Cell selection of triticum callus cultures Triticum aesticum L. on stability to agent basal bacteriosis

Authors

  • L. N. Butsenko D.K. Zabolotny Institute of Microbiology and Virology of the National Academy of Sciences of Ukraine. , Інститут мікробіології і вірусології ім. Д.К. Заболотного НАН України
  • J. V. Kolomiiets National University of Life and Environmental Sciences of Ukraine image/svg+xml

DOI:

https://doi.org/10.31548/dopovidi2019.04.002

Keywords:

callus, Triticum aesticum L., cell selection, causative agent of basal bacteriosis

Abstract

The increase in the number and severity of bacterial diseases in modern conditions of growing crops makes it necessary to use in the production of wheat varieties, which are characterized by high-quality yield for high resistance to phytopathogenic bacteria. The purpose of research. Select by the method of direct cell selection callus cultures of Triticum aesticum L., which are characterized by high growth index values and regeneration potential under the conditions of bacterial stress caused by Рseudomonas syringae pv. atrofaciens. Research methods. The material for the selection work was the seeds of winter wheat of the varieties Dark-skinned, Favorite, Metropolitan, Podolyanka. Preparation of nutrient media, introduction to culture and subculturing were carried out using traditional techniques. Results. It has been established that cell selection for resistance to the causative agent of basal bacteriosis can be carried out for the Podolyanka and Stolichnaya varieties with a sublethal concentration of 0,8 % IR P. syringae pv. atrofaciens 9400, Favoritka varieties – 0,6 %, Smuglyanka varieties – 0,4 %. The method of cell selection obtained resistant to P. syringae pv. atrofaciens, regenerative callus lines of wheat varieties Podolyanka, Stolichnaya, Favoritka and Smuglyanka.

References

Maslak, O. & Tomashevska, A. (2016) Rynok pshenytsi v Ukraini ta sviti [Wheat market in Ukraine and the world] Ahrobiznes sohodni [Agribusiness today] 12(331). URL: http://www.agro-business.com.ua/ ekonomichnyi-gektar/5671-rynok-pshenytsi-v-ukraiini-ta-sviti.html [in Ukrainian]

Larchenko, K. A. & Morhun, B. V. (2010) Oznaky yakosti zerna ta metody yikh polipshennia [Signs of grain quality and methods for their improvement] Fiziolohiia i biokhimiia kulturnykh roslyn [Physiology and biochemistry of cultivated plants]. 42(6), 463-474. [in Ukrainian]

Hospodarenko, H. M., Karpenko, V. P., Liubych, V. V. & Novikov, V. V. (2018) Characterization of amino acid content of grain of new wheat varieties and lines. Agricultural Science and Practice. Vol. 5. №. 3. С. 12-18. [in English]

https://doi.org/10.15407/agrisp5.03.012

Maraite, H., Bragard & С., Duveiller, Е. (2007) The status of resistance to bacterial diseases of wheat. In: Buck H.T., Nisi J.E., Salomon N. Wheat Production in Stressed Environments. Springer. Р. 37-50. [in English]

https://doi.org/10.1007/1-4020-5497-1_4

Duveiller, E., Fucikovsky, L. & Rudolph, K. (1997) The Bacterial Diseases of Wheat: Concepts and Methods of Disease Management. Mexico, D.F.: CIMMYT. 110 р. [in English]

Valencia-Botín, A.J. & Cisneros-López, M.E. (2012) A Review of the Studies and Interactions of Pseudomonas syringae Pathovars on Wheat. International Journal of Agronomy. URL:

https://doi.org/10.1155/2012/692350

Matveeva, Ye.V., Pekhtereva, E.S.H., Polityko, V.A., Ignatov, A.N., Nikolaeva, E.V. & Schaad, N.W. (2003) Distribution and virulence of Pseudomonas syringae pv. atrofaciens, causal agent of basal glume rot, in Russia. In: Iacobellis N.S., Collmer A., Hutcheson S.W., Mansfield J.W., Morris C.E., Schaad N.W., Stead D.E., Surico G., Ullrich M.S. (eds). Presentations from the 6th International Conference on Pseudomonas syringae pathovars and related pathogens, (Maratea, Italy, September 15-19). Kluwer Academic Publishers, Dordrecht, Netherlands. P. 97-105. [in English]

