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Extending the Vase Life of Gerberas with Organic Compounds

Year 2024, Volume: 41 Issue: 3, 116 - 123, 25.11.2024
https://doi.org/10.16882/hortis.1553280

Abstract

The popular cut flower gerbera (Gerbera jamesonii) has a limited vase life at the end request of user because proper postharvest treatments are not used. Vulnerable to microbial contamination. The purpose of this study was to ascertain how various preservation solutions affected the cut Gerbera jamesonii flower (cv. Yeliz) quality and vase life. Cut flowers were placed in glass jars containing solutions in six different treatments: 100, 150, and 250 mg L-1 of citric acid; 100, 150, and 200 mg L-1 of thymol; and distilled water as a control. Fresh flower weight, water uptake, vase life, pH, EC, and pigment color assessment were among the parameters that were noted based on 0, 3, 6, 9, 12, and 15 days of storage. According to the results, the solution containing 250 mg L-1 of citric acid produced the highest values for fresh weight, water uptake, and flower vase life and least color change of the flowers. This was followed by the solution containing 100 mg L-1 of thymol. Flowers treated with 200 mg L-1 of thymol had the lowest fresh weight and vase life performance. The quality and vase life of cut Gerbera jamesonii flowers were found to be significantly affected by the use of 250 mg L-1 citric acid in preservation solutions. In comparison to other treatments, high dosages of tyhmol (150 and 200 mg L-1) had a negative impact on floral quality and vase life.

