Borislav – new triticale cultivar with unique yield potential

Authors

  • Hristo Stoyanov Dobrudzha Agricultural Institute – General Toshevo, 9521, General Toshevo, Agricultural academy - Sofia, Bulgaria Author
  • Valentin Baychev Dobrudzha Agricultural Institute – General Toshevo, 9521, General Toshevo, Agricultural academy - Sofia, Bulgaria Author
  • Galina Mihova Dobrudzha Agricultural Institute – General Toshevo, 9521, General Toshevo, Agricultural academy - Sofia, Bulgaria Author

Keywords:

days to heading; grain yield; number of grains per spike; number of productive tillers; plant height; test weight; thousand kernel weight; triticale

Abstract

The study was done during 2014-2020 in Dobrudzha Agricultural Institute - General Toshevo. The new triticale cultivar Borislav was compared with the standards AD-7291, Vihren and Rakita, and with the average standard between Vihren and Rakita. The new standard Kolorit and world standard Lasko were also used. Regarding indices days to heading and plant height Borislav fully aligned with the cultivar Rakita, and the number of productive tillers with the new standard Kolorit. By thousand kernel weight, the new triticale cultivar showed very high levels, but they are strongly influenced by environmental conditions. Test weight is to the level of standard varieties and is retained even in unfavorable conditions for triticale growing. The number of grains per spike is not affected largely by the growing conditions and range from 17 to 24. In relation to yield Borislav significantly exceed all standards and average standard with 5.6% over a 7 year period, indicating its extraordinary productivity and opportunity for production of grain triticale.

References

Ammar, K., Delgado Ramos, F., Rascón Gámez, R. & Magallanes Mendez, F. (2016). Evolution of the CIMMYT Triticale Breeding Program and recent achievements in Mexico. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Baychev, V. (2006). Colorit - a new grain triticale variety. Field Crops Studies, 3(3), 335-340 (Bg).

Baychev, V. & Petrova, T. (2009). Triricale ”Accord” – A New Cold Resistant Grain Variety. Field Crops Studies, 5(1), 71-77 (Bg).

Baychev, V. (2009). Economic characterization of the new released triticale variety Attila. Field Crops Studies, 5(1), 79-85 (Bg).

Baychev, V. & Petrova, T. (2011). Triticale Respect – a new highly productive variety of unique cold resistance. Field Crops Studies, 7(1), 63-70 (Bg).

Baychev, V. (2012). Economic characteristics of triticale cul-tivar Bumerang. Field Crops Studies, 8(2), 261-267 (Bg).

Baychev, V. (2013a). Triticale lines and varieties grown under contrasting meteorological conditions. Scientific Papers of Instiute of Agriculture - Karnobat, 2(1), 79-86(Bg).

Baychev, V. (2013b). Irnik - a new cultivar of grain triticale. Scientific papers of Instiute of Agriculture - Karnobat, 2(1), 105-112 (Bg).

Baychev, V. (2014). Economic characteristics of triticale Dobrudzhanets – a new cultivar with high production potential.Scientific Papers of Instiute of Agriculture - Karnobat, 3(1), 37-44 (Bg)

Banaszak, Z., Kaźmierczak, P., Kurleto, D., Niewińska, M., Pojmaj, M., Konieczny, M. & Haremza, J. (2016). The germplasm development in DANKO triticale program. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Bespalova, L. A., Borovik, A. N., Puzynaya, O. Y. & Bukreeva, G. I. (2012). Application on sphaerococcum gene in breeding triticale for grain. The proceedings of international scientifically-practical conference “Triticale and its role in conditions of increase aridity of climate”and section triticale of department of plant growing of Russian Academy of Agricultural Science, Rostov on Don, 2012, pp 21-25. (Ru)

Bezabih, A., Girmay, G., & Lakewu, A. (2019). Performance of triticale varieties for the marginal highlands of Wag-Lasta, Ethiopia. Cogent Food & Agriculture, 5(1), 1574109.

Borovik, A. N. (2016). Selection and reintroducing of endangered and rare species of wheat: shot wheat (Triticum sphaerococcum Perc.), emmer (Triticum dicoccum (Schrank.) Schuebl.), durum (Triticum durum Desf.) and creation of sphaerococcum triticale (Triticale sphaerococcum) for grain diversification of high-quality production. Dissertation for the degree of Doctor of Agricultural Sciences, Krasnodar, 2016, pp 516.

Bouguennec, A., Lesage, V., Jahier, J. & Lonnet, P. (2016). Use of intergeneric crosses in cereals and in particular for increasing the genetic diversity of triticale. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Brar, G. S., Graf, R., Knox, R., Campbell, H., & Kutcher, H. R. (2017). Reaction of differential wheat and triticale genotypes to natural stripe rust [Puccinia striiformis f. sp. tritici] infection in Saskatchewan, Canada. Canadian Journal of Plant Pathology, 39(2), 138-148.

