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<citation_list><citation key="ref0"><unstructured_citation>OECD-FAO Agricultural Outlook: Oilseed Projections, 2019-2028 http://www.fao.org/statistics/en/.</unstructured_citation></citation><citation key="ref1"><doi>10.1002/(SICI)1521-4133(199806)100:6&lt;219::AID-LIPI219&gt;3.0.CO;2-Y</doi><unstructured_citation>Friedt, W., Lühs, W. &quot;Recent developments and perspectives of industrial rapeseed breeding&quot;. Fett Lipid, Vol. 100, no. 6, pp. 219-226, 1998.</unstructured_citation></citation><citation key="ref2"><doi>10.3390/foods8080292</doi><unstructured_citation>Elena Cartea, Antonio De Haro-Bailón, Guillermo Padilla, Sara Obregón-Cano, Mercedes del Rio-Celestino, and Amando Ordás. &quot;Seed Oil Quality of Brassica napus and Brassica rapa Germplasm from Northwestern Spain&quot;. Foods. Vol. 8, no. 8, 292, 2019.</unstructured_citation></citation><citation key="ref3"><doi>10.1016/j.jfca.2015.03.010</doi><unstructured_citation>Flakelar C.L., Luckett D.J., Howitt J.A., Doran G., Prenzler P.D. &quot;Canola (Brassica napus) oil from Australian cultivars shows promising levels of tocopherols and carotenoids, along with good oxidative stability. Journal Food Composition and Analysis&quot;, Vol. 42, pp.179-186, 2015.</unstructured_citation></citation><citation key="ref4"><doi>10.3390/agriculture9090190</doi><unstructured_citation>Douglas J. Warner and Kathleen A. Lewis. &quot;Evaluation of the Risks of Contaminating Low Erucic Acid Rapeseed with High Erucic Rapeseed and Identification of Mitigation Strategies&quot;. Agriculture, Vol. 9, no. 190, 2019.</unstructured_citation></citation><citation key="ref5"><doi>10.1016/j.jclepro.2016.07.058</doi><unstructured_citation>Aoun W.B., Akkari M.E., Fle'net F., Jacquet F., Gabrielle B. &quot;Recommended fertilization practices improve the environmental performance of biodiesel from winter oilseed rape in France&quot;. Journal of Cleaner Production, Vol. 139, pp. 242-249, 2016.</unstructured_citation></citation><citation key="ref6"><doi>10.1177/1934578X19876846</doi><unstructured_citation>Kim Yu M., Seo Youngeun and Bae Kyung S. &quot;Inhibitory Effects of Ceramide from the Seeds of Brassica napus L. on the Atopic Function via the Regulation of Human Kallikrein 5 and 7 Protease&quot;. Natural Product Communications. Vol. 14, no 9, pp. 1-4, 2019.</unstructured_citation></citation><citation key="ref7"><doi>10.1016/S2095-3119(16)61384-9</doi><unstructured_citation>Dong-hui FU, Ling-yan JIANG, Annaliese S. Mason, Mei-li XIAO, Long-rong ZHU, Li-zhi LI, Qing-hong ZHOU, Chang-jian SHEN, Chun-hui HUANG. &quot;Research progress and strategies for multifunctional rapeseed: A case study of China&quot;. Journal of Integrative Agriculture. Vol. 15, no 8, pp. 1673-1684, 2016.</unstructured_citation></citation><citation key="ref8"><doi>10.5772/64420</doi><unstructured_citation>Lutts, S., Benincasa, P., Wojtyla, L., Kubala, S., Pace, R., Lechowska, K., Quinet M., Garnczarska, M. &quot;Seed Priming: New Comprehensive Approaches for an Old Empirical Technique&quot;. New Challenges in Seed Biology - Basic and Translational Research Driving Seed Technology, 2016.</unstructured_citation></citation><citation key="ref9"><doi>10.3390/ijms20030540</doi><unstructured_citation>Lechowska, K., S. Kubala, L. Wojtyla, G. Nowaczyk, M. Quinet, S. Lutts, and M. Garnczarska. &quot;New insight on water status in germinating Brassica napus seeds in relation to priming-improved germination&quot;. International Journal of Molecular Sciences. Vol. 20, Issue 3, 540, 2019.</unstructured_citation></citation><citation key="ref10"><unstructured_citation>Yagmur, M.; Kaydan, D. &quot;Alleviation of osmotic stress of water and salt in germination and seedling growth of triticale with seed priming treatments&quot;. African Journal of Biotechnology, Vol. 7, no 13, pp. 2156-2162, 2008.