References

  • Alaey, M., Babalar, M., Naderi, R., & Kafi, M. (2011). Effect of pre and postharvest salicylic acid treatment on physio-chemical attributes in relation to vase-life of rose cut flowers. Postharvest Biology Technology, 61:91–94.
  • Alkaç, O.S., Belgüzar, S., & Güneş, M. (2023). Effects of organic acids, chemical treatments and herbal essential oils on the vase life of cut carnation (Dianthus caryophyllus L.) flowers. Emirates Journal of Food and Agriculture, 35(4): 332-341.
  • Amin, O.A. (2017). II-Effect of some chemical treatments on keeping quality and vase life of cut chrysanthemum flowers. Middle East Journal of Agriculture Research, 6(1): 221–243.
  • 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.
  • Babarabie, M., Zarei, H., & Varasteh, F. (2015). The Effect of rosemary essential oils and thymol on vase life and some physiological characteristics of Alstroemeria cut flowers. International Journal of Agriculture and Biosciences, 4(3): 122–126.
  • Bazaz, A.M., & Tehranifar, A. (2011). Effect of ethanol, methanol and essential oils as novel agents to improve vase-life of alstroemeria flowers. Journal of Biological and Environmental Sciences, 5(14): 41–46.
  • Botelho, M.A., Nogueira, N.A.P., Bastos, G.M., Fonseca, S.G.C., Lemos, T.L.G., Matos, F.J.A., Montenegro, D., Heukelbach, J.V.S., & Rao, G.A.C. (2007). Brito, Antimicrobial activity of the essential oil from Lippia sidoides, carvacrol and thymol against oral pathogens. Brazilian Journal of Medical and Biological Research, 40: 349-356.
  • Bounatirou, S., Simitis, S., Miguel, M.G., Faleiro, L., Rejeb, M.N., Neffati, M., Costa, M.M., Figueiredo A.C., Barroso, J.G., & Pedro, L.G. (2007). Chemical composition, antioxidant and antibacterial activities of the essential oils isolated from Tunisian Thymus capitatus Hoff. et link. Food Chemistry, 105: 146-155.
  • Braga, P.C., Culici, M., Alferi, M., & Dal Sasso, M. (2008). Thymol inhibits Candida albicans biofilm formation and mature biofilm. International Journal of Antimicrobial Agents, 31: 472–477.
  • Darandeh, N., & Hadavi, E. (2012). Effect of pre-harvest foliar application of citric acid and malic acid on chlorophyll content and post-harvest vase life of Lilium cv. Brunello. Frontiers in Plant Science, 2: 1-3.
  • da Silva, J.A.T. (2003). The cut flower: postharvest considerations. Online Journal of Biological Science, 3: 406-442.
  • Eidyan, B. (2010). Effect ofiron and citric acid foliar applicationsin combination with nitrogen fertigation on tuberose (Polianthes tuberosa L.). Horticulture. Karaj, Islamic Azad University, Karaj Branch 75.
  • Elgimabi, M.E.N.E.E., & Yagi, M.I. (2016). Different preservative solutions enhanced the vase life of carnation cut flowers (Dianthus caryophyllus). World Journal of Pharmaceutical and Life Sciences, 2(5): 32–41.
  • Flora Cultural International, AIPH/Union Fleurs (2022). “International Statistics Flowers and Plants 2021,” in AIPH/Union Fleurs International Flower Trade Association, vol. 70. (Holland). 224p.
  • He, S., Joyce, D.C., Irving, D.E., & Faragher, J.D. (2006). Stem end blockage in cut Grevillea ‘Crimson Yul-lo’ inflorescences. Postharvest Biology Technology, 41:78–84.
  • Hell, R., & Stephan, U.W. (2003). Iron uptake, trafficking and homeostasis in plants. Planta, 216: 541–551.
