Development of Flaxseed Submitted to Nitrogen Doses
Palavras-chave:
Linum usitatissimum L, fertilizer, multi-environment, nitrogenResumo
The flaxseed is little explored under Brazilian cultivation conditions, generating a gap in information about the appropriate management of the crop, in the country. Hence, the objective was to find the appropriate dose of nitrogen for the development of the variables: technical length, yield length, main stem diameter, number of grains per pod, plant grain yield, and plant dry mass of two flaxseed varieties, brown and golden, in places with subtropical and tropical climate in Brazil. The treatments consisted of a two-factor 2 x 6 experiment, consisting of two flax varieties (brown and golden) and six nitrogen doses (0; 30; 60; 90; 120 and 150 kg ha-1), in randomized blocks with four repetitions and three different environments: Santa Maria and Frederico Westphalen, in the state of Rio Grande do Sul, and Viçosa, in the state of Minas Gerais. The brown variety obtained greater technical and yield length compared to the golden variety, on the other hand, the golden variety showed a higher number of grains per capsule and higher plant grain yield compared to the brown variety, in the three environments. The plant dry mass increased linearly and proportionally to the increase in nitrogen doses in Santa Maria and Frederico Westphalen environments. Therefore, flaxseed responds differently to nitrogen supplementation according to the cultivation environment, showing wide variability. The different doses of nitrogen influenced the variables analyzed and the varieties of flaxseed differently, depending on the environment.
Referências
Abdel-Kader EMA & Mousa MA (2019) Effect of nitrogen fertilizer on some flax varieties under two different location conditions. Journal of Plant Production, 10:37-44.
Alvares CA, Stape JL, Sentelhas PC, Gonçalves JLM & Sparovek G (2013) Köppen’s climate classification map for Brazil. Meteorologische Zeitschrift, 22:711-728.
Andruszczak S, Gawlik-Dziki U, Kraska P, Kwiecińska-Poppe E, Różyło K & Pałys E (2015) Yield and quality traits of two linseed (Linum usitatissimum L.) cultivars as affected by some agronomic factors. Plant, Soil and Environment, 61:247-252.
Birhanu AG (2020) Yield evaluation and character association of linseed (Linum usitatissimum L.) genotypes in moisture stress areas of South Tigray, Ethiopia. Journal of Cereals and Oilseeds, 11:16-20.
Chopra P & Badiyala D (2016) Influence of nitrogen fertilization on performance of linseed (Linum usitatissimum L.) under utera system. Himachal Journal of Agricultural Research, 42:91-93.
Dmitriev AA, Novakovskiy RO, Pushkova EN, Rozhmina TA, Zhuchenko AA, Bolsheva NL, Beniaminov AD, Mitkevich VA, Povkhova LV, Dvorianinova EM, Snezhkina AV, Kudryavtseva AV, Krasnov GS & Melnikova NV (2020) Trasncriptomes of different tissues of flax (linim usitatissimum L.) cultivars with diverse characteristics. Frontiers in Genetics, 11:01-06.
El-Gedway EMM, Hammam GYM, Allam SAH, Mostafa SHA & ElShimy KHSS (2018) Effect of irrigation intervals and nitrogen fertilizer rates on flax yield and some anatomical manifestations. Menoufia Journal of Plant Production, 3:01-19.
El-Yamanee GSA (2011) Response of flax plant (Linum usitatissimum L) to treatments with mineral and biofertilizers. Doctoral Thesis. Cairo, Cairo University. 82p.
Emam S (2019) Cultivars response of flax (Linum usitatissimum L.) to different nitrogen sources in dry environment. Egyptian Journal of Agronomy, 41:119-131.
Embrapa (2013) Sistema Brasileiro de Classificação de Solos. 3ª ed. Brasília, Embrapa. 353p.
Fila G, Bagatta M, Maestrini C, Potenza E & Matteo R (2018) Linseed as a dual-purpose crop: evaluation of cultivar suitability and analysis of yield determinants. Journal of Agricultural Science, 156:162-176.
Hatanaka T, Yamamoto N, Araki R, Kishigami M, Nakamoto T, Masumura T & Sugimoto T (2021) Fatty acid compositions of triacylglycerols in flax (Linum usitatissimumL.) seeds with varied seeding dates and nitrogen fertilization in a temperate region of Japan. Soil Science and Plant Nutrition, 67:269-276.
IBGE - Instituto Brasileiro de Geografia e Estatística (2016) Censo Agropecuário. Available at: <https://seriesestatisticas.ibge.gov.br/series.aspx?no=1&op=0&vcodigo=PA3&t=la%2520vouratemporaria-quantidade-produzida. Acesso%2520em%3a08%2f04%2f2015>. Accessed on: April 12th, 2022.
Ibrahim HM (2009) Effect of sowing date and N-fertilizer rates on seed yield, some yield components and oil content in flax. Alexandria Journal of Agricultural Sciences, 54:19-28.
Kariuki W, Masinde PW, Onyango AN, Githiri SM & Ogila K (2014) The growth and seed yield of five linseed (Linum usitatissimum L.) varieties as influenced by nitrogen application. Journal of Animal & Plant Sciences, 22:3493-3509.