</unstructured_citation></citation><citation key="ref11"><doi>10.1016/j.tifs.2019.02.029</doi><unstructured_citation>Rifna E. J., Ratish Ramanan K., Mahendran R. &quot;Emerging technology applications for improving seed germination&quot;. Trends in Food Science &amp; Technology. Vol. 86. pp. 95-108, 2019.</unstructured_citation></citation><citation key="ref12"><doi>10.22271/chemi.2020.v8.i1v.8479</doi><unstructured_citation>Rashmi Sharma, Sunita T Pandey, Omvati Verma, R.C. Srivastava and S.K. Guru &quot;Physiological seedling vigour parameters of wheat as influenced by different seed invigoration techniques&quot;. International Journal of Chemical Studies. Vol. 8, no 1, pp. 1549-1552.</unstructured_citation></citation><citation key="ref13"><unstructured_citation>Semenov, A.O., Kozhushko G.M., Sakhno T.V. &quot;Analysis of the role of UV radiation on the development and productivity of different cultures&quot;. Light engineering and electricity. Vol. 2, pp. 3-16, 2017.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>Korotkova Irina, Semenov Anatolу, Sakhno Tamara. &quot;The Ultraviolet Radiation: Disinfection and Stimulation Processes&quot;. Lambert: Academic Publishing, pp. 1-56, 2020.</unstructured_citation></citation><citation key="ref15"><unstructured_citation>Siddiqui A., Dawar S., Javed Zaki M., Hamid N. &quot;Role of ultra violet (UV-C) radiation in the control of root infecting fungi on groundnut and mung bean. Pakistan Journal of Botany&quot;. Vol. 43, no 4, pp. 2221-2224, 2011.</unstructured_citation></citation><citation key="ref16"><doi>10.1016/S1011-1344(99)00065-2</doi><unstructured_citation>Shiozaki, N., I. Hattori and T. Tezuka. &quot;Activation of growth nodulation in a symbiotic system between pea plants and leguminous bacteria by near UV radiations&quot;. Journal of Photochemistry and Photobiology B: Biology. Vol. 50, no 1, pp. 33-37, 1999.</unstructured_citation></citation><citation key="ref17"><doi>10.1016/S0261-2194(01)00037-0</doi><unstructured_citation>Brown J. E., Lu T. Y., Stevens C., Khan V. A., Lu J. Y., Wilson C. L., Collins D. J., Wilson M. A., Igwegbe E. C. K., Chalutz E., Droby S. &quot;The effect of low dose ultraviolet light-C seed treatment on induced resistance in cabbage to black rot (Xanthomonas campestris pv. campestris)&quot;. Crop Protection. Vol. 20, no 10, pp. 873-883, 2001.</unstructured_citation></citation><citation key="ref18"><unstructured_citation>Gonzalez-Dector, D., F. San Martin, E. Palou and A., LópezMalo. &quot;Inactivation of Escherichia coli on alfalfa seeds by ultraviolet (UV-C) irradiation&quot;. IFT Annual Meeting, July 15-20, New Orleans, Louisiana, Session 54F, Nonthermal Processing: General I, 2005.</unstructured_citation></citation><citation key="ref19"><doi>10.1016/j.watres.2005.10.030</doi><unstructured_citation>Hijnan W. A. M., Beerendonk E. F. and Medema G. J. &quot;Inactivation credit of UV radiation for viruses, bacteria and protozoan (oo) cysts in water: A review&quot;. Water Research, Vol. 40, no 1, pp. 3-22, 2006.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>Semenov A. O., Kozhushko G. M., Sakhno T.V. &quot;Influence of pre-exposure UV irradiation on development and productivity of potatoes&quot;. Bulletin of Poltava State Agrarian Academy. Vol. 88, no 1, pp. 18-23, 2018.</unstructured_citation></citation><citation key="ref21"><doi>10.15587/2312-8372.2015.46953</doi><unstructured_citation>Semenov A., Kozhushko G., Bаla L. No ozone germicidal lamp for plants photochemical and photo biological action. Technological audit and production reserves, Vol. 4, no 1(24), pp. 4-7, 2015.</unstructured_citation></citation><citation key="ref22"><unstructured_citation>Porra R. J. &quot;The chequered history of the development and use of simultaneous equations for the accurate determination of chlorophylls a and b&quot;. Photosynthesis Research. Vol. 73, pp. 149-156, 2002.</unstructured_citation></citation><citation key="ref23"><doi>10.1016/j.compag.2016.08.014</doi><unstructured_citation>Shafaei S. M., Nourmohamadi-Moghadami A., Kamgar S. &quot;Development of artificial intelligence based systems for prediction of hydration characteristics of wheat&quot;. Computers and Electronics in Agriculture. Vol. 128, pp. 34-45, 2016.