Abstract
Along with roses, carnations, and chrysanthemums, Gladiolus hybridus Hort. is an important ornamental plant species cultivated worldwide for cut flowers with long vase life. The study was conducted outdoors, in uncovered soil, in the years 2022–2023. The plant material consisted of daughter corms of five Gladiolus hybridus Hort. cultivars: Frizzled Coral Lace, Limoncello, Mon Amour, Nova Lux, and Peter Pears. The study used chitosan with a molecular weight of 6000 g ∙ mol–1 at a concentration of 0.4%. The compound was applied by soaking the corms before planting and spraying or watering the plants. The corms were planted into the ground in the third decade of May. During the vegetation period, the course of the development phases was assessed, vegetative and generative traits were measured, and the corm yield was evaluated at the end of cultivation. Chitosan determined the course of the development phases, but this depended on the cultivar traits and the application method. The plants treated with chitosan grew taller and produced more leaves, but they did not differ in the number and diameter of the developed flowers from those not exposed to the biostimulant. Other vegetative and generative traits largely depended on the method of chitosan application. Watering and spraying demonstrated the most beneficial effect of the methods evaluated. Regardless of the method of delivering chitosan to the gladioli, it resulted in a higher weight growth index in the daughter corms.
References
- Abdul-Hafeez, E.Y., Ibrahim, O.H.M. (2021). Effects of chitosan and BABA foliar application on flowering and chemical characteristics of German chamomile Bode-gold. South Afr. J. Bot., 139, 241‒245. https://doi.org/10.1016/j.sajb.2021.01.037
- Akhtar, G., Faried, H.N., Razzaq, K., Ullah, S., Wattoo, F.M., Shehzad, M.A., Sajjad, Y., Ahsan, M., Javed, T., Des-soky, E.S., Abdelsalam, Nn.R., Chattha, M.S. (2022). chitosan-induced physiological and biochemical regula-tions confer drought tolerance in pot marigold (Calendula officinalis L.). Agronomy, 12, 474. https://doi.org/10.3390/agroomy12020474
- Ali, K.K., Asal, K.N.A. (2023). Effect of foliar application of calcium and nano-chitosan on the growth of rose seed-lings. IOP Conf. Ser.: Earth Environ. Sci., 1158, 042032. https://doi.org/10.1088/1755-1315/1158/4/042032
- Alsanam, M.A., Salih, Z.K. (2021). Response Polianthes tuberosa L. to cold storage time and chitosan on vegetive growth and floral. IOP Conf. Ser.: Earth Environ. Sci., 761, 012057. https://doi.org/10.1088/1755-1315/761/1/012057
- Amin, R., Dermawan, R., Pratiwi, Dawapa, M. (2019). Growth and production of gladiolus (Gladiolus hybridus L.) by various corm diameter and concentration of growth regulator Atonik. IOP Conf. Ser.: Earth and Environ. Sci., 343, 012024. https://doi.org/10.1088/1755-1315/343/1/012024
- Arshad, M.A., Akhtar, G., Rajwana, I.A., Ullah, S., Hussain, M.B., Amin, M., Faried, N., Razzaq, K., Shehzad, M.A., Ahsan, M., Sajjad, Y., Ahmed, I. (2022). Foliar application of chitosan improves plat biomass, physiological and biochemical attributes of rose (Gruss-an-Teplitz). Kuwait J. Sci., 49(2), 1‒14. https://doi.org/10.48129/kjs.11655
- Ashwini, A., Munikrishnappa, P.M., Balaji, S.K, Rajiv, K., Amreen, T., Mohan, K.S. (2019). Effect of plant growth regulators on vegetative and flowering parameters of gladiolus (Gladiolus hybridus L.) cv. Adigo yellow. Int. J. Chem. Stud., 7(2), 1553‒1556.
- Atteya A.K.G., Abdel-Maksoud B.A., Yahia A., Shible K., El-Kinany R.G. (2023). Impact of chitosan on growth, chemical components and essential oil yield of Lavandula officinalis plants. J. Agric. Env. Sci., 22(2), 264‒288. https://doi.org/10.21608/jaesj.2024.174957.1040
- Bartkowiak, A. (2001). Binary polyelectrolyte microcapsules based on natural polysaccharides. Wyd. PS, Szczecin.
- Bolagam, R., Natarajan, S. (2020). Effect of pre-harvest sprays of biostimulants on post-harvest vase life of cut Gladiolus cv. Arka Amar. Bioscan, 15(1), 015‒018.
- Byczyńska, A. (2018). Chitosan improves growth and bulb yield of pineapple lily (Eucomis bicolor Baker) an or-namental and medicinal plant. World Sci. News, 110, 159‒171.
