Aguero, R.J.A., Aguirre, J.R. and Banue, V.A., 2006. Reproductive biology of Opuntia: A review. Journal of Arid Environments, 64, pp.549-585. doi: 10.1016/j.jaridenv.2005.11.008
Almodares, A., Jafarinia, M. and Hadi, M.R., 2009. The effects of nitrogen fertilizer on chemical compositions in corn and sweet sorghum. American-Eurasian Journal Agriculture and Environmental Science, 6, pp.441-446. doi: 10.5829/idosi.aejaes.2009.6.3.623
Amador, B.M., Hernández, A.F., Hernández, J.L.C., Cepeda, R.D.V., Serrano, N.Y.A., Diéguez, E.T. and Espinoza, F.H.R., 2005. Soil amendment with organic products increases the production of prickly pear cactus as a green vegetable. Journal of proffessinoal Assocciation for Cactus Development, 7, pp.97-109. doi: 10.1080/14620316.2005.11511931
Amal, G., Ahmed, N., Zaki, M. and Hassanein, M.S., 2007. Response of grain sorghum to different nitrogen sources. Research Journal of Agriculture and Biological Sciences, 3, pp.1002-1008. doi: 10.3923/rjabs.2007.1002.1008
Aruwa, C.E., Amoo, S.O. and Kudanga, T., 2018. Opuntia (Cactaceae) plant compounds, biological activities and prospects – A comprehensive review. Food Research International, 112, pp.328-344. doi: 10.1016/j.foodres.2018.05.051
Baligar, V.C., Fageria, N.K. and He, Z.L., 2001. Nutrient use efficiency in plants. Soil Science and Plant Analysis, 32, pp.921-950. doi: 10.1081/pls-100104165
Bayatani, H., Norouzian, M.A. and Afzalzadeh, A., 2019. Feeding value of Lactuca serriola at different harvesting stages and prediction of lag time with different models. Journal of Animal Production, 21, pp.219-221. [In Persian]. doi: 10.22059/jap.2019.270353.623341
Beyaert, R.P. and Roy, R.C., 2005. Influence of nitrogen fertilization on multi-cut forage sorghum-sudangrass yield and nitrogen use. Agronomy Journal, 97, pp.1493-1501. doi: 10.2134/agronj2005.1493
Bloomfield, K.J., Farquhar, G.D. and Lloyd, J., 2014. Photosynthesis–nitrogen relationships in tropical forest tree species as affected by soil phosphorus availability: a controlled environment study. Functional Plant Biology, 41, pp.820-832. doi: 10.1071/fp13219
Bradford, M.M., 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry, 72, pp.248-254. doi: 10.1016/0003-2697(76)90527-390527-3)
Dale, J.E. and Wilson, R.G., 2008. A comparison of leaf and ear development in barely cultivars as affected by nitrogen supply. Agricultural Science, 90, pp.503-508.
Diepen Brock, W., 2000. Yield analysis of winter oil seed rape: A review. Field Crops Research, 67, pp.35-49. doi: 10.1016/s0378-4290(00)00095-000095-0)
Dubeux, J.C.B., de Andrade, L.M.V., Cordeiro, D., Farias, I., Lima, L.E. and Ferreira, R.L.C., 2006. Productivity of Opuntia ficus-indica L. Miller under different N and P fertilization and plant population in north-east Brazil. Journal of Arid Environments, 67, pp.357-372. doi: 10.1016/j.jaridenv.2005.11.008
Dubois, M., Gilles, K.A., Hamilton, G.K., Robers, P.A. and Smith, F., 1962. Colorimetric method for determination of sugars and related substances. Analytical Chemistry, 26, pp.350-356. doi: 10.1021/ac60259a007
Engels, C., Kirkby, E. and White, P., 2012. Mineral nutrition, yield and source-sink relationship. In: Marschner's mineral nutrition of higher plants (ed. Marschner, P.) 85-134. Academic Press, London, U.K.
Garsid, A., 2004. Sowing time effects on the development, yield and oil of flaxseed in semi-arid tropical. Australian Journal of Production Agriculture, 23, pp.607-612.
Gonzalez, C.L., 1999. Potential of fertilization to improve nutritive value of prickly pear cactus (Opuntia lindheimeri Engelm.). Journal of Arid Environment, 16, pp.87-94. doi: 10.1006/jare.1999.0533
Gouws, C., Mortazavi, R., Mellor, D., McKune, A. and Naumovski, N., 2020. The effects of Prickly Pear fruit and cladode (Opuntia spp.) consumption on blood lipids: A systematic review. Complementary Therapies in Medicine, 50, pp.102- 118. doi: 10.1016/j.ctim.2020.102118
Guevara, J.C., Gonnet, J.M. and Estevez, O.R., 2000. Frost hardiness and production of Opuntia forage clones in the Mendoza plain, Argentina. Journal of Arid Environments, 46, pp.199-207. doi: 10.1006/jare.2000.0667
Karimi, T., Maleki Farahani, S. and Rezazadeh, A.R., 2017. Effects of sowing date and chemical fertilizer on seed vigor and qualitative and quantitative characteristics of Lady’s mantle (Lallemantia royleana Benth.). Iranian Journal of Medicinal and Aromatic Plants, 33, pp.126-138. [In Persian]. doi: 10.22092/ijmapr.2017.109717
Kelling, K.A., Rouse, D.I. and Speth, P.E., 2017. Fumigation and fertilizer nitrogen source effects on potato yield, quality, and early dying. American Journal of Potato Research, 94, pp.481-489. doi: 10.1007/s12230-017-9596-6
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. Soil Research, 33, pp.155-166. [In Persian]. doi: 10.22092/ijsr.2019.119757
Kjeldahl, J., 1883. A new method for the determination of nitrogen in organic matter. Analytical Chemistry, 22, pp.366-382. doi: 10.1021/ac60049a006
Lichtenthaler, H.K. and Wellburn, A.R., 1985. Determination of total carotenoids and chlorophylls a and b of leaf in different solvents. Biochemical Society Transactions, 11, pp.591-592. doi: 10.1042/bst0110591
Marschner, H., 1995. Mineral Nutrition of Higher Plants. 2nd Edition. Academic Press. London, 889 p.
Maynard, A.J., 1970. Methods in Food Analysis, Academic Press, San Francisco, London, 845 p.
Moe, K., Win, K., Kyaw, K. and Yamakawa, T., 2017. Effects of combined application of inorganic fertilizer and organic manures on nitrogen use and recovery efficiencies of hybrid rice. American Journal of Plant Sciences, 8, pp.1043-1064. doi: 10.4236/ajps.2017.86094
Mounir, B., Younes, G., Asmaa, M., Abdeljalil, Z. and Abdellah, A., 2020. Physico-chemical changes in cladodes of Opuntia ficus-indica as a function of the growth stage and harvesting areas. Journal of Plant Physiology, 251, pp.153-160. doi: 10.1016/j.jplph.2020.153160
Ochoa, M.J., Leguizamón, G. and Uhart, S.A., 2002. Effects of nitrogen availability on cactus pear (Opuntia ficus-indica (L.) Miller) postharvest quality. Acta Horticulture, 581, pp.225–230.
Olsen, S.R., Cole, C.V., Watanabe, F.S. and Dean, