The effect of weather conditions and application of mineral fertilizers on quality indicators of Callistephus chinensis (L) Nees

Keywords: Callistephus chinensis, variety, height, number and diameter of inflorescences.

Abstract

With the development of modern floral business, Callistephus chinensis (L.) Nees is among the top three of the most popular crops, yielding only chrysanthemum and calendula in commercial cultivation. This is one of the most widespread seasonal decorative annual flower crops, which is beautifully cultivated in open ground, pots and bouquet flowers. The researches presented in the article were conducted in order to determine the influence of weather conditions during the growing season of Cchinensis on the research sites of the educational scientific-production complex of the Sumy National Agrarian University (Northeast Forest-steppe of Ukraine) and the effectiveness of the application of various norms of complex mineral fertilizers, introduced at the planting of seedlings into open ground, on the processes of growth, flowering and other qualitative characteristics of the five varieties. During the growing season, the climatic conditions of the region of conducting research, variety characteristics, and also the variability of the parameters of height, number and diameter of C. chinensis inflorescences of the varieties 'Olenka', 'Leleka', 'Litnia Nich', 'Tsarivna' and 'Yabluneva' were influenced by variability mode of mineral nutrition. Weather conditions of vegetation have an impact on the number and size of inflorescences. According to research results, it has been established that there is a certain relationship between the weather conditions of the year and the number of inflorescences. So, the increase in the amount of precipitation during the growing season contributes to the development of the vegetative mass, but also negatively affects the formation of the number of inflorescences C. chinensis. For most varieties, the optimal conditions for the development of the generative sphere were the normal conditions for moisture of the year, and for the 'Litnia Nich' variety it was dry. The greatest increase in height when fertilizing compared to control was observed by the variety 'Tsarivna' (15.9 %), the smallest - by the variety 'Olenka' (2.0 %). The formation of inflorescences of greater diameter by the plants of the varieties 'Olenka', 'Litnia Nich' and 'Tsarivna' was observed in 2016, and by the 'Leleka' and 'Yabluneva' varieties in 2017. For most varieties in 2015, the diameter of inflorescences was the smallest. Studies have shown that weather conditions do not have a significant effect on the diameter of inflorescence, unlike mineral nutrition. The diameter of the inflorescences was the highest in comparison with the control by the variety 'Olenka' (18.3%), the smallest - by the variety 'Tsarivna' (1.1 %). The most valuable morphological and decorative features of C. chinensis plants of the five varieties under study were formed according to the norms of complex mineral fertilizers (nitroamofoska) 6.0 g/m2. The further increase of norm was not appropriate.

