The technological properties of winter wheat grain during long-term storage
DOI:
https://doi.org/10.5219/1642Keywords:
wheat grain, technological properties, growing systems, predecessors, term of storageAbstract
In the world, the demand for quality and safe grain products is increasing. The need to preserve wheat in the event of a natural disaster requires the study of optimal storage times of grain without degrading technological indexes. The purpose of the work was to study the dynamics of technological properties of winter wheat grown after peas, clover, corn for silage and the industrial, ecological, biological growing systems during 1, 3, and 5 years of storage in the conditions of the ordinary granary. The absence of significant differences in the technological parameters of the grain of wheat grown at industrial and ecological systems, but significantly lower indicators at a biological growing system was found. The highest hectolitre weight obtained when wheat grain was grown after corn for silage, and vitreousness – after the clover. Significantly higher biochemical parameters of grain and alveographic properties of flour were for the cultivation of wheat after peas, which provided additional accumulation of protein substances. There are no significant changes in the indicator of hectolitre weight during the grain storage. Other indicators increased significantly after 1 year of storage (on average by 10 – 30%). For further storage, vitreousness growth was insignificant. After 5 years of storage, the falling number significantly increased (on 21% compared to the initial values and on 7% – after 3 years of storage). The content of protein, gluten in the grain, and alveographic properties of flour significantly decreased after 5 years of storage. The possibility of obtaining grain of wheat with high technological parameters for a more safe ecological growing system was established. It was also confirmed to need for grain storage up to 1 year to improve quality indicators and it was established that it safely stored for 3 years.
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Bharti, N., Pandey, S. S., Barnawal, D., Patel, V. K., Kalra, A. 2016. Plant growth promoting rhizobacteria Dietzia natronolimnaea modulates the expression of stress responsive genes providing protection of wheat from salinity stress. Scientific reports, vol. 6, 16 p. https://doi.org/10.1038/srep34768
Bilsborrow, P., Cooper, J., Tétard-Jones, C., Średnicka-Tober, D., Barański, M., Eyre, M., Schmidt, C., Shotton, P., Volakakis, N., Cakmak. I., Ozturk, L., Leifert, C., Wilcockson, S. 2013. The effect of organic and conventional management on the yield and quality of wheat grown in a long-term field trial. European Journal of Agronomy, vol. 51, p. 71-80. https://doi.org/10.1016/j.eja.2013.06.003
Bober, A., Liashenko, M., Protsenko, L., Slobodyanyuk, N., Matseiko, L., Yashchuk, N., Gunko, S., Mushtruk, M. 2020. Biochemical composition of the hops and quality of the finished beer. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, p. 307-317. https://doi.org/10.5219/1311
Casey, L. W., Lavrencic, P., Bentham, A. R., Cesari, S., Ericsson, D. J., Croll, T., Turk, D., Anderson, P. A., Mark, A. E., Dodds, P. N., Mobli, M., Kobe, B., Williams, S. J. 2016. The CC domain structure from the wheat stem rust resistance protein Sr33 challenges paradigms for dimerization in plant NLR proteins. Proceedings of the National Academy of Sciences of the United States of America, vol. 113, no. 45, p. 12856-12861. https://doi.org/10.1073/pnas.1609922113
Ceseviciene, J., Masauskiene, A. 2009. The variation of technological properties of stored winter wheat grain. Zemdirbyste-Agriculture, vol. 96, no. 1, p. 154-169.
Davoyan, E. R., Davoyan, R. O., Bebyakina, I. V., Davoyan, O. R., Zubanova, Y. S., Kravchenko, A. M., Zinchenko, A. N. 2012. Identification of a leaf-rust resistance gene in species of Aegilops L., synthetic forms, and introgression lines of common wheat. Russian Journal of Genetics: Applied Research, vol. 2, no. 4, p. 325-329. https://doi.org/10.1134/S2079059712040041
Dorofee, V. F. 1972. Wheat of the Caucasus. Works on Applied Botany, Genetics and Selection, vol. 47, no. 1, p. 455-502.
Dziki, D., Cacak-Pietrzak, G., Gawlik-Dziki, U., Swieca, M., Miś, A., Różyło, R., Jończyk, K. 2017. Physicochemical Properties and Milling Characteristics of Spring Wheat from Different Farming Systems. Journal of Agricultural Science and Technology, vol. 19, no. 6, p. 1253-1266.
Gonzáles-Torralba, J., Arazuri, S., Jarén, C., Arregui, L. M. 2013. Influence of temperature and r.h. during storage on wheat bread making quality. Journal of Stored Products Research, vol. 55, p. 134-144. https://doi.org/10.1016/j.jspr.2013.10.002
ICC Standard No. 129. 1980. Method for the Determination of the Vitreousness of Durum Wheat.
