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Effect of growth regulators and colchicine on regeneration of two potato cultivars in vitro


Citation :- Effect of growth regulators and colchicine on regeneration of two potato cultivars in vitro. Res. Crop. 24: 548-554
HASSAN ABU-QAOUD, BAKER BSHARAT AND MUNQEZ SHTAYA hassan@najah.edu
Address : Department of Plant Production and Protection, Faculty of Agriculture and Veterinary Medicine, An-Najah National University, Nablus P.O. Box 707, Palestine
Submitted Date : 28-06-2023
Accepted Date : 25-08-2023

Abstract

The effect of different levels of Benzyl adenine (BA) and Naphthalene acetic acid (NAA) on in vitro regeneration of Spunta and Mondial potato cultivars were studied, in addition, the effect of different levels of colchicine administered either as part of MS media (0.0, 10 μ M, 100 μ M and 1 mM) or by soaking potato buds (0.0, 1, 2 and 3 mM) on in vitro regeneration of two potato cultivars was studied in the Faculty of Agriculture and Veterinary Medicine, An-Najah National University, Tulkarm, Palestine. Higher shoot number was obtained when BA at 1 and 2 ppm were combined with 0.5 ppm NAA or without NAA, with variation between the two cultivars. Root number was significantly affected with the hormone levels, higher root number per bud in Spunta cultivar was obtained when NAA was utilized exclusively at 1 and 0.5 ppm respectively, however with Mondial cultivar, the higher number was observed at 1 ppm NAA. Significant effect of colchicine on shoot multiplication in both cultivars was observed, higher average  shoot number for both cultivars (3.25 and 3.07)   was recorded when higher level of colchicine ( 1mM and 100 μ M) was added to the media for “Spunta’ and “Mondial” respectively. When potato buds were soaked in colchicine, no significant effect on regeneration ability of the two cultivars was observed. Our results indicated a positive effect of colchicine on in vitro regeneration of two potato cultivars, therefore, protocols of polypolidization of potato through in vitro culture could be implemented.