Khajani FP, Irannezhad H, Majidian M & Oraki H (2012) Influence of different levels of nitrogen, phosphorus and potassium on yield and yield components of flax seed oil (Linum usitatissimum L.) variety Lirina. Journal of Medicinal Plants Research, 6:1050-1054.
Kulpa W & Danert S (1962) ZurSystematik von: Linum usitatissimum L. Kulturpflanze Beiheft, 3:341-388.
Lee SH, Kim YB, Kim DH, Lee DW, Lee HG, Jha R & Lee KW (2021). Dietary soluble flaxseed oils as a source of omega-3 polyunsaturated fatty acids for laying hens. Poultry Science, 100:101276.
Madhusudhan B (2009) Potential Benefits of Flaxseed in Health and Disease - A Perspective. Agriculturae Conspectus Scientificus, 74:67-72.
Martin CA, Almeida VV, Ruiz MR, Visentainer JEL, Matshushita M, Souza NE & Visentainer JV (2006) Ácidos graxos poli-insaturados ômega-3 e ômega-6: importância e ocorrência em alimentos. Revista de Nutrição, 19:761-770.
Mohammadi M, Sharifi P, Karimizadeh R & Shefazadeh MK (2012) Relationships between Grain Yield and Yield Components in Bread Wheat under Different Water Availability (Dryland and Supplemental Irrigation Conditions). Notulae Botanicae Horti Agrobotanici, 40:195-200.
Morris DH & Vaisey-Genser M (2003) Flaxseed. In: Benjamin Caballero (Eds.) Encyclopedia of Food Sciences and Nutrition. Baltimore, Johns Hopking University. p.2525-2531.
Patel RK, Tomar GS & Dwivedi SK (2017) Effect of irrigation scheduling and nitrogen levels on growth, yield and water productivity of linseed (Linum usitatissimum L.) under Vertisols. Journal of Applied and Natural Science, 9:698-705.
Popovic V, Sikora V, Tatić M, Filipović V, Terzić D, Janjić S & Brdar-Jokanović M (2016) Analysis of production of linseed (Linum usitatissimumL.) in the world. In: 20th International Eco-Conference and 9th Internationational Eco-Conferenceon Safe Food, Novi Sadi. Proceedings, IUNS. p.119-127.
Prakhova TYA & Turina EL (2021) Effect of mineral fertilizers on productivity and quality of winter false flax. IOP Conference Series: Earth and Environmental Science, 937:01-06.
R Development Core Team (2020) R: A Language and environment for statistical computing. Available at: <https://www.r-project.org/>. Accessed on: March 1rst, 2020.
Ricklefs-Johnson K, Johnston CS & Sweazea KL (2017) Ground flaxseed increased nitric oxide levels in adults with type 2 diabetes: A randomized comparative effectiveness study of supplemental flaxseed and psyllium fiber. Obesity Medicine, 5:16-24.
ROLAS - Rede Oficial de Laboratórios de Análise de Solo e de Tecido Vegetal (2004) Manual de adubação e calagem para os estados do Rio Grande do Sul e Santa Catarina. 10ª ed. Porto Alegre, Sociedade Brasileira de Ciência do Solo. 400p.
Shi HJ & Zhao YW (2018) Effects of different nitrogen application rates on growth and yield of upland flax. Agricultural Science of Technological Information, 20:40-42.
Taddese G & Tenaye S (2018) Effect of nitrogen on flax (Linum usitatissimum L.) fiber yield at debreberhan area, Ethiopia. Forestry Research and Engineering: International Journal, 2:284-286.
Velho JP & Lúcio AD (2021) Linhaça: perspectiva de produção e usos na alimentação humana e animal. Ponta Grossa, Atena Editora. 156p.
Vera CL, Duguid SD, Fox SL, Rashid KY, Dribnenki JCP & Clarke FR (2012) Comparative effect of lodging on seed yield of flax and wheat. Canadian Journal of Plant Science, 92:39-43.
Yan B, Bing WU, Gao Y & Jianmin WU (2018) Effects of nitrogen and phosphorus dosage on accumulation, transport and yield of non-structural carbohydrate in flax. Chinese Soil Fertility, 2:63-69.
Zhang Q, Gao Y, Yan B, Cui Z, Wu B, Yang K & Ma J (2020) Perspective on oil flax yield and dry biomass with reduced nitrogen supply. Oil Crop Science, 5:42-46.
Zhu L, Sha L, Li K, Wang Z, Wang T, Li Y, Liu P, Dong X, Dong Y, Zhang X & Wang H (2020) Dietary flaxseed oil rich in omega-3 suppresses severity of type 2 diabetes mellitus via anti-inflammation and modulating gut microbiota in rats. Lipids in Health and Disease, 19:01-16.
Zörb C, Ludwing U & Hawkesford MJ (2018) Perspective on wheat yield and quality with reduced nitrogen supply. Trends in Plant Science, 23:1029-1037.
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