  • Hema, P., Bhaskar, V.V., Dorajeerao, A.V.D., & Suneetha D.R.S. (2018). Effect of post-harvest application of biocides on vase life of cut gerbera (Gerbera jamesonii Bolus ex. Hook) cv. Alppraz. International Journal of Current Microbiology and Applied, 7: 2596-2606.
  • Ichimura, K., & Goto, R. (2000). Effect of gibberellin A3 on leaf yellowing and vase life of cut Narcissus tazetta var. chinensis flowers. Journal of the Japanese Society for Horticultural Science, 69: 423–427.
  • Kazaz, S., Doğan, E., Kılıç, T., Şahin, E.G.E., & Seyhan, S. (2019). Influence of holding solutions on vase life of cut hydrangea flowers (Hydrangea macrophylla Thunb.). Fresenius Environmental Bulletin, 28: 3554–3559.
  • Kazaz, S., Kılıç, T., & Şahin, E.G.E. (2020). Extending the vase life of cut hydrangea flowers by preservative solutions. Acta Scientiarum Polonorum Hortorum Cultus, 19(4): 95–103.
  • Kordali, S., Çakır, A., Özer, H., Çakmakçı, R., Kesdek, M., & Mete, E. (2008). Antifungal, phytotoxic and insecticidal properties of essential oil isolated from Turkish Origanum acutidens and its three components, carvacrol, thymol and p-cymene. Bioresource Technology, 99: 8788–8795.
  • Li, C.X., Luan, W., Wang, M.X., Wei, C.M., Fan, Y.F., Ma, X.R., Mao, P., Tao, X., Wang, Y., & Dai, Y. (2018), Titanium ions inhibit the bacteria in vase solutions of freshly cut Gerbera jamesonii and extend the flower longevity. Microbial Ecology, 1-13.
  • Mansouri, H. (2012). Salicylic acid and sodium nitroprusside improve postharvest life of Chrysanthemums. Scientia Horticulture, 145: 29-33.
  • Martinez-Romero, D., Guillén, F., Valverde, J.M., Bailén, G., Zapata, P., Serrano, M., Castillo, S., & Valero, D. (2007). Influence of carvacrol on survival of Botrytis cinerea inoculated in table grapes. Journal of Food Microbiology, 144-148.
  • Mashhadian, N.V., Tehranifar, A., Bayat, H., & Selahvarzi, Y. (2012). Salicylic and citric acid treatments improve the vase life of cut chrysanthemum flowers. Journal of Agriculture, Science and Technology, 14:879–887.
  • Memar, Y.M., Raei, P., Alizadeh, N., Aghdam, M.A., & Kafil, H.S. (2017). Carvacrol and thymol: strong antimicrobial agents against resistant isolates. Reviews and Research in Medical Microbiology, 28(2): 63–67.
  • Mirdehghan, S.H., & Aghamolayi, Z. (2016). Application of various concentrations of essential oils of savory, ajowan and thyme to maintain quality and shelf life of gladiolus cut flower. International Journal of Horticultural Science and Technology, 3(1): 33–41.
  • MohdRafdi, H.H., Joyce, D.C., Irving, D.E., & Gantait, S.S. (2018). Citric acid, sucrose and Cu2+ as potential vase treatments for cut Acacia holosericea G. Don foliage stems. The Journal of Horticultural Science and Biotechnology, 93: 73-80.
  • Muraleedharan, A., Sha, K., Rajan, R.E.B., Kumar, C.P.S., & Joshi, J.L. (2019). Response of gerbera flowers to different chemicals used for increasing the vase life. Plant Archives,19(1): 593-595.
  • Naing, A.H., Lee, K., Kim, K.O., Ai, T.N., & Kim, C.K (2017). Involvement of sodium nitroprusside (SNP) in the mechanism that delays stem bending of different gerbera cultivars. Frontiers Plant Science, 8: 2045.
  • Nowak, J., & Rudnicki, R.M. (1990). Postharvest handling and storage of cut flowers florist, greens and potted plants. Timber Press. 210 p.