Keywords

Colchicine growth regulators potato regeneration

References

Abu-Qauod, H. A., Alkowni, R. and Shtaya, M. J. (2022). Meristems culture for virus irradiation in potato (Solanum tuberosum) cultivars in Palestine. Res. Crop. 23: 363-69.
Abu-Qaoud, H. and Shtaya, M. J. (2014). The effect of colchicine on adventitious shoot regeneration from cultured leaf explants of Petunia hybrida. Br. Biotechnol J. 4: 531-40.
Ahmad, I., Nasir, I. A., Haider, M. S., Javed, M. A., Javed, M. A., Latif, Z. and Husnain, T. (2010). In vitro induction of mutation in potato cultivars. Pak. J. Phytopathol. 22: 51-57.
Mahbube, A. M, Rezaul, K. M., Abdul Aziz, M., Monzur H. M., Bulbul, A. and Abul, M. (2011). Induction and evaluation of polyploidy in some local potato varieties of Bangladesh. J. Biodiversity Environ. Sci. 1: 16-21.
Azizan, N. I., Shamsiah, A., Hasan, N. A. and Hussein, S. (2021). Morphological characterization of Colchicine-induced Mutants in Stevia rebaudiana. IOP Conf. Ser.: Earth Environ. Sci757: doi. 10.1088/1755-1315/757/1/012006.
Badoni, A. and Chauhan, J. S. (2009). Effect of growth regulators on meristem-tip development and in vitro multiplication of potato cultivar ‘Kufri Himalini’. Nat. Sci. 7: 31-34
Chakraborti, S. P., Vijayan, K., Roy, B. N. and Qadri, S. M. H. (1998). In vitro induction of tetraploidy in mulberry (Morus alba L.). Plant Cell Rep. 17: 799-803.
Eng, W. H. and Ho, W. S. (2019). Polyploidization using colchicine in horticultural plants: a review. Scientia Hortic. 246: 604-17.
FAOSTAT Agriculture (2021). FAO statistical database. http://www.fao.org/corp/statistics/en/.
Ganga, M. and Chezhiyan, N. (2002). Influence of the antimitotic agent’s colchicine and oryzalin on in vitro regeneration and chromosome doubling of diploid bananas (Musa spp.). J. Hort. Sci. Biotechnol. 77: 572-75.
Hajare, S. T., Chauhan, N. M. and Kassa, G. (2021). Effect of growth regulators on in vitro micropropagation of potato (Solanum tuberosum L.) Gudiene and Belete varieties from Ethiopia. Scientific World J. 2021: doi.org/10.1155/2021/5928769.
Iqbal, A., Rizwan, A., Mukhtar, Z., Mansoor, S., Khalid, Z. M. and Asad, S. (2016). Establishment of an efficient and reproducible regeneration system for potato cultivars grown in Pakistan. Pak. J. Bot. 48: 258-90.
Kishor, R. and Devi, H. S. (2009). Induction of multiple shoots in a monopodial orchid hybrid (Aerides vandarum Reichb. f× Vanda stangeana Reichb. f) using thidiazuron and analysis of their genetic stability. Plant Cell, Tissue Organ Cult. 97: 121-29.
Maiti, R. K. and Singh, V. (2022). A mini review on origin, history and taxonomic status of the potato. Farm. Manage. 7: 21-35.
Mncwango, N. C., Mavengahama, S., Ntuli, N. R. and Van Jaarsveld, C. M. (2019). Effect of colchicine concentration and treatment duration on the morphological traits of Corchorus olitorius species. Res. Crop. 20: 763-773.
Murashige, T. and Skoog, F. A. (1962). A revised medium for rapid growth and bioassays with tobacco tissue culture. Physiol. Plantarum 154: 473-97.
Naeem, M., Maqbool, A. and Aksoy, E. (2023). Potato taxonomy and wild relatives. In Potato Production Worldwide. Academic Press. pp. 19-55.
O’Brien, P. J. (1972). The Sweet Potato: Its Origin and Dispersal. American Anthropologist 74: 343-65. doi.org/10.1525/aa.1972.74.3.02a00070.
Pawar, K. R., Wagh, S. G., Daspute, A. A., Avhad, G. B., Choudharee, P. D. and Harke, S. N. (2019). In vitro regeneration of potato (Kufri Pukhraj). J. Pharma. Phytochem. 8: 515-18.
Rodiansah, A. and Puspita, M. I. (2020). In vitro polyploidy induction of foxtail millet (Setaria italica (L) beauv) cv. buru hotong using colchicine treatment. IOP Conf. Ser.: Earth Environ. Sci484: doi.10.1088/1755-1315/484/1/012031.
Siregar, M., Siregar, L. A. M. and Hanum, C. (2022). Induction of mutation with colchicine in Olimpus potato by in vitro culture. IOP Conf. Ser.: Earth Environ. Sci977: doi. 10.1088/ 1755-1315/977/1/012020.
Sjahril, R., Riadi, M., Ridwan, I. and Trisnawaty, A. R. (2020). The effects of colchicine concentration and soaking time on formation of leaves and roots of katokkon (Capsicum chinense Jacq.) in vitro. IOP Conf. Ser.: Earth Environ. Sci486: doi. 10.1088/1755-1315/486/1/012103.
Syaifudin, A., Ratnasari, E. and Isnawati, I. (2013). The effect of giving various concentrations of colchicine on the growth and production of chili (Capsicum annum) variety Lado F. Lentera Bio. 2: 167-71.
Tiwari, A. K. and Mishra, S. K. (2012). Effect of colchicine on mitotic polyploidization and morphological characteristics of Phlox drummondi. Afr. J. Biotech. 11: 9336-42.
Thornton, M., Lee, J., John, R., Olsen, N. and Navarre, D. (2013). Influence of growth regulators on plant growth, yield, and skin color of specialty potatoes. Amer. J. Potato Res. 90: 271-83.
Zhao, K., Jin, N., Madadi, M., Wang, Y., Wu, L., Xu, Z. and Xiong, Z. (2022). Incomplete genome doubling enables to consistently enhance plant growth for maximum biomass production by altering multiple transcript co-expression networks in potato. Theor. Appl. Genet. 135: 461-72.

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