The Effects of Foliar Gibberellic Acid Applications on Tuber Yield, Quality and Dormancy Period in Potato (Solanum tuberosum L.)

Authors

DOI:

https://doi.org/10.24925/turjaf.v12i11.1865-1871.6465

Keywords:

Potato, Gibberellic acid, tuber yield and quality, dormancy period, Leaf aplication

Abstract

This study was carried out in order to determine the effects of different doses of Gibberellic acid (GA3) applications on tuber yield, quality and dormancy period in potato. GA3 applications (0, 50, 100 and 200 mg GA3/L) were started 45 days after planting (pre-flowering period) and sprayed on leaves at 15-day intervals in 4 different periods. In the study, together with the GA3 applications, an increase of 56% in the number of tubers and up to 36% in the tuber yield, while the average tuber weight and marketable tuber rates decreased significantly. The highest tuber yield was obtained from 100 and 200 mg/L GA3 doses made 75 days after planting. GA3 applications caused tuber disorders, and the rate of cracked tubers and secondary growing tubers increased with the increase in GA3 dose. GA3 applications caused a decrease in chlorophyll (SPAD value) content and tuber dry matter ratio. The dormancy period, which was broken 110 days in the control, was shortened to 80 days with 200 mg/L GA3 applications made 90 days after planting. In the study, it was understood that the number and yield of tubers in potatoes can be increased significantly with foliar GA3 applications in production for seed purposes, and the dormancy period of tubers in the post-harvest storage period can be shortened and it can be advantageous especially for second potato productions.

References

Abdala, G. G., Castro, O. & Miersch Pearce, D. (2000). Changes in jasmonate and gibberellin levels during development of potato plants (Solanum tuberosum L). Plant Growth Regulators, 36(2): 121-126.

Alexopoulos, A. A., Aivalakis, G., Akoumianakis, K.A. & Passam, H.C. (2007). Effect of foliar applications of gibberellic acid or daminozide on plant growth, tuberisation, and carbohydrate accumulation in tubers grown from true potato seed. J. Hort. Sci. Biotechnol, 82: 535–540.

Alexopoulos, A.A., Akoumianakis, A.K., Vemmos, S.M. & Passum, H.C. (2006). The effect of postharvest application of gibberellic acid and benzyl adenine on duration of dormancy of potato produced by plant grown from true potato seeds. Post harvest biology and technology 46(1): 54-62.

Arıoğlu, H. & Onaran, H. (2002). Niğde koşulları patates yetiştiriciliğinde; farklı yumru iriliği ve bitki sıklığının, yumru verimi ve yumru kalibrasyonu üzerine etkileri. III. Ulusal Patates Kongresi, İZMİR, cilt.1, ss.125-135.

Barani, M., Akbari, N. & Ahmadi, H. (2013). The effect of gibberellic acid (GA3) on the size and sprouting of potato tubers (Solanum tuberosum L.). African Journal of Agriculture Research, 8(29): 3899-3903.

Caldiz, D. O. (1996). Seed potato (Solanum tuberosum L.) yield and tuber number increase after foliar applications of cytokinins and gibberellic acid under field and glasshouse conditions. Plant Growth Regul, 20: 185-88.

Cutter, E. G. (1992). Structure and development of the potato plant. Pages 65–146 in P. Harris, ed. The potato crop: the scientific basis for improvement. Chapman and Hall, London, UK.

Çalışkan, S., Hashemı, M.S., Akkamış, M., Aytekin, R. İ. & Bedir, M. (2021). Effect of Gibberellic Acid on Growth, Tuber Yield and Qualıty in Potatoes (Solanum tuberosum L.). Turk J. Field Crops, 26(2), 139-146. doi: 10.17557/tjfc.1033429.

Dahshan, A. M. A., Zaki, H. E. M., Moustafa, Y. M. M., Abdel-Mageed, Y. T. & Hassan, M. A. M. (2018). Effect of some growth regulators and natural extracts on yield and quality of potato. Minia Journal of Agriculture Research and Development, 38(2): 271-295.

El-Hamady, M. M. (2017). Growth and yield of potato Solanum tuberosum L. as influenced by soaking in GA3 and potassium fertilizer rates. Canadian Journal of Agriculture and Crops, 2(1): 50-59.

Hashemı, M. S. (2020). Patateste (Solanum tuberosum L.) Gibberellik Asit Uygulamasının Bitki Gelişimiyle Verim Ve Kalite Üzerine Etkileri. Niğde Ömer Halisdemir Üniversitesi Fen Bilimleri Enstitüsü, Yüksek lisans tezi. Niğde.

Hou, K., Chen, J. W., Li, J. Y., Shen, H., Chen, L. & Wu, W. (2018). Effect of gibberellic acid and chlormequat chloride on growth, coumarin content and root yield of Angelica dahurica var. formosana. J. Agr. Sci. Tech. 15: 1415-1423.

Ittersum, M. K. & Scholte, K. (1993). Shortening dormancy of seed potatoes by a haulm application of gibberellic acid and storage temperature regimes. American Journal of Potato Research 70(1): 7-19.

Jackson, S. D. & Prat, S. (1996). Control of tuberization in potato by gibberellins and phytochrome B. Physiol. Plant. 98:407-412.