  • Paul, D., Jannat, A., Mahmud, A.A., Akhter, M.J., & Mahmood, S. (2021). Preservative solutions on vase life and quality of cut Polianthes tuberosa L. Ornamental Horticalture, 27: 417-424.
  • Pourianejad, F., Hasanzadeh, N., & Kalatejarei, S. (2014). The effect of herbal essential oil in preservative solution, on quantitative, vase life, bacteria-induced stem xylem blockage of Lisianthus var. echo. Agrivita, 36(2): 174–181.
  • Perik, R.R.J., Razé D., Ferrante, A., & van Doorn, W.G. (2014). Stem bending in cut Gerbera jamesonii flowers: effects of a pulse treatment with sucrose and calcium ions. Postharvest Biology Technology, 98: 7-13.
  • Rafi, Z.N., & Ramezanian, A. (2013). Vase life of cut rose cultivars ‘Avalanche’ and ‘Fiesta’ as affected by Nano-Silver and S-carvone treatments. South African Journal of Botany, 86: 68–72.
  • Salehi Sardoei, A., Mohammadi, G.A., & Shahdadneghad, M. (2014). Interaction effect of temperature and thyme essential oil on vase life of cut narcissus flowers. European Journal of Experimental Biology, 4(2): 82–87.
  • Shabanian, S., Esfahani, M.N., Karamian, R., & Tran, L.S.P. (2018). Physiological and biochemical modifications by postharvest treatment with sodium nitroprusside extend vase life of cut flowers of two gerbera cultivars. Postharvest Biology Technology, 137: 1–8
  • Shabanian, S., Esfahani, M.N., Karamian, M., & Tran, LS.P. (2019). Salicylic acid modulates cutting-induced physiological and biochemical responses to delay senescence in two gerbera cultivars. Plant Growth Regulation, 87(2): 245-256.
  • Shanan, N. (2017). Optimum pH value for improving postharvest characteristics and extending vase life of Rosa hybrida cv. Tereasa cut flowers. Asian Journal of Advances in Agricultural Research, 1: 1-11.
  • Sharififar, F., Moshafi, M.H., Mansouri, S.H., Khodashenas, M., & Khoshnoodi, M. (2007). In vitro evaluation of antibacterial and antioxidant activities of the essential oil and methanol extract of endemic Zataria multiflora Boiss Food Control, 800-805.
  • Svircev, A.M., Smith, R.J., Zhou, T., Hernade, M., Liu, W. & Chud, C.L. (2007). Effects of thymol fumigation on survival and ultrastracture of Monilinia fructicola. Postharvest Biology and Technology, 45: 228–233.
  • Tonooka, M., Yoshiyuki, H., Hideki, N., & Ichimura, K., (2023a). The extension of vase life in cut gerbera flowers through pretreatment with gibberellin a3 in combination with calcium chloride, Horticulture, 9(10): 1106.
  • Tonooka, M., Homma, Y., Toyoizumi, T., & Ichimura, K. (2023b). Stem bending in cut gerbera under the condition of suppressing bacterial proliferation is associated with the weakening of the stem strength. Scientia Horticulture, 319: 112153.
  • van Doorn, W.G. (1997). Water relations of cut flowers. Horticulture Review, 18: 1-85.
  • Yagi, M.I., & Elgimabi, M.E.N.E.E. (2014). Effect of bactericides and sucrose pulsing on longevity and vase life of rose cut flowers. International Journal of Basic and Applied Sciences, 14(2): 117–129.
  • Yahyazadeh, M., Omidbaigi, R., & Zare, H. (2008), Taheri Effect of some essential oils on mycelial growth of Penicillium digitatum Sacc. World Journal of Microbiology and Biotechnology, 24 pp.
Year 2024, Volume: 41 Issue: 3, 116 - 123, 25.11.2024
https://doi.org/10.16882/hortis.1553280

