Abugoch, L., Castro, E., Tapia, C., Añón, M.C., Gajardo, P. and Villarroel, A., 2009. Stability of quinoa flour proteins (Chenopodium quinoa Willd.) during storage. International Journal of Food Science and Technology, 44(10), pp.2013-2020. doi: 10.1111/j.1365-2621.2009.02023.x
Ahanger, M.A., MoradTalab, N., Fathi Abd-Allah, E., Ahmad, P. and Hajiboland, R., 2016. Plant growth under drought stress: significance of mineral nutrients. Water stress and crop plants: a sustainable approach, First Edition. Edited by Ahmad, P. Vol. 2, pp.649-668. doi: 10.1002/9781119054450.ch37
Al Jbawi, E., Othman, M., Al Hunnish, T. and Abbas, F., 2022. The effect of plant density on growth and seed yield of quinoa (Chenopodium quinoa Willd.) in the middle region of Syria. International Journal of Phytology Research, 2(1), pp.19-24.
AOAC, 2005. Official Methods of Analysis of AOAC INTERNATIONAL, 18th Ed., AOAC INTERNATIONAL, Gaithersburg, MD.
Asher, A., Dagan, R., Galili, S. and Rubinovich, L., 2022. Effect of row spacing on quinoa (Chenopodium quinoa) growth, yield and grain quality under a mediterranean climate. Agriculture, 12(9), pp.1-12. doi: 10.3390/agriculture12091298
De Oliveira Filho, A.F., Silva, M.N.C., Innecco, R., Bezerra, F.T.C., de Abreu, W.E. and Viana, Í.E.T., 2021. Yield and viability of quinoa seeds as affected by planting arrangement. Comunicata Scientiae, 12, pp.1-8. doi: 10.14295/cs.v12.3522
Eisa, S.S., Abd El Samad, E.H., Hussin, S.A., Ali, E.A., Ebrahim, M., González, J.A., Ordano, M.A., Erazzú, L.E., El Bordeny, N.E. and Abdel-Ati, A.A., 2018. Quinoa in Egypt-plant density effects on seed yield and nutritional quality in marginal regions. Middle East Journal of Applied Sciences, 8(2), pp.515-522.
Fathi, G., 2010. Effects of plant density on yield and yield components of mung bean in Khoozestan growing conditions. Iranian Journal of Field Crop Science, 41(1), pp.19-27. [In Persian]. doi: 20.1001.1.20084811.1389.41.1.3.2
Fuentes, F.F., Martinez, E.A., Hinrichsen, P.V., Jellen, E.N. and Maughan, P.J., 2009. Assessment of genetic diversity patterns in Chilean quinoa (Chenopodium quinoa Willd.) germplasm using multiplex fluorescent microsatellite markers. Conservation Genetics, 10(2), pp.369-377. doi: 10.1007/s10592-008-9604-3
González, J.A., Eisa, S., Hussin, S.A.E.S. and Prado, F.E., 2015. Quinoa: an Incan crop to face global changes in agriculture. Quinoa: Improvement and Sustainable Production, pp.1-18. doi: 10.1002/9781118628041.ch1
Hedge, J.E., Hofreiter, B.T. and Whistler, R.L., 1962. Carbohydrate chemistry. Academic Press, New York, 17.