</unstructured_citation></citation><citation key="ref24"><doi>10.14720/aas.2020.116.1.1563</doi><unstructured_citation>Semenov Anatoly, Korotkova Irina, Sakhno Tamara, Marenych Mykola, Нanhur Volodymyr, Liashenko Viktor, Kaminsky Viktor. &quot;Effect of UV-C radiation on basic indices of growth process of winter wheat (Triticum aestivum L.) seeds in pre-sowing treatment&quot;. Acta agriculturae Slovenica. Vol. 116, no 1, pp. 49-58, 2020.</unstructured_citation></citation><citation key="ref25"><doi>10.15587/2312-8372.2018.143417</doi><unstructured_citation>Semenov A., Kozhushko G., Sakhno T. &quot;Influence of pre-sowing UV-radiation on the energy of germination capacity and germination ability of rapeseed&quot;. Technology Audit and Production Reserves. Vol. 5, no 1(43), pp.61-65, 2018.</unstructured_citation></citation><citation key="ref26"><doi>10.31521/2313-092X/2019-1(101)-7</doi><unstructured_citation>Semenov A., Korotkova I., Sakhno T., Marenych N. &quot;The exploiting of agronomic potential of UV-C irradiation for increasing the pre-sowing qualities of the carrot seeds&quot;. Ukrainian Black Sea Region Agrarian Science, Vol. 101, no 1, pp. 47-52. 2019.</unstructured_citation></citation><citation key="ref27"><doi>10.15587/2312-8372.2019.159954</doi><unstructured_citation>Semenov A., Kozhushko G., Sakhno T. &quot;Influence of UV radiation іn pre-sowing treatment of seeds of crops. Technology audit and production reserves&quot;. Vol. 45, no 1/3, рр. 30-32, 2019.</unstructured_citation></citation><citation key="ref28"><unstructured_citation>FAO and WHO. Pesticide residues in food 2018. Report 2018. Joint FAO/WHO Meeting on Pesticide Residues. FAO Plant Production and Protection Paper no. 234. Rome. 668 pp. P. 135, 2019.</unstructured_citation></citation><citation key="ref29"><doi>10.1016/j.bjbas.2018.07.002</doi><unstructured_citation>Amira M. Hegazy, Rehab M. Abdelfatah, Hamada M. Mahmoud, Mohamed A. Elsayed. &quot;Two spectrophotometric methods for quantitative determination of some pesticides applied for cucumber in Egypt&quot;. Beni-Suef University Journal of Basic and Applied Sciences. Vol. 7, no 4, pp. 598-605, 2018.</unstructured_citation></citation><citation key="ref30"><doi>10.1201/b19126-60</doi><unstructured_citation>Bing Gu, Huiming Xiao. &quot;An analytical method of fludioxonil technical material by high performance liquid chromatography&quot;. Advances in Energy Science and Equipment Engineering: Proceedings of the International Conference on Energy Equipment Science and Engineering, (ICEESE 2015), May 30-31, pp. 291-294, 2015.</unstructured_citation></citation><citation key="ref31"><doi>10.1346/CCMN.1988.0360302</doi><unstructured_citation>Cenens J., Schoonheydt R. A. &quot;Visible spectroscopy of methylene blue on hectorite, laponite B, and barasym in aqueous suspension&quot;. Clays and Clay Minerals. Vol. 36, no 3, pp. 214-224, 1988.</unstructured_citation></citation><citation key="ref32"><doi>10.1016/j.sjbs.2010.10.002</doi><unstructured_citation>Salama, H.M.H., Al-Watban, A.A., Al-Fughom, A.T. &quot;Effect of ultraviolet radiation on chlorophyll, carotenoid, protein and proline contents of some annual desert plants&quot;. Saudi Journal of Biological Sciences, Vol. 18, no 1, pp. 79-86, 2011.</unstructured_citation></citation><citation key="ref33"><doi>10.1016/S0260-8774(01)00152-2</doi><unstructured_citation>Turhan, Mahir., Sayar, Sedat., Gunasekaran, Sundaram. &quot;Application of Peleg model to study water absorption in chickpea during soaking&quot;. Journal of Food Engineering, Vol. 53, pp. 153-159, 2002.</unstructured_citation></citation><citation key="ref34"><doi>10.3390/agronomy9120781</doi><unstructured_citation>Gniewko Niedbała, Magdalena Piekutowska, Jerzy Weres, Robert Korzeniewicz, Kamil Witaszek, Mariusz Adamski, Krzysztof Pilarski, Aneta Czechowska-Kosacka and Anna Krysztofiak-Kaniewska. &quot;Application of Artificial Neural Networks for Yield Modeling of Winter Rapeseed Based on Combined Quantitative and Qualitative Data&quot;. Agronomy. Vol. 9, no 12, 781, 2019.