Abstract

References

  • Alaey, M., Babalar, M., Naderi, R., & Kafi, M. (2011). Effect of pre and postharvest salicylic acid treatment on physio-chemical attributes in relation to vase-life of rose cut flowers. Postharvest Biology Technology, 61:91–94.
  • Alkaç, O.S., Belgüzar, S., & Güneş, M. (2023). Effects of organic acids, chemical treatments and herbal essential oils on the vase life of cut carnation (Dianthus caryophyllus L.) flowers. Emirates Journal of Food and Agriculture, 35(4): 332-341.
  • Amin, O.A. (2017). II-Effect of some chemical treatments on keeping quality and vase life of cut chrysanthemum flowers. Middle East Journal of Agriculture Research, 6(1): 221–243.
  • 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.
  • Babarabie, M., Zarei, H., & Varasteh, F. (2015). The Effect of rosemary essential oils and thymol on vase life and some physiological characteristics of Alstroemeria cut flowers. International Journal of Agriculture and Biosciences, 4(3): 122–126.
  • Bazaz, A.M., & Tehranifar, A. (2011). Effect of ethanol, methanol and essential oils as novel agents to improve vase-life of alstroemeria flowers. Journal of Biological and Environmental Sciences, 5(14): 41–46.
  • Botelho, M.A., Nogueira, N.A.P., Bastos, G.M., Fonseca, S.G.C., Lemos, T.L.G., Matos, F.J.A., Montenegro, D., Heukelbach, J.V.S., & Rao, G.A.C. (2007). Brito, Antimicrobial activity of the essential oil from Lippia sidoides, carvacrol and thymol against oral pathogens. Brazilian Journal of Medical and Biological Research, 40: 349-356.
  • Bounatirou, S., Simitis, S., Miguel, M.G., Faleiro, L., Rejeb, M.N., Neffati, M., Costa, M.M., Figueiredo A.C., Barroso, J.G., & Pedro, L.G. (2007). Chemical composition, antioxidant and antibacterial activities of the essential oils isolated from Tunisian Thymus capitatus Hoff. et link. Food Chemistry, 105: 146-155.
  • Braga, P.C., Culici, M., Alferi, M., & Dal Sasso, M. (2008). Thymol inhibits Candida albicans biofilm formation and mature biofilm. International Journal of Antimicrobial Agents, 31: 472–477.
  • Darandeh, N., & Hadavi, E. (2012). Effect of pre-harvest foliar application of citric acid and malic acid on chlorophyll content and post-harvest vase life of Lilium cv. Brunello. Frontiers in Plant Science, 2: 1-3.
  • da Silva, J.A.T. (2003). The cut flower: postharvest considerations. Online Journal of Biological Science, 3: 406-442.
  • Eidyan, B. (2010). Effect ofiron and citric acid foliar applicationsin combination with nitrogen fertigation on tuberose (Polianthes tuberosa L.). Horticulture. Karaj, Islamic Azad University, Karaj Branch 75.
  • Elgimabi, M.E.N.E.E., & Yagi, M.I. (2016). Different preservative solutions enhanced the vase life of carnation cut flowers (Dianthus caryophyllus). World Journal of Pharmaceutical and Life Sciences, 2(5): 32–41.
  • Flora Cultural International, AIPH/Union Fleurs (2022). “International Statistics Flowers and Plants 2021,” in AIPH/Union Fleurs International Flower Trade Association, vol. 70. (Holland). 224p.
  • He, S., Joyce, D.C., Irving, D.E., & Faragher, J.D. (2006). Stem end blockage in cut Grevillea ‘Crimson Yul-lo’ inflorescences. Postharvest Biology Technology, 41:78–84.
  • Hell, R., & Stephan, U.W. (2003). Iron uptake, trafficking and homeostasis in plants. Planta, 216: 541–551.
  • Hema, P., Bhaskar, V.V., Dorajeerao, A.V.D., & Suneetha D.R.S. (2018). Effect of post-harvest application of biocides on vase life of cut gerbera (Gerbera jamesonii Bolus ex. Hook) cv. Alppraz. International Journal of Current Microbiology and Applied, 7: 2596-2606.
  • Ichimura, K., & Goto, R. (2000). Effect of gibberellin A3 on leaf yellowing and vase life of cut Narcissus tazetta var. chinensis flowers. Journal of the Japanese Society for Horticultural Science, 69: 423–427.
  • Kazaz, S., Doğan, E., Kılıç, T., Şahin, E.G.E., & Seyhan, S. (2019). Influence of holding solutions on vase life of cut hydrangea flowers (Hydrangea macrophylla Thunb.). Fresenius Environmental Bulletin, 28: 3554–3559.
  • Kazaz, S., Kılıç, T., & Şahin, E.G.E. (2020). Extending the vase life of cut hydrangea flowers by preservative solutions. Acta Scientiarum Polonorum Hortorum Cultus, 19(4): 95–103.
  • Kordali, S., Çakır, A., Özer, H., Çakmakçı, R., Kesdek, M., & Mete, E. (2008). Antifungal, phytotoxic and insecticidal properties of essential oil isolated from Turkish Origanum acutidens and its three components, carvacrol, thymol and p-cymene. Bioresource Technology, 99: 8788–8795.
  • Li, C.X., Luan, W., Wang, M.X., Wei, C.M., Fan, Y.F., Ma, X.R., Mao, P., Tao, X., Wang, Y., & Dai, Y. (2018), Titanium ions inhibit the bacteria in vase solutions of freshly cut Gerbera jamesonii and extend the flower longevity. Microbial Ecology, 1-13.
  • Mansouri, H. (2012). Salicylic acid and sodium nitroprusside improve postharvest life of Chrysanthemums. Scientia Horticulture, 145: 29-33.