https://doi.org/10.1007/978-94-017-0133-4_11

Dubrovna, O.V., Chuhunkova, T.V., Bavol, A.V. & Lialko, I.I. (2012) Biotekhnolohichni ta tsytohenetychni osnovy stvorennia roslyn, stiikykh do stresiv. [Biotechnological and cytogenetic foundations of creating plants resistant to stress] Kyev: Lohos. 428 p. [in Ukrainian]

Voloshchuk, S.I. (2006) Klitynna selektsiia pshenytsi na stiikist do Fusarium graminearum Schwabe [Cell selection of wheat for resistance to Fusarium graminearum Schwabe] (Candidate of Agricultural Sciences Dissertation) Institute of Agroecology UAAN. Kiev, Ukraine. [in Ukrainian]

Bavol, A.V., Dubrovna, O.V. & Lialko, I.I. (2008) Dobir ta tsytolohichnyi analiz stiikykh do kulturalnoho filtratu Gaeumannomyces graminis var. tritici klitynnykh linii pshenytsi ta rehenerantiv z nykh [Selection and cytological analysis of culture-resistant Gaeumannomyces graminis var tritici cell lines of wheat and regenerants from them] Visnyk Ukrainskoho tovarystva henetykiv i selektsioneriv [Bulletin of the Ukrainian Society of Geneticists and Breeders] 6(2), 191-200. [in Ukrainian]

Kalashnikova, E.A. (2003) Kletochnaya selektsiya rasteniy na ustoychivost' k gribnym boleznyam [Cell selection of plants for resistance to fungal diseases] (Doctor of Biological Sciences Dissertation) Moscow Academy of Agriculture named after KA Timiryazev. Moscow, Russia. [in Russian]

Melnychuk, M. D., Kliachenko, O. L. & Kolomiiets, Yu. V. (2012) Biotekhnolohiia roslyn: praktykum. [Plant biotechnology: a workshop.] Kyev: Komprynt. 120 p. [in Ukrainian]

Pausheva, Z. P. (1988) Praktikum po tsitologii rasteniy [Workshop on plant cytology] Moscow. 271 p. [in Russian]

Sabahat, N., Ghulam, M.A., Umer, R., Muhammad, А. & Shaukat, A. (2009) Optimization o callus induction and regeneration system for Pakistani wheat cultivars Kohsar and Kyber-87. African Journal of Biotechnology. Vol. 8(20). P. 5554-5558. [in English]

Rashid, H., Ghani, R. A., Chaudhry, Z., Naqvi, S. M. S. & Quraishi, A. (2002) Effects of media, growth regulators and genotypes on callus induction and regeneration in wheat (Triticum aestivum L.). Biotechnology. Vol. 1. № 1. Р. 46-54. [in English]

https://doi.org/10.3923/biotech.2002.49.54

Rashid, U, Ali, S., Ali, G.M., Ayub, N. & Masood, M.S. (2009) Establishment of an efficient callus induction and plant regeneration system in pakistani wheat (Triticum aestivum) cultivars. Electronic Journal of Biotechnology. №12, Р. 1-8. [in English]

https://doi.org/10.2225/vol12-issue3-fulltext-1

Bohdan, Yu. M., Butsenko, L. M., Pasichnyk, L. A. & Hvozdiak R. I. (2008) Vyvchennia mutahennoi aktyvnosti lipopolisakharydu Pseudomonas syringae pv. atrofaciens 9400 u Allium cepa-testi [Study of the mutagenic activity of the lipopolysaccharide Pseudomonas syringae pv. atrofaciens 9400 in Allium cepa-test] Naukovi zapysky NaUKMA: Biolohiia ta ekolohiia [Scientific notes of NaUKMA: Biology and Ecology]. 80, 22-26. [in Ukrainian]

Published

2019-09-16

Issue

Section

Biology, biotechnology, ecology