Burlutsky, V. A., Mazurov, V. N. & Medvedev, A. M. (2021). Preliminary results of selection of winter triticale at the Kaluga Research Institute of Agriculture. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 151-158.

Cooper, K. V., Elleway, M. G., Pattison, A. L. & Trethowan, R. M. (2016). Australian triticale update: New cultivars, quality aspects and funding outlook. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Danilov, A. V. & Lapshin, Yu. A. (2021). Productivity of varieties spring triticale of the Federal Rostov Scientific center in the conditions of the Republic of Mari El. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 159-165.

Derejko, A., Studnicki, M., Wójcik-Gront, E., & Gacek, E. (2020). Adaptive grain yield patterns of Triticale (× Triticosecale Wittmack) cultivars in six regions of Poland. Agronomy, 10(3), 415.

Derycke, V., Landschoot, S., Dewitte, K., Wambacq, E., Latré, J., & Haesaert, G. (2018). Straw yield and quality: An extra motivation for the introduction of triticale in mixed farming systems. Cereal Research Communications, 46(1), 158-168.

Dimitrova-Doneva, M. (2008). Optimization of some agrotechnical factors in winter cereals for the Strandzha region. PhD Thesis.

Dimitrova–Doneva, M. (2010). Chemical composition and energy value of tritikale independent to the predecessor and the nitrogen fertilization. Field Crops Studies, 6(3): 451-456

Dobreva, S., Kirchev, H., & Muhova, A. (2018). Influence of nitrogen fertilization in combination with foliar fertilization on the structural elements of the spike in triticale varieties (x Triticosecale Wittm.). Research Journal of Agricultural Science, 50(4), 116-121.

Gordinskaya, E. A., Krokhmal, A. V. & Barulina, N. I. (2021). To the question of the formation of the productivity of winter triticale on the Don. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 123-133.

Gowda, M., Hahn, V., Reif, J. C., Longin, C. F. H., Alheit, K., & Maurer, H. P. (2011). Potential for simultaneous improvement of grain and biomass yield in Central European winter triticale germplasm. Field Crops Research, 121(1), 153-157.

Grib, S. I. & Bushtevich, V. N. (2021). Priority directions and results of triticale breeding in Belarus. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 19-32.

Haesaert, G. (2016). A further expansion of the growing area of triticale needs an increase in input-response efficiency. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Han, O. K., Park, T. I., Park, H. H., Song, T. H., Ju, J. I., Jeung, J. H., ... & Kwon, Y. U. (2012). 'Joseong', a New Early-Heading Forage Triticale Cultivar for Paddy Field of Double Cropping. Journal of the Korean Society of Grassland and Forage Science, 32(3), 193-202.

Huerta-Espino, J., Ammar, K., Singh, R. P. & Garcia-Leon, E. (2016). Yellow rust disease on triticale in Mexico, a different formae specialis or just lack of virulence to common wheat Yr genes. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Kirchev, H., Matev, A. & Delibaltova, V. (2012). Agronomy performance of triticale (xTriticosecale Wittm.) varieties grown in Plovdiv region, under two-nitrogen fertilization level. Field Crops Studies, 8(2):249-25

Kizilgeçi, F. (2019). Assessment of yield and quality of some Triticale genotypes in South-Eastern Anatolia. Journal of the Institute of Science and Technology, 9(1), 545-551.

Kolev, T. & Ignatova, R. (2004). Testing of triticale varieties under the agro-ecological conditions of Plovdiv region. Plant Science, 5, 509-512 (Bg).

Krokhmal, A. V., Grabovets, A. I., Gordinskaya, E. A. & Barulina, N. I. (2021). Ecological testing of winter varieties triticale in the conditions of the northwestern zone Rostov region. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 66-75.

Kruppa, J. Jnr., Kruppa, K. & Kruppa, J. (2016). Hungaro durumrye – the first food triticale variety. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts

Milgate, A., Ovenden, B., Adorada, D., Lisle, C., Lacy, J., & Coombes, N. (2015). Genetic improvement of triticale for irrigated systems in south-eastern Australia: a study of genotype and genotype× environment interactions. Crop and Pasture Science, 66(8), 782-792.

Moskalets, T. Z., Vasylkivskyi, S. P., Morgun, B. V., Moskalets, V. І., Moscalets, V. V., & Rybalchenko, V. K. (2016). New genotypes and technological indicators of winter triticale. Biotechnologia Acta, (9,№ 1), 79-86.

Muhova, A., & Kirchev, H. (2020). Agronomic Performance of Triticale Varieties (× Triticosecale Wittm.) Grown under Fertilization with Organic Manure from Red Californian Worms (Lumbricus rubellus). Scientific Papers. Series A. Agronomy, 63(1), 428-436.