  • Martinez-Romero, D., Guillén, F., Valverde, J.M., Bailén, G., Zapata, P., Serrano, M., Castillo, S., & Valero, D. (2007). Influence of carvacrol on survival of Botrytis cinerea inoculated in table grapes. Journal of Food Microbiology, 144-148.
  • Mashhadian, N.V., Tehranifar, A., Bayat, H., & Selahvarzi, Y. (2012). Salicylic and citric acid treatments improve the vase life of cut chrysanthemum flowers. Journal of Agriculture, Science and Technology, 14:879–887.
  • Memar, Y.M., Raei, P., Alizadeh, N., Aghdam, M.A., & Kafil, H.S. (2017). Carvacrol and thymol: strong antimicrobial agents against resistant isolates. Reviews and Research in Medical Microbiology, 28(2): 63–67.
  • Mirdehghan, S.H., & Aghamolayi, Z. (2016). Application of various concentrations of essential oils of savory, ajowan and thyme to maintain quality and shelf life of gladiolus cut flower. International Journal of Horticultural Science and Technology, 3(1): 33–41.
  • MohdRafdi, H.H., Joyce, D.C., Irving, D.E., & Gantait, S.S. (2018). Citric acid, sucrose and Cu2+ as potential vase treatments for cut Acacia holosericea G. Don foliage stems. The Journal of Horticultural Science and Biotechnology, 93: 73-80.
  • Muraleedharan, A., Sha, K., Rajan, R.E.B., Kumar, C.P.S., & Joshi, J.L. (2019). Response of gerbera flowers to different chemicals used for increasing the vase life. Plant Archives,19(1): 593-595.
  • Naing, A.H., Lee, K., Kim, K.O., Ai, T.N., & Kim, C.K (2017). Involvement of sodium nitroprusside (SNP) in the mechanism that delays stem bending of different gerbera cultivars. Frontiers Plant Science, 8: 2045.
  • Nowak, J., & Rudnicki, R.M. (1990). Postharvest handling and storage of cut flowers florist, greens and potted plants. Timber Press. 210 p.
  • Paul, D., Jannat, A., Mahmud, A.A., Akhter, M.J., & Mahmood, S. (2021). Preservative solutions on vase life and quality of cut Polianthes tuberosa L. Ornamental Horticalture, 27: 417-424.
  • Pourianejad, F., Hasanzadeh, N., & Kalatejarei, S. (2014). The effect of herbal essential oil in preservative solution, on quantitative, vase life, bacteria-induced stem xylem blockage of Lisianthus var. echo. Agrivita, 36(2): 174–181.
  • Perik, R.R.J., Razé D., Ferrante, A., & van Doorn, W.G. (2014). Stem bending in cut Gerbera jamesonii flowers: effects of a pulse treatment with sucrose and calcium ions. Postharvest Biology Technology, 98: 7-13.
  • Rafi, Z.N., & Ramezanian, A. (2013). Vase life of cut rose cultivars ‘Avalanche’ and ‘Fiesta’ as affected by Nano-Silver and S-carvone treatments. South African Journal of Botany, 86: 68–72.
  • Salehi Sardoei, A., Mohammadi, G.A., & Shahdadneghad, M. (2014). Interaction effect of temperature and thyme essential oil on vase life of cut narcissus flowers. European Journal of Experimental Biology, 4(2): 82–87.
  • Shabanian, S., Esfahani, M.N., Karamian, R., & Tran, L.S.P. (2018). Physiological and biochemical modifications by postharvest treatment with sodium nitroprusside extend vase life of cut flowers of two gerbera cultivars. Postharvest Biology Technology, 137: 1–8
  • Shabanian, S., Esfahani, M.N., Karamian, M., & Tran, LS.P. (2019). Salicylic acid modulates cutting-induced physiological and biochemical responses to delay senescence in two gerbera cultivars. Plant Growth Regulation, 87(2): 245-256.
  • Shanan, N. (2017). Optimum pH value for improving postharvest characteristics and extending vase life of Rosa hybrida cv. Tereasa cut flowers. Asian Journal of Advances in Agricultural Research, 1: 1-11.
  • Sharififar, F., Moshafi, M.H., Mansouri, S.H., Khodashenas, M., & Khoshnoodi, M. (2007). In vitro evaluation of antibacterial and antioxidant activities of the essential oil and methanol extract of endemic Zataria multiflora Boiss Food Control, 800-805.
  • Svircev, A.M., Smith, R.J., Zhou, T., Hernade, M., Liu, W. & Chud, C.L. (2007). Effects of thymol fumigation on survival and ultrastracture of Monilinia fructicola. Postharvest Biology and Technology, 45: 228–233.
  • Tonooka, M., Yoshiyuki, H., Hideki, N., & Ichimura, K., (2023a). The extension of vase life in cut gerbera flowers through pretreatment with gibberellin a3 in combination with calcium chloride, Horticulture, 9(10): 1106.
  • Tonooka, M., Homma, Y., Toyoizumi, T., & Ichimura, K. (2023b). Stem bending in cut gerbera under the condition of suppressing bacterial proliferation is associated with the weakening of the stem strength. Scientia Horticulture, 319: 112153.
  • van Doorn, W.G. (1997). Water relations of cut flowers. Horticulture Review, 18: 1-85.
  • Yagi, M.I., & Elgimabi, M.E.N.E.E. (2014). Effect of bactericides and sucrose pulsing on longevity and vase life of rose cut flowers. International Journal of Basic and Applied Sciences, 14(2): 117–129.
  • Yahyazadeh, M., Omidbaigi, R., & Zare, H. (2008), Taheri Effect of some essential oils on mycelial growth of Penicillium digitatum Sacc. World Journal of Microbiology and Biotechnology, 24 pp.
There are 46 citations in total.