References

1. Pratiksha, K., Kumar, R., Rao, T. M., Bharathi, T. U., Dhananjaya, M. V., & Bhargav, V. (2017). Evaluation of China aster [Callistephus chinensis (L.) Nees] F1 hybrids and parents for growth, flower quality, yield and postharvest life. Interna-tional Journal of Current Microbiology and Applied Science, 6(8), 1543–1549. doi: 10.20546/ijcmas.2018.702.200
2. Rai, T. S., & Chaudhary, S. V. S. (2016). Evaluation of China aster (Callistephus chinensis (L.) Nees) cultivars under mid-hill conditions of Himachal Pradesh. The Bioscan, 11(4), 2367–2370.
3. Kumari, P., Kumar, R., Manjunatha, Т., Rao, T. Bharathi, U., Dhananjaya, M. V. & Bhargav, V. (2018). Crossability Studies in China Aster [Callistephus chinensis (L.) Nees] Int. J. Curr. Microbiol. App. Sci., 7(2), 2169–2175. Doi: 10.20546/ijcmas.2018.702.260
4. Sowmya, K. A. & Prasad, V. M. (2017). Effect of NPK and Bio-Fertilizers on Growth, Yield, Quality of China aster (Callistephus chinensis) cv. Shashank for Cut Flower Production under Agroclimatic Conditions of Allahabad. Int. J. Curr. Mi-crobiol. App. Sci. 6(10), 3204–3210. doi:10.20546/ijcmas.2017.610.375
5. Chowdhuri, T. K., Rout, B., Sadhukhan, R. & Mondal, T. (2016). Performance Evaluation of Different Varieties of China aster (Callistephus Chinensis (L.) Ness) in Sub-Tropical Belt of West Bengal. International Journal of Pharmaceutical Science Invention, 5(8), 15–18.
6. Munikrishnappa, P. M., & Chandrashekar, S. Y. (2014). Effect of growth regulators on growth and flowering of China aster [Callistephus chinensis (L.) NEES.]-A REVIEW. Agricultural Reviews. (35): 57–63. doi: 10.5958/j.0976-0741.35.1.00
7. Barman, M., Paul, S., Guha, A., Choudhury, P.R. & Sen, J. (2017). Biofertilizer as prospective input for sustainable agriculture in India. Int. J. Curr. Microbiol. App. Sci., 6(11), 1177–1186. doi: org/10.20546/ijcmas.2017.611.141
8. Levandovska, S. M., Chernyak, V. M., & Oleshko, O. G. (2017). Pіdsumki іntrodukcії kultivarіv Callistephus chinensis (L.) Nees v Bіlocerkіvskomu NAU [Results of the introduction of cultural figures of Callistephus chinensis (L.)]. Naukovij Vіsnik NLTU Ukraїni. Lvіv. 27(4), 44–47 (in Ukrainian). doi: org/10.15421/40270409
9. Levandovska, S. M. (2015). Bіomorfologіchnі oznaki sortu Callistephus chinensis (L.) Nees v umovah Central'noї lіsostepovoї zoni Ukraїni [Biomorphological traits of Callistephus chinensis (L.) Nees cultivars under conditions of the Central Forest Steppe zone of Ukraine]. Sortovivchennya ta okhorona prav na sorti roslin, 3–4 (28–29), 29–32 (in Ukrainian). doi: 10.21498/2518-1017.3-4(28-29).2015.58451
10. Levandovskaya, S. N. (2017) Morfologicheskaya izmenchivost kultivarov Callistephus chinensis (L.) Nees v uslovi-yax introdukcii v Pravoberezhnoj Lesostepi Ukrainy [Morphological variability of cultivars Callistephus chinensis (L.) Nees under conditions of introduction in the Right-Bank Forest-Steppe of Ukraine]. Izvestiya Sankt-Peterburgskoj lesotexnicheskoj akade-mii. Sankt-peterburg: spbgltu, 218, 20–30 (in Russian). doi: 10.21266/2079-4304.2017.218.20-30
11. Wani, M., Khan, F. U., Nazki, I., Khan, F. A., Khan, S., & Ali, T. N. (2018). Phytomorphology of Callistephus chinen-sis as Influenced by Differential Planting Geometry, Pinching and Compound Nutrient Sprays. Current Journal of Applied Sci-ence and Technology, 26(4), 1‒11. https://doi.org/10.9734/CJAST/2018/40510
12. Bose, B. Subash Chanda, Prasad, V. M. D., Sankara, Hari Prasad, & Sudha, G. (2018). Effect of Integrated Nutrient Management on growth of the China aster (Callistephus chinensis L. Nees). Pit and Pot. Journal article: Plant Archives. 18(1), 676–678.
13. Mukesh, K., & Veena, Chaudhary. (2018). Effect of Integrated Sources of Nutrients on Growth, Flowering, Yield and Soil Quality of Floricultural Crops: A Review. Int.J.Curr.Microbiol.App.Sc,. 7(03), 2373–2404. doi.org/10.20546/ijcmas.2018.703.278
14. Muktanjli, J., Paithankar, D. H., Warade, A. D., Anjali, M., & Ambare, T. P. (2004). Effect of graded levels of nitrogen and phosphorus on growth and flower production of China aster cv. ′Local′ Adv. Pl. Sci., 17(1), 163–165.