ISO 20483:2013. Cereals and pulses – Determination of the nitrogen content and calculation of the crude protein content – Kjeldahl method.
ISO 21415-1:2006. Wheat and wheat flour – Gluten content – Part 1: Determination of wet gluten by a manual method.
ISO 3093:2009. Wheat, rye and their flours, durum wheat and durum wheat semolina – Determination of the falling number according to Hagberg-Perten.
ISO 712:2009. 2009. Cereals and cereal products – Determination of moisture content – Reference method.
ISO 7971-1:2009 2009. Cereals – Determination of bulk density, called mass per hectolitre – Part 1: Reference method.
Jafary, H., Szabo, L. J., Niks, R. E. 2006. Innate nonhost immunity in barley to different heterologous rust fungi is controlled by sets of resistance genes with different and overlapping specificities. Molecular Plant-Microbe Interactions, vol. 19, no. 11, р. 1270-1279. https://doi.org/10.1094/MPMI-19-1270
Khaneghah, A. M., Martins, L. M., von Hertwig, A. M., Bertoldo, R., Sant’Ana, A. S. 2018. Deoxynivalenol and its masked forms: Characteristics, incidence, control and fate during wheat and wheat-based products processing-A review. Trends in Food Science & Technology, vol. 71, p. 13-24. https://doi.org/10.1016/j.tifs.2017.10.012
Kibar, H. 2015. Influence of storage conditions on the quality properties of wheat varieties. Journal of Stored Products Research, vol. 62, p. 8-15. https://doi.org/10.1016/j.jspr.2015.03.001
Kihlberg, I., Johansson, L., Kohler, A., Risvik, E. 2004. Sensory Qualities of Whole Wheat Pan Bread: Influence of Farming System, Milling and Baking Technique. Journal Cereal Science, vol. 39, no. 1, p. 67-84. https://doi.org/10.1016/S0733-5210(03)00067-5
Kirilenko, V. 2014. Traditional and modern breeding methods of Triticum aestivum L. in the V.M. Remeslo Myronivka Institute of Wheat. Plant Varieties Studying and Protection, vol. 4, no. 25, p. 41-46. https://doi.org/10.21498/2518-1017.4(25).2014.55882
Kolyanovska, L. M., Palamarchuk, I. P., Sukhenko, Y. G., Mushtruk, M. M., Sukhenkko, V. Y., Vasuliev, V. P., Semko, T. V., Tyshchenko, L. M., Popiel, P., Mussabekova, A., Bissarinov, B. 2019. Mathematical modeling of the extraction process of oil-containing raw materials with pulsed intensification of heat of mass transfer. Proceedings of SPIE - The International Society for Optical Engineering, 25 p. https://doi.org/10.1117/12.2522354
Kovalyshyna, H., Dmytrenko, Y., Makarchuk, O., Slobodyanyuk, N., Mushtruk, M. 2020b. The donor properties of resources resistance against the exciter of wheat rust wheat. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, p. 821-827. https://doi.org/10.5219/1427
Kovalyshyna, H., Dmytrenko, Y., Tonkha, O., Makarchuk, O., Demydov, O., Humenyuk, O., Kozub, N., Karelov, A., Sozinov, I., Mushtruk, M. 2020a. Diversity of winter common wheat varieties for resistance to leaf rust created in the V.M. Remeslo myronivka institute of wheat. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, p. 1001-1007. https://doi.org/10.5219/1447
Kozub, N. A., Sozinov, I. A., Karelov, A. V., Blume, Y. B., Sozinov, A. A. 2017. Diversity of Ukrainian winter common wheat varieties with respect to storage protein loci and molecular markers for disease resistance genes. Cytology and Genetics, vol. 51, p. 117-129. https://doi.org/10.3103/S0095452717020050
Krejčířová, L., Capouchová, I., Petr, J., Bicanová, E., Faměra, O. 2007. The effect of organic and conventional growing systems on quality and storage protein composition of winter wheat. Plant Soil and Environment, vol. 53, no. 11, p. 499-505. https://doi.org/10.17221/2304-PSE
Kurt Polat, P. O., Cifci, E. A., Yagdi, K. 2016. Stability Performance of Bread Wheat (Triticum aestivum L.) Lines. Journal of Agricultural Science and Technology, vol. 18, no. 2, p. 553–560.