</unstructured_citation></citation><citation key="ref35"><doi>10.1111/nph.14736</doi><unstructured_citation>Munz E., Rolletschek H., Oeltze-Jafra S., Fuchs J., Guendel A., Neuberger T., Ortleb S., Jakob P.M., Borisjuk L. &quot;A functional imaging study of germinating oilseed rape seed&quot;. New Phytologist Foundation. Vol. 216, no 4, pp. 1181-1190, 2017.</unstructured_citation></citation><citation key="ref36"><doi>10.1093/jxb/err030</doi><unstructured_citation>Weitbrecht, K.; Müller, K.; Leubner-Metzger, G. &quot;First off the mark: Early seed germination&quot;. Journal Exptrimental Botany, Vol. 62, no 10, pp. 3289-3309, 2011.</unstructured_citation></citation><citation key="ref37"><doi>10.1186/gb-2001-3-1-reviews1002</doi><unstructured_citation>Bove, J.; Jullien, M.; Grappin, P. Functional genomics in the study of seed germination. Genome Biology. Vol. 3, no 1, reviews1002, 2001.</unstructured_citation></citation><citation key="ref38"><doi>10.1016/j.plantsci.2014.11.008</doi><unstructured_citation>Kubala, S.; Garnczarska, M.; Wojtyla, Ł.; Clippe, A.; Kosmala, A.; Zmie 'nko, A.; Lutts, S.; Quinet, M. Deciphering priming-induced improvement of rapeseed (Brassica napus L.) germination through an integrated transcriptomic and proteomic approach. Plant Science. Vol. 231, pp. 94-113, 2015.</unstructured_citation></citation><citation key="ref39"><doi>10.1016/j.jplph.2015.04.009</doi><unstructured_citation>Kubala, S.; Wojtyla, Ł.; Quinet, M.; Lechowska, K.; Lutts, S.; Garnczarska, M. Enhanced expression of the proline synthesis gene P5CSA in relation to seed osmopriming improvement of Brassica napus germination under salinity stress. Journal Plant Physiology, Vol. 183, pp. 1-12, 2015.</unstructured_citation></citation><citation key="ref40"><doi>10.1079/SSR2005200</doi><unstructured_citation>Nagarajan S., Pandita V.K., Joshi D.K., Sinha J.P., Modi B.S. Characterization of water status in primed seeds of tomato (Lycopersicon esculentum Mill.) by sorption properties and NMR relaxation times. Seed Science Research. Vol. 15, no 2, pp. 99-111, 2005.</unstructured_citation></citation><citation key="ref41"><doi>10.21273/JASHS.116.6.942</doi><unstructured_citation>Parera C.A., Cantliffe D.J. Improved Germination and Modified Imbibition of shrunken-2 Sweet Corn by Seed Disinfection and Solid Matrix Priming. Journal of the American Society for Horticultural Science. Vol. 116, no 6, pp. 942-945, 1991.</unstructured_citation></citation><citation key="ref42"><doi>10.1079/9780851995342.0343</doi><unstructured_citation>Osborne D.J., Boubriak I., Leprince O. Rehydration of dried systems: Membranes and the nuclear genome. In: Black M., Pritchard H.W., editors. Desiccation and Survival in Plants: Drying without Dying. CABI; Wallingford, UK: pp. 343-364, 2002.</unstructured_citation></citation><citation key="ref43"><doi>10.1093/jxb/37.5.716</doi><unstructured_citation>Powell A.A., Oliveira M.D.A., Matthews S. The Role of Imbibition Damage in Determining the Vigour of White and Coloured Seed Lots of Dwarf French Beans (Phaseolus vulgaris). Journal of Experimental Botany. Vol. 37, no 5, pp. 716-722, 1986.</unstructured_citation></citation><citation key="ref44"><unstructured_citation>Chachalis D., Smith M.L. Imbibition behavior of soybean (Glycine max (L.) Merrill) accessions with different testa characteristics. Seed Science and Technology. Vol. 28, no 2, pp. 321-331, 2000.</unstructured_citation></citation><citation key="ref45"><doi>10.1626/jcs.73.323</doi><unstructured_citation>Nakayama N., Hashimoto S., Shimada S., Takahashi M., Kim Y.-H., Oya T., Arihara J. The Effect of Flooding Stress at the Germination Stage on the Growth of Soybean in Relation to Initial Seed Moisture Content. Japanese Journal of Crop Science. Vol. 73, no 3, pp. 323-329. 2004.</unstructured_citation></citation></citation_list>
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