15. Maheta, P., Polara, N.D., Rathod, J., Barad, A.V., & Bhosale N. (2016). Response of China Aster (Callistephus chinensis L. Nees) cv. ’Poornima’ to different levels of nitrogen and phosphorus in medium black soil. HortFlora Res. Spectrum, 5(2), 120–123.
16. Maninderpal Singh, Sharma, B. P., & Gupta, Y.C. (2017). Response of China aster (Callistephus chinensis (L.) Nees) cv. Kamini to different combinations of NPK and biofertilizers. Indian J. Hort. 74(3), 458‒461. doi: 10.5958/0974-0112.2017.00089.5
17. Khanna, P. R., Bohra, M., Punetha, P., & Nautiyal, B. P. (2016). Studies on the effect of organic manures and psb on vegetative and floral parameters of China aster (Callistephus chinensis (L.) Ness.) cv. ’Kamini’ under mid hills region of Himalaya. The Bioscan, 11(4), 2707– 2710.
18. Kirar, K.P.S., Lekhi, R., Sharma, S., & Sharma, R. (2014). Effect of integrated nutrient management practices on growth and flower yield of China aster (Callistephus chinensis (L.) Ness) cv. ′Princess′. Agriculture: Towards a New Paradigm of Sustainability, Mishra, G.C. (Ed.), Excellent Publishing House, New Delhi, 234–237.
19. Masaye, S. S., & Rangawa, A. D. (2009). Effect of different levels of NPK on flower quality of China aster (Callistephus chinensis L. Nees) var. Poornima. Ann. Agri Bio Res., 14(2), 153–158.
20. Singh, K. P., & Sangama (2000). Effect of graded level of N and P on China aster (Callistephus chinensis L.) cultivar Kamini. Indian J. Hort., 57(1), 87–89.
21. Sharma, G., Sahu, N. P., & Shukla, N. (2017). Effect of bio-organic and inorganic nutrient sources on growth and flower production of African marigold. Horticulturae, 3, 11. doi: 10.3390/horticulturae3010011
22. Sonalnath, S. K., Gupta, A. K., Kumar, S. & Lather, R. (2010). Studies on effect of N and P on growth of China aster cv. PG. White. Haryana J. Hortic Sci., 39(3-4), 298–299.
23. Verma, V. K., Verma, J. P., Verma, H. K. & Meena, R. K. (2018). Efficacy of micro-nutrients on growth and flower production of China aster [Callistephus chinensis (L.) NEES] cv. Princess. International Journal of Agricultural Scienc-es,14(1),160–164. doi:10.15740/HAS/IJAS/14.1/160-164
24. Pooja, Maheta, Polara, N. D., & Jyotika, Rathod (2016). Effect of nitrogen and phosphorus on growth, flowering and flower yield of China aster (Callistephus chinensis L. Nees) cv. POORNIMA. Asian Journal of Horticulture, 11(1), 132–135. doi: 10.15740/HAS/TAJH/11.1/132-135
25. Vijayakumar, S., Rajadurai, K. R., & Pandiyaraj, Р. (2017). Effect of Plant Growth Regulators on Flower Quality, Yield and Postharvest Shelf Life of China Aster. International Journal of Agricultural Science and Research, 7(2), 297–304.
26. Bejdeman, I. N. (1974). Metodika izucheniya fenologii rastenij i rastitel`ny`kh soobshhestv Metodicheskie ukazaniya. Sibirskoe otdelenie izd-vo «Nauka», Novosibirsk. (in Russian).
27. Metodika fenologicheskikh nablyudenij v botanicheskikh sadakh SSSR (1979). Byulleten` Glavnogo botanicheskogo sada, 113, 3‒8 (in Russian).
28. Mezhdunarodny`e pravila analiza semyan : per. s angl. M. : Kolos. 1984. 309 (in Russian).
29. Bilov, V. N. (1978). Osnovy` sravnitel`noj sortooczenki dekorativny`kh rastenij. Introdukcziya i selekcziya czvetochno-dekorativny`kh rastenij, M. : Nauka, 7–32 (in Russian).
30. Fedorov, A. A., & Artyushenko, Z. T. (1975). Atlas po opisatel`noj morfologii vy`sshikh rastenij. Czvetok. Nauka, Leningrad (in Russian).
31. Shevel, L. A., & Usmanova, N. V. (2006). Metodi viprobuvannja sortіv kal'cіju kitajs'kogo (Callistephus chinensis (L.) Nees) na viraznіst', rіvnomіrnіst' ta stіjkіst'. [Methods of testing varieties calceus Chinese (Callistephus chinensis (L.) Nees) for distinctness, uniformity and stability]. State service for the protection of rights to plant varieties. Ukrainian Institute of examina-tion of plant varieties. Aref, K. (in Ukrainian).
Published
2019-12-25
How to Cite
Melnyk, T., & Surgan, O. (2019). The effect of weather conditions and application of mineral fertilizers on quality indicators of Callistephus chinensis (L) Nees. Bulletin of Sumy National Agrarian University. The Series: Agronomy and Biology, (4(38), 30-40. https://doi.org/10.32845/agrobio.2019.4.5