L-Baeckström, G., Hanell, U., Svensson, G. 2004. Baking quality of winter wheat grown in different cultivating systems, 1992-2001: A holistic approach. Journal of Sustainable Agriculture, vol. 24, no. 1, p. 53-79. https://doi.org/10.1300/J064v24n01_06
Leary, A. Y., Sanguankiattichai, N., Duggan, C., Tumtas, Y., Pandey, P., Segretin, M. E., Linares, J. S., Savage, Z. D., Bozkurt, T. O. 2018. Modulation of plant autophagy during pathogen attack. Journal of Experimental Botany, vol. 69, no. 6, p. 1325-1333. https://doi.org/10.1093/jxb/erx425
Linina, A., Ruza, A. 2016. Impact of agroecological conditions on the Hagberg falling number of winter wheat grain. Research for Rural Development, International Scientific COnference Proceedings, p. 19-26. Available at: https://agris.fao.org/agris-search/search.do?recordID=LV2016000328
Marryat, D. C. E. 1907. Notes on the infection and histology of two wheats immune to the attacks of Puccinia glumarum, Yellow Rust.[With Plate II.]. The Journal of Agricultural Science, vol. 2, no. 2, р. 129-138. https://doi.org/10.1017/S0021859600001246
Marzec, A., Cacak-Pietrzak, G., Gondek, E. 2011. Mechanical and acoustic properties of spring wheat versus its technological quality factors. Journal of Texture Studies, vol. 42, no. 4, p. 319-329. https://doi.org/10.1111/j.1745-4603.2011.00284.x
Mayer, J., Gunst, L., Mäder, P., Samson, M. F., Carcea, M., Narducci, V., Thomsen, I. K., Dubois, D. 2015. Productivity, quality and sustainability of winter wheat under long-term conventional and organic management in Switzerland. European Journal of Agronomy, vol. 65, p. 27-39. https://doi.org/10.1016/j.eja.2015.01.002
Menkova, N., Novozhilova, K., Lavrik, N. 1995. Grain and seed storage regimes. Plant protection, vol. 4, p. 36-38.
Mushtruk, M., Deviatko, O., Ulianko, S., Kanivets, N., Mushtruk, N. 2021. An Agro-Industrial Complex Fat-Containing Wastes Synthesis Technology in Ecological Biofuel. In: Ivanov, V., Pavlenko, I., Liaposhchenko, O., Machado, J., Edl, M. (eds) Advances in Design, Simulation and Manufacturing IV. DSMIE 2021. Switzerland : Springer International Publishing, p. 361-370. ISBN 978-3-030-77823-1. https://doi.org/10.1007/978-3-030-77823-1_36
Mushtruk, M., Gudzenko, M., Palamarchuk, I., Vasyliv, V., Slobodyanyuk, N., Kuts, A., Nychyk, O., Salavor, O., Bober, A. 2020a. Mathematical modeling of the oil extrusion process with pre-grinding of raw materials in a twin-screw extruder. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, p. 937-944. https://doi.org/10.5219/1436
Mushtruk, M., Vasyliv, V., Slobodaniuk, N., Mukoid, R., Deviatko, O. 2020b. Improvement of the Production Technology of Liquid Biofuel from Technical Fats and Oils. In Ivanov, V., Pavlenko, I., Liaposhchenko, O., Machado, J., Edl, M. Advances in Design, Simulation and Manufacturing IІI. Switzerland : Springer International Publishing, p. 377-386. ISBN 21954364-21954356. https://doi.org/10.1007/978-3-030-50491-5_36
Oleinik, K., Davidyuk, H. 2009. The impact duration of storage on the indicators quality of winter wheat grain. Storage and processing of grain, vol. 4, no. 118, p. 45-48.
Palamarchuk, I., Mushtruk, M., Sukhenko, V., Dudchenko, V., Korets, L., Litvinenko, A., Deviatko, O., Ulianko, S., Slobodyanyuk, N. 2020. Modelling of the process of vybromechanical activation of plant raw material hydrolysis for pectin extraction. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, p. 239-246. https://doi.org/10.5219/1305
Palamarchuk, I., Mushtruk, M., Vasyliv, V., Zheplinska, M. 2019. Substantiation of regime parameters of vibrating conveyor infrared dryers. Potravinarstvo Slovak Journal of Food Sciences, vol, 13, no. 1, p. 751-758. https://doi.org/10.5219/1184
Park, E. Y., Baik, B. K., Miller, P. R., Burke, I. C., Wegner, E. A., Tautges, N. E., Morris, C. F., Fuerst, E. P. 2015. Functional and Nutritional Characteristics of Wheat Grown in Organic and Conventional Cropping Systems. Cereal Chemistry, vol. 92, no. 5, p. 504-512. https://doi.org/10.1094/CCHEM-01-15-0007-R
Pirko, Y., Karelov, A., Kozub, N., Sozinov, I., Pirko, N., Yemets, A., Korkhovyi, V., Koliuchyi, V., Blium, Y., Sozinov, O. 2012. Implementation of the methods for detection of leaf rust resistance genes in wheat based on carrying out polymerase chain reaction. Science and Innovation, vol. 8, no. 3, p. 50-56.