Neuweiler, J. E., Maurer, H. P., & Würschum, T. (2020). Long‐term trends and genetic architecture of seed characteristics, grain yield and correlated agronomic traits in triticale (× Triticosecale Wittmack). Plant Breeding, 139(4), 717-729.

Niedziela, A., Orłowska, R., Machczyńska, J., & Bednarek, P. T. (2016). The genetic diversity of triticale genotypes involved in Polish breeding programs. Springerplus, 5(1), 1-7.

Petrova, T. & Baichev, V. (2007). Triticale lines with high cold resistance and productivity. Proceedings "Plant Gene Fund - the basis of modern agriculture", volumes 1 and 2: 127-130 (Bg).

Ponomarev, S. N. & Ponomareva, M. L. (2021). Ecological plasticity of new varieties of triticale in the Republic of Tatarstan. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 76-87.

Racz, I., Duda, M., Brăileanu, S. I., Kadar, R., & Moldovan, V. (2013). Behaviour of triticale cultivars in the yield trials at ARDS Turda (2011 and 2012). Research Journal of Agricultural Science, 45(3), 162-168.

Randhawa, H. S., Bona, L. & Graf, R. J. (2015). Triticale breeding – Progress and Prospect. In: Eudes, F. (ed.), Triticale, pp. 14-32.

Sechnyak, L. K., & Sulima, Yu. G. (1984). Triticale. Moscow, Kolos (Ru).

Shchipak, G. V. Triticale selection results for improvement baking properties. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 43-65.

Stoyanov, H. & Baychev, V. (2016). Achievements and trends in the breeding of triticale in Bulgaria. 9th International Triticale Symposium, Szeged, Hungary, May 23-27, 2016 Book of Abstracts: 20.

Stoyanov, H., Baychev, V., Petrova, T. & Mihova, G. (2017). Triticale cultivars suitable for growing under high level of abiotic stress. Journal of Mountain Agriculture on the Balkans, 20(6): 223-242.

Stoyanov, H., (2018). Reacton of Triticale (xTriticosecale Wittm.) to Abiotic Stress. PhD Thesis, General Toshevo, Bulgaria (Bg).

Stoyanov, H. & Baychev, V. (2018). Tendencies in the yield and its components of the Bulgarian varieties of triticale, grown under contrasting conditions of the environment. Rastenievadni nauki, 55(3), 16-26 (Bg)

Stoyanov, H. (2020). Analysis on test weight of Bulgarian triticale cultivars. Rastenievadni nauki, 57(6), 3-16.

Stoyanov, H. (2021). Effect of drought on yield and yield components of triticale in the conditions of South Dobrudzha. Scientific Papers. Series A. Agronomy, Vol. LXIV, Issue 1, 556-568.

Tshewang, S., Jessop, R., & Birchall, C. (2017). Effect of frost on triticale and wheat varieties at flowering in the north eastern Australian cereal belt. Cereal Research Communications, 45(4), 655-664.

Tsvetkov, S. M. (1998). Triticale cv. Rakita (2n=6x=42): a new original productive variety for grain in Bulgaria. Proceedinhs of the 4th International Triticale Symposium, July 26-31, 1998, Red Deer, Alberta, Canada, 2, 156-159.

Voronov, S. I., Medvedev, A. M., Nardid, A. V., Liseenko, E. N., Poma, N. G., Gainullin, N. R., Pavlov, S. S., Dyachenko, E. V. & Tupatilova, O. V. (2021). On the problems and results of breeding improvement of winter triticale under conditions Central Non-Chernozem Region. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, 88-96.

Warechowska, M., Warechowski, J., Stępień, A., & Wojtkowiak, K. (2016). Effect of the size of triticale kernel on milling energy consumption, flour yield and granulometric composition of flour. Pol. J. Nat. Sci, 31(3), 433-444.

Wójcik-Gront, E., & Studnicki, M. (2021). Long-term yield variability of triticale (×Triticosecale wittmack) tested using a cart model. Agriculture, 11(2), 92.

Wolski, T. (1992). New organization and new winter triticale varieties in Poland. Triticale Topics: 8-21.

Würschum, T., Maurer, H. P., Weissmann, S., Hahn, V., & Leiser, W. L. (2017). Accuracy of within‐and among‐family genomic prediction in triticale. Plant Breeding, 136(2), 230-236.

Zenkina, K. V. (2021). Source material for selection of triticale on Far East. Triticale. Proceedings of the meeting of the OSKhN triticale section RAS - online. (June 9, 2020): – Triticale. Breeding, genetics, agrotechnicks and technology of raw materials processing”, рр. 142-150.

Published

24.04.2022

How to Cite

Borislav – new triticale cultivar with unique yield potential. (2022). Bulgarian Journal of Crop Science, 59(2), 3-15. https://agriacad.eu/ojs/index.php/bjcs/article/view/1722