- Chen, F., Li, Q., Su, Y., Lei, Y., Zhang, Ch. (2023). Chitosan spraying enhances the growth, photosynthesis, and resistance of continuous Pinellia ternata and promotes its yield and quality. Molecules, 28, 2053. https://doi.org/10.3390/molecules28052053
- Dhakal, K., Khanal, D., Ayer, D.K., Khanal, A.P., Pandey, L., Pant, S.S., Upadhyay, K., Magar, S.S.B., Pandey, L., Prasad, M.L., Joshi, S., Ashmit, K.C. (2017). Effect of Nitrogen and Phosphorous on growth, development and vase life of Gladiolus. Res. Rev. J. Agric. Sci. Technol., 6(3), 1‒7. https://doi.org/10.37591/rrjoast.v6i3.54
- El-Naggar, A.A.M., El-Nasharty, A.B. (2016). Effect of potassium fertilization on growth, flowering, corms produc-tion and chemical contents of Gladiolus hybrida L. cv. “Rose Supreme”. Alex. Sci. Exch. J., 37(4), 714‒728. https://doi.org/10.21608/asejaiqjsae.2016.2596
- Fahmy, A.A., Nosir, W.S. (2021). Influence of chitosan and micronutrients (Fe + Zn) concentrations on growth, yield components and volatile oil of Lavender plant. Sci. J. Flowers Ornam. Plants, 8(1), 87‒100. https:doi.org/10.21608/sjfop.2021.155941
- Jacob, M.E., Nair, D.S., Sreekala, G.S., Swapna, A., Sajitha, R.T., Viji, M.M. (2023). Effect of chitosan foliar spray on plant growth parameters in Ashwagandha. Pharma Innov., 12(9), 1393‒1398.
- Kentelky, E., Szekely-Varga, Z. (2021). Impact of foliar fertilization on growth, flowering, and corms production on five gladiolus varieties. Plants, 10, 1963. https://doi.org/10.3390/plants10091963
- Kisvarga, S., Farkas, D., Boronkay, G., Nemény, A., Orlóci, L. (2022). Effects of biostimulants in horticulture, with emphasis on ornamental plant production. Agronomy, 12, 1043. https://doi.org/10.3390/agronomy12051043
- Korbecka-Glinka, G., Wiśniewska-Wrona, M. (2021). The use of natural polymers for treatments enhancing sowing material. Polimery, 66(1), 11‒20. https://doi.org/10.14314/polimery.2021.1.2
- Kukla, P., Żurawik, P. (2022). Physiological status, rooting and bulb yield of leaf cuttings of Eucomis comosa (Houtt.) H.R. Wehrh. Sparkling Burgundy as affected by chitosan. Hort. Sci., 49(3), 154‒163. https://doi.org/10.17221/67/2021-HORTSCI
- Kumar, K., Singh, C.N., Beniwal, V.S., Ponder, R. (2016). Effect of spacing on growth, flowering and corm produc-tion of gladiolus (Gladiolus sp.) cv. American Beauty. Int. J. Environ. Agric. Biotechnol. (IJEAB), 1(3), 550‒554. http://dx.doi.org/10.22161/ijeab/1.3.36
- Kumari, R.V., Kumar, D.P., Mahadevamma, M., Arunkumar, B. (2013). Effect of integrated nutrient management on growth and floral parameters in gladiolus (Gladiolus hybridus L.) cv. American Beauty. Asian J. Hort., 8(1), 274‒279.
- Li, K., Xing, R., Liu, S., Li, P. (2020). Chitin and chitosan fragments responsible for plant elicitor and growth stimula-tor. J. Agric. Food Chem., 68(44), 12203‒12211. https://dx.doi.org/10.1021/acs.jafc.0c05316
- Liu, M. (2023). Effect of chitosan on plant growth, flowering, and substrate characteristics of potted Geranium (Pelargonium × hortorum). Holster Scholar Projects, 52, 1‒14. Available at: https://digitalcommons.lib.uconn.edu/srhonors_holster/52
- Malerba, M., Cerana, R. (2016). Chitosan effects on plant systems. Int. J. Mol. Sci., 17, 996. https://doi.org/0.3390/ijms17070996
- Malerba, M., Cerana, R. (2017). Recent advances of chitosan applications in plants. Polymers, 10, 118. https://doi.org/10.3390/polym10020118
- Maurya, R., Kumar, A. (2014). Effect of micronutrients on growth and corm yield of Gladiolus. Plant Arch., 14(1), 529‒531.