Javanmardi, J. & Rasuli, F. (2017). Potato yield and tuber quality as affected by gibberellic acid and zinc sulphate. Iran Agricultural Research 36(2): 7-12.

Jbour, M. (2003). Potato tuber dormancy period and ways of its regulation. Doctoral thesis, Plant Breeding and Acclimatization Institute, Poland, Jadwisin, 128s.

Karaat, F. E. (2011). Effects of different growth regulators applications on plant growth and tuber yield and quality in early and main product potato growing. MSc Thesis. Hatay Mustafa Kemal University, Graduate School of Natural and Applied Sciences, p: 90 (in Turkish)

Kılıç, M. (2016). Gibberellik Asit ve Maleik Hidrazit Uygulamalarının Patates (Solanum tuberosum L.)’te Yumru Verimi ve Dormansi Süresi Üzerine Etkileri, Süleyman Demirel Üniversitesi, Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, Isparta.

Kolomiets, M. V., Hannapei, D. J., Chen, H., Tymeson, M. & Gladon, R. J. (2001). Lipoxygenase is involved in the control of potato tuber development. The Plant Cell Online, 13(3): 613-626.

Lorreta, J., Miktzel, G. & Nora, F. (1995) Dry Gibberellic acid combined with talc and fir bark enhances early and tuber growth of shepody. Am Potato J 72: 545-550.

Njoqu, M. K., Gathungu, G. K. & Daniel, P. M. (2015). Comparative effects of foliar application of gibberellic acid and benzylaminopurine on seed potato tuber sprouting and yield of resultant plants. American J. of Agriculture and Forestry, 3(5): 192-201.

Olsen, N., Kleinkopf, G. E. & Stark, J C. (2004). Physiological Disorders. Agric. Commun., Univ. of Idaho, Moscow. Pages 309-327

Öner, E. K. (2012). Turfanda Patates (Solanum tuberosum L.)’ te Dikim Zamanları ve Yumru Ön Uygulamalarının Verim ve Bazı Kalite Kriterlerine Etkisi. Ondokuz Mayıs Üniversitesi Fen Bilimleri Enstitüsü, Doktora Tezi, 159s, Samsun.

Puzina, T. I. (2004). Effect of zinc sulfate and boric acid on the hormonal status of potato plants in relation to tuberization. Russian Journal of Plant Physiology, 51(2): 209-215.

Salimi, K. H., Tavakkol, A. R., Hosseini, M. B. & Struik, P. C. (2010). Effects of Gibberellic Acid and Carbon Disulphide on Sprouting of Potato Minitubers. Scientia Horticulturae, 124, 14-18.

Sarkar, D. (2008). The signal transduction pathways controlling in planta tuberization in potato: an emerging synthesis. Plant Cell Reports, 27(1): 1-8.

Sharma, N., Kaur, N. & Gupta, A. K. (1998). Effects of gibberellic acid and chlorocholine chloride on tuberization and growth of potato (Solanum tuberosum L.). J. Food Sci. Agric., 78: 466-470.

Sillu, M., Patel, N. M., Bhadoria, H. S. & Wankhade, V. R. (2012). Effect of plant growth regulators and methods of application on growth and yield of potato (Solanum tuberosum L.) cv. KUFRI BADSHAH. Advance Research Journal of Crop Improvement, 3(2): 144-147.

Şanlı, A. & Cirit, Y. (2020). Tohumluk patates (Solanum tuberosum L.) üretiminin optimizasyonu: Dikim öncesi gibberellik asit uygulamaları ile dikim sıklığının etkileri. Yüzüncü Yıl Üniversitesi Tarım Bilimleri Dergisi, 30 (1): 156-165.

Wang, C. C., Wang, X. Y., Wang, K. C., Hu, J. J., Tang, M. X., He, W. & Vander Zaag, P. (2018). Manipulating aeroponically grown potatoes with gibberellins and calcium nitrate. American Journal of Potato Research, 95(4): 351-361.

Wiersema, S. G. (1985). Physiological Development of Potato Seed Tubers. Technical Information Bulletin 20. International Potato center, Lima, Peru. pp: 16.

Xu, S., Li, J., Zhang, X., Wei, H. & Cui, L. (2006). Effects of heat acclimation pretreatment on changes of membrane lipid peroxidation, antioxidant metabolites, and ultrastructure of chloroplasts in two cool-season turfgrass species under heat stress, Environmental and Experimental Botany, 56, 274-285.

Yıldırım, M. (2019). The Effects of Animal and Chemical Manure Applications on Plant Growth Yield and Quality in Potato (Solanum tuberosum L.)”, MSc Thesis, Nigde Omer Halisdemir University. Graduate School of Natural and Applied Sciences, Nigde (in Turkish).

Zainaldeen, M. A. & Abdul Rasool, I. J. (2018). Effect of folair application of gibberellin and nutrients on growth and yield of potato var. “Burren”. Iraqi Journal of Agricultural Sciences, 49(2): 168-176.

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Published

27.11.2024

How to Cite

Ok, F. Z., & Şanlı, A. (2024). The Effects of Foliar Gibberellic Acid Applications on Tuber Yield, Quality and Dormancy Period in Potato (Solanum tuberosum L.). Turkish Journal of Agriculture - Food Science and Technology, 12(11), 1865–1871. https://doi.org/10.24925/turjaf.v12i11.1865-1871.6465

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Research Paper