Details

Primary Language English
Subjects Agricultural Engineering (Other)
Journal Section Araştırma Makalesi
Authors

Ezgi Doğan Meral 0000-0003-0854-7134

Nazım Danış This is me 0009-0009-4905-9023

Fatoş Öztekin This is me 0009-0006-0941-8659

Early Pub Date October 4, 2024
Publication Date November 25, 2024
Submission Date June 17, 2024
Acceptance Date September 20, 2024
Published in Issue Year 2024 Volume: 41 Issue: 3

Cite

APA Doğan Meral, E., Danış, N., & Öztekin, F. (2024). Extending the Vase Life of Gerberas with Organic Compounds. Horticultural Studies, 41(3), 116-123. https://doi.org/10.16882/hortis.1553280
AMA Doğan Meral E, Danış N, Öztekin F. Extending the Vase Life of Gerberas with Organic Compounds. HortiS. November 2024;41(3):116-123. doi:10.16882/hortis.1553280
Chicago Doğan Meral, Ezgi, Nazım Danış, and Fatoş Öztekin. “Extending the Vase Life of Gerberas With Organic Compounds”. Horticultural Studies 41, no. 3 (November 2024): 116-23. https://doi.org/10.16882/hortis.1553280.
EndNote Doğan Meral E, Danış N, Öztekin F (November 1, 2024) Extending the Vase Life of Gerberas with Organic Compounds. Horticultural Studies 41 3 116–123.
IEEE E. Doğan Meral, N. Danış, and F. Öztekin, “Extending the Vase Life of Gerberas with Organic Compounds”, HortiS, vol. 41, no. 3, pp. 116–123, 2024, doi: 10.16882/hortis.1553280.
ISNAD Doğan Meral, Ezgi et al. “Extending the Vase Life of Gerberas With Organic Compounds”. Horticultural Studies 41/3 (November 2024), 116-123. https://doi.org/10.16882/hortis.1553280.
JAMA Doğan Meral E, Danış N, Öztekin F. Extending the Vase Life of Gerberas with Organic Compounds. HortiS. 2024;41:116–123.
MLA Doğan Meral, Ezgi et al. “Extending the Vase Life of Gerberas With Organic Compounds”. Horticultural Studies, vol. 41, no. 3, 2024, pp. 116-23, doi:10.16882/hortis.1553280.
Vancouver Doğan Meral E, Danış N, Öztekin F. Extending the Vase Life of Gerberas with Organic Compounds. HortiS. 2024;41(3):116-23.