- Parveen, Z., Katiyar, P. (2020). Impact of plant growth substances on corm and cormel yield of different cultivars of gladiolus (Gladiolus grandiflorus L.). Int. J. Chem. Stud., 8(5), 205‒207. https://doi.org/10.22271/chemi.2020.v8.i5c.10300
- Ramos-Garcia, M., Ortega-Centeno, S., Hernandez-Lauzardo, A.N., Alia-Tejecal, I., Bosquez-Molina, E., Bautista-Basos, S. (2009). Response of gladiolus (Gladiolus spp) plants after exposure corms to chitosan and hot water treatments. Sci. Hortic., 121(4), 480‒484. https://doi.org/10.1016/j.scientia.2009.03.002
- Rayanoothala P.S., Dweh T.J., Mahapatra S., Kayastha S. (2024). Unveiling the protective role of chitosan in plant defense: a comprehensive review with emphasis on abiotic stress management. Crop Design 3, 100076. https://doi.org/10.1016/j.cropd.2024.100076
- Salachna, P., Zawadzińska, A. (2014). Effect of chitosan on plat growth, flowering and corms yield of potted free-sia. J. Ecol. Eng., 15(3), 97‒102. https://doi.org/10.12911/22998993.1110223
- Sathiyabama, M., Manikandan, A. (2021). Foliar application of chitosan nanoparticle improves yield, mineral content and boost innate immunity in finger millet plants. Carbohydr. Polym., 258, 117691. https://doi.org/10.1016/j.carbpol.2021.117691
- Singh, S., Kumar, S. (2017). Analysis of phenological development, production potentials and quality characteristics of gladiolus cv. Forta rosa under different environmental condition. Chem Sci. Rev. Lett., 6(22), 763‒771.
- Stasińska-Jakubas, M., Hawrylak-Nowak, B. (2022). Protective, biostimulating, and eliciting effects of chitosan and its derivatives on crop plants. Molecules, 27, 2801. https://doi.org/10.3390/molecules27092801
- Strojny, Z. (1993). Nawożenie roślin ozdobnych pod osłonami [Fertilizing ornamental plants under cover]. Centrum Ogrodnicze Skierniewice, 61.
- Thakur, T., Dhatt, K.K., Ahmed, S. (2015). Effect of planting time on growth and flowering of Gladiolus. Int. J. Curr. Res. Aca. Rev., 3(5), 145‒152.
- Van, S.N., Minh, H.D., Anh, D.N. (2013). Study of chitosan nanoparticles on biophysical characteristics and growth of Robusta coffee in green house. Biocatal. Agric. Biotechnol., 2, 289‒294. http://dx.doi.org/10.1016/j.bcab.2013.06.001
- Zawadzińska, A., Salachna, P. (2024). Effect of chitosan with different molecular weight on the growth and bulb yield of oriental Lily Mona Lisa. Progr. Chem. Appl. Chitin Deriv., 29, 306‒314. https://doi.org/10.15259/PCACD.29.024
- Zohara, F., Surovy, M.Z., Khatun, A., Prince, M.F.R.K., Akanda, M.A.M., Rahman, M., Islam, T.M. (2019). Chi-tosan biostimulant controls infection of cucumber by Phytophthora capsici through suppression of asexual re-production if the pathogen. Acta Agrobot., 72(1), 1763. https://doi.org/10.5586/aa.1763
- Żurawik, P. (2020). Growth, development and ornamental value of Miscanthus sinensis (Andersson) species de-pending on the dose of shrimp biowaste. Agriculture, 10(3), 67. https://doi.org/10.3390/agriculture10030067
- Żurawik, P. (2013). Wpływ suszu krewetkowego i chitozanu oraz metod uprawy na wzrost, rozwój, wartość dekora-cyjną i plon bulw potomnych frezji (Freesia Eckl. ex Klatt) [The impact of dried shrimp waste and chitosan as well as of the methods of cultivation on growth, development, decorative values and yield of cormlets (bulbotu-ber) of freesia (Freesia Eckl. Ex Klatt)]. Wyd ZUT w Szczecinie, Szczecin, 1‒128.
- Żurawik, P., Bartkowiak, A. (2009). Plon bulw potomnych frezji z grupy Beach w zależności od metody aplikacji chitozanu [Yield of the offspring corms in Freesia from Beach group depending on the method of chitosan ap-plication]. Zesz. Probl. Postęp. Nauk Rol., 539, 823‒829.
- Żurawik, P., Żurawik, A., Dobrowolska, A. (2017). Morphological traits, decorative value and yield of corms of freesia (Freesia Eckl. Ex Klatt) depending on the applied chitosan. Acta Sci. Pol. Hortorum Cultus, 16(1), 73‒83.
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