International Journal of Experimetal Agriculture, 5: 22-27.
- Klessig D.F., Malamy J. (1994): The salicylic acid signal in plants. Plant Molecular Biology, 26: 1439-1458.
Go to original source...
Go to PubMed...
- Kobayakawa H., Imai K. (2012): Methyl jasmonate affects O2-inhibition of photosynthesis and ascorbic acid content in paddy rice grown at different CO2 concentrations. Environmental Control in Biology, 50: 335-345.
Go to original source...
- Marandi R.J., Hassani A., Abdollahi A., Hanafi S. (2011): Improvement of the vase life of cut gladiolus flowers by essential oils, salicylic acid and silver thiosulfate. Journal of Medicinal Plants Research, 5: 5039-5043.
- Mehdikhah M., Onsinejad R., Hashemabadi D. (2016): Postharvest life of cut gerbera (Gerbera jamesonii) flowers as affected by salicylic acid, citric acid and ascorbic acid. ARPN Journal of Agricultural and Biological Science, 11: 170-174.
- Mehraj H., Mahasen M., Taufique T., Shiam I.H., Jamal Uddin A.F.M. (2013): Vase life analysis of yellow gladiolus using different vase solutions. Journal of Experimental BioScience, 4: 23-26.
- Nemati S.H., Tehranifar A., Esfandiari B., Rezaei A. (2013): Improvement of vase life and postharvest factors of Lilium orientalis 'Bouquet' by silver nano particles. Notulae Scientia Biologicae, 5: 490-493.
Go to original source...
- Obadamudalige B.S., Beneragama C.K., Mawalagedera S.M.M.R. (2019): Extending the vase life of Peruvian lily (Alstroemeria spp.) with 1-methylcyclopropene and ascorbic acid. International Journal of Applied Sciences and Biotechnology, 7: 174-183.
Go to original source...
- Ravanbakhsh A., Mobasser H.R., Hasandokht M.R. (2016): Efefct of ascorbic acid and acetyl salicylic acid on the quality and vase life of cut flower gladiolus (Gladiolus persicus). International Journal of Agriculture and Bioscience, 6: 31-33.
- Rivas-San Vicente M., Plasencia J. (2011): Salicylic acid beyond defence: Its role in plant growth and development. Journal of Experimental Botany, 62: 3321-3338.
Go to original source...
Go to PubMed...
- Roodbaraky F., Hashemabad D., Vand S.H. (2012). Effect of salicylic acid on vase life of cut carnation (Dianthus carryophyllus L. cv. 'Liberty Abgr). Annals of Biological Research, 3: 5127-5129.
- Sardoei A.S., Mohammadi G.A., Rahbarian P. (2013): Interaction effect of salicylic acid and putrescine on vase life of cut narcissus flowers. International Journal of Advanced Biological and Biomedical Research, 1: 1569-1576.
- Sharma G., Srivastava R. (2014): Post-harvest life of cut chrysanthemum cultivars in relation to chemicals, wrapping material and storage conditions. Tropical Agricultural Research, 26: 195-201.
Go to original source...
- Shen C., Yang Y., Liu K., Zhang L., Guo H., Sun T., Wang H. (2016): Involvement of endogenous salicylic acid in irondeficiency responses in arabidopsis. Journal of Experimental Botany, 67: 4179-4193
Go to original source...
Go to PubMed...
- Smirnoff N. (2000): Ascorbate biosynthesis and function in photoprotection. Philosophical Transactions of the Royal Society B: Biological Sciences, 355: 1455-1464.
Go to original source...
Go to PubMed...
- Soleimany-Fard E., Hemmati K., Khalighi A. (2013): Improving the keeping quality and vase life of cut alstroemeria flowers by pre and post-harvest salicylic acid treatments. Notulae Scientia Biologicae, 5: 364-370.
Go to original source...
- Sudaria M.A., Uthairatanakij A., Nguyen H.T. (2017): Postharvest quality effects of different vaselife solutions on cut rose (Rosa hybrida L.). International Journal of Agriculture, Forestry and Life Science, 1: 12-20.
- Szarka A., Bánhegy G., Asard H. (2013): The inter-relationship of ascorbate transport, metabolism and mitochondrial, plastidic respiration. Antioxidants & Redox Signaling, 19: 1036-1044.
Go to original source...
Go to PubMed...
- Vahdati Mashhadian N., Tehranifar A., Bayat H., Selahvarzi Y. (2012): Salicylic and citric acid treatments improve the vase life of cut chrysanthemum flowers. Journal of Agricultural Science and Technology, 14: 879-887.
- Van Ieperen W., Van Meeteren U., Nijsse J. (2002): Embolism repair in cut flower stems: A physical approach. Postharvest Biology and Technology, 25: 1-14.
Go to original source...
- Wang R., Zheng X., Xu X. (2014). Evidence for physiological vascular occlusion in stems of cut gerbera cv. 'Hongyan'. Journal of Agricultural Science and Technology, 16: 365-372.
- Wani A.B., Chadar H., Wani A.H., Singh S., Upadhyay N. (2017): Salicylic acid to decrease plant stress. Environmental Chemistry Letters, 15: 101-123.
Go to original source...
- Zamani S., Kazemi M., Aran M. (2011): Postharvest life of cut rose flowers as affected by salicylic acid and glutamin. World Applied Sciences Journal, 12: 1621-1624.
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