Kadam, S.R., Bhale, V.M., Chorey, A.B. and Deshmukh, M.R., 2018. Influence of zinc and iron fortification on yield and post-harvest studies of different rice cultivars (Oryza sativa L.). International Journal of Current Microbiology and Applied Sciences, 7(1), pp.1878-1888. doi: 10.35709/ory.2023.60.2.8
Karami, R., Farajee, H., Movahedi Dehnavi, M. and khoshroo, A., 2020. Interaction of Nitrogen and Plant Density on Growth and Yield of Quinoa (Chenopodium quinoa Willd.). Crop Production, 13(1), pp.111-124. [In Persian]. doi: 10.22069/ejcp.2020.17603.2296
Khalili, S., Bastani, A., and Bagheri, M., 2019. Effect of different levels of irrigation water salinity and phosphorus on some properties of soil and quinoa plant. Iranian Journal of Soil Research, 33(2), pp.155-166. [In Persian]. doi: 10.22092/ijsr.2019.119757
Kitson, R.E. and Mellon, M.G., 1944. Colorimetric determination of phosphorus as molybdivanado phosphoric acid. Industrial and Engineering Chemistry Analytical Edition, 16(6), pp.379-383. doi: 10.1021/i560130a017
Lu, C., Li, Y., Cui, Q., Xiang, Y., Lv, W. and Wei, Z., 2022. Effects of Planting Density of Quinoa on Agronomic Characters and Yield in Chengde. Meteorological and Environmental Research, 13(5), pp.103-109. doi: 10.19547/j.issn2152-3940.2022.05.020
Najafinezhad, H., Koohi, N. and Darvishi, D., 2022. Evaluation of grain yield and quality of quinoa cultivars as affected by planting date and plant density in Jupar region of Kerman. Iranian Journal of Field Crop Science, 53(1), pp.113-129. [In Persian]. doi: 10.22059/ijfcs.2021.311672.654761
Najafinezhad, H., Shakeri, P. and Amirpour Robat, M., 2021. Effect of planting Ddate and plant density on forage yield and quality of quinoa (Chenopodium quinoa willd.) varieties in cold temperate region of Kerman province in Iran. Seed and Plant Journal, 36(4), pp.439-460. [In Persian]. doi: 10.22092/sppi.2021.123894
Rabbani, B., Khoramivafa, M., Saeidi, M., Bagheri, M. and Zarei, L., 2022. Study the relationship between agronomical traits and mineral elements of grain in three genotypes of quinoa (Chenopodium quinoa Willd) under effect of planting date and planting density. Cereal Biotechnology and Biochemistry, 1(3), pp.390-413. [In Persian]. doi: 10.0.86.110/cbb.2022.8238.1017
Ruiz, K., Biondi, B., Oses, S.R., Acuna-Rodriguez, I.S., Antognoni, F., Martinez-Mosqueira, E.A., Coulibaly, A., Canahua-Murillo, A., Pinto, M., Zurita-Silva, A., Bazile, D., Jacobsen, S.E. and Molina-Montenegro, M.A., 2014. Quinoa biodiversity and sustainability for food security under climate change. A review. Agronomy for Sustainable Development, 34, pp.349–359.
Samadzadeh, A.R., Zamani, GH.R. and Fallahi, H.R., 2020. Possibility of quinoa production under South-Khorasan climatic condition as affected by planting densities and sowing dates.
Applied Research in Field Crops, 33(1), pp.82-104. [In Persian]. doi: 10.22092/aj.2020.125793.1392
Singh, D., 2019. Quinoa (Chenopodium Quinoa Willd). Scientific Publishers. pp.258.
Spehar, C.R. and Rocha, J.D.S., 2009. Effect of sowing density on plant growth and development of quinoa, genotype 4.5, in the Brazilian savannah highlands. Bioscience Journal, 25(4), pp.53-58.
Stikic, R., Glamoclija, D., Demin, M., Vucelic-Radovic, B., Jovanovic, Z., Milojkovic-Opsenica, D., Jacobsen, S.E. and Milovanovic, M., 2012. Agronomical and nutritional evaluation of quinoa seeds (Chenopodium quinoa Willd.) as an ingredient in bread formulations. Journal of Cereal Science, 55, pp.132–138. doi: 10.1016/j.jcs.2011.10.010
Vahedi, M.R., Tohidi Nejad, E. and Pasandi Pour, A., 2022. Evaluation of yield and yield components of quinoa (Chenopodium quinoa Willd) in as affected by different planting densities. Journal of Crop Ecophysiology, 15(60), pp.593-608. [In Persian]. doi: 10.30495/jcep.2022.689808
Van Minh, N., Hoang, D.T., Van Loc, N. and Long, N.V., 2020. Effects of plant density on growth, yield and seed quality of quinoa genotypes under rain-fed conditions on red basalt soil regions. Australian Journal of Crop Science, 14(12), pp.1977-1982.
Wang, N., Wang, F., Shock, C.C., Meng, C. and Qiao, L., 2020. Effects of management practices on quinoa growth, seed yield, and quality. Agronomy, 10(3), pp.1-15. doi: 10.3390/agronomy10030445
Zulkadir, G., 2021. The effects of various row spacing and sowing periods on the plant properties of quinoa (Chenopodium quinoa willd.). Applied Ecology and Environmental Research, 19(3), pp.1857-1867. doi: dx.doi.org/10.15666/aeer/1903.18571867