Ramanathan, S., Arunachalam, K., Chandran, S., Selvaraj, R., Shunmugiah, K. P., Arumugam, V. R. 2018. Biofilm inhibitory efficiency of phytol in combination with cefotaxime against nosocomial pathogen Acinetobacter baumannii. Journal of Applied Microbiology, vol. 125, no. 1, р. 56-71. https://doi.org/10.1111/jam.13741
Rose, D. J., Ogden, L. V., Dunn, M. L., Jamison, R. G., Lloyd, M. A., Pike, O. A. 2011 Quality and Sensory Characteristics of Hard Red Wheat after Residential Storage for up to 32 Y. Journal of Food Science, vol. 76, no. 1, p. S8-S13. https://doi.org/10.1111/j.1750-3841.2010.01897.x
Sheiko, T., Tkachenko, S., Mushtruk, M., Vasyliv, V., Deviatko, O., Mukoid, R., Bilko, M., Bondar, M. 2019. The Studying the processing of food dye from beet juice. Potravinarstvo Slovak Journal of Food Sciences, vol. 13, no. 1, p. 688-694. https://doi.org/10.5219/1152
Shewry, P. R. 2009. Wheat. Journal of Experimental Botany, vol. 60, no. 6, p. 1537-1553. https://doi.org/10.1093/jxb/erp058
Smetanska, I., Tonkha, O., Patyka, T., Hunaefi, D., Mamdouh, D., Patyka, M., Bukin, A., Mushtruk, M., Slobodyanyuk, N., Omelian, A. 2021. The influence of yeast extract and jasmonic acid on phenolic acids content of in vitro hairy root cultures of Orthosiphon aristatus. Potravinarstvo Slovak Journal of Food Sciences, vol. 15, p. 1-8. https://doi.org/10.5219/1508
Sukhenko, Y., Mushtruk, M., Vasyliv, V., Sukhenko, V., Dudchenko, V. 2019. Production of pumpkin pectin paste.In Ivanov, V., Trojanowska, J., Machado, J., Liaposhchenko, O., Zajac, J., Pavlenko, I., Edl, M., Perakovic, D. Advances in Design, Simulation and Manufacturing II. p. 805-812. https://doi.org/10.1007/978-3-030-22365-6_80
Sukhenko, Y., Sukhenko, V., Mushtruk, M., Vasuliv, V., Boyko, Y. 2017. Changing the quality of ground meat for sausage products in the process of grinding. Eastern European Journal of Enterprise Technologies, vol. 4, no. 11, p. 56-63. https://doi.org/10.15587/1729-4061.2017.108876
Sulek, A., Cacak-Pietrzak, G. 2018. The influence of production technology on yield and selected quality parameters of spring wheat cultivars. Research for Rural Development, vol. 2, p. 42-48. https://doi.org/10.22616/rrd.24.2018.049
Varella, A. C., Weaver, D. K., Cook, J. P., Blake, N. K., Hofland, M. L., Lamb, P. F., Talbert, L. E. 2017. Characterization of resistance to the wheat stem sawfly in spring wheat landrace accessions from targeted geographic regions of the world. Euphytica, vol. 213, 11 p. https://doi.org/10.1007/s10681-017-1945-x
Vlasenko, V., Koliuchyi, V., Chebakov, M. 2005. Using genetic components of rye in the breeding of Myronivka varieties of winter wheat. Journal of Uman National University of Horticulture, vol. 60, p. 54-63.
Zheplinska, M., Mushtruk, M., Kos, T., Vasyliv, V., Kryzhova, Y., Mukoid, R., Bilko, M., Kuts, A., Kambulova, Y., Gunko, S. 2020. The influence of cavitation effects on the purification processes of beet sugar production juices. Potravinarstvo Slovak Journal of Food Sciences, vol. 14, р. 451-457. https://doi.org/10.5219/1284
Zheplinska, M., Mushtruk, M., Vasyliv, V., Sarana, V., Gudzenko, M., Slobodyanyuk, N., Kuts, A., Tkachenko, S., Mukoid, R. 2021a. The influence of cavitation effects on the purification processes of beet sugar production juices. Potravinarstvo Slovak Journal of Food Sciences, vol. 15, p. 18-25. https://doi.org/10.5219/1494
Zheplinska, M., Mushtruk, M., Vasyliv, V., Slobodyanyuk, N., Boyko, Y. 2021b. The Main Parameters Of The Physalis Convection Drying Process. In: Ivanov, V., Pavlenko, I., Liaposhchenko, O., Machado, J., Edl, M. (eds) Advances in Design, Simulation and Manufacturing IV. DSMIE 2021. Switzerland : Springer International Publishing, p. 306-315. ISBN 978-3-030-77823-1. https://doi.org/10.1007/978-3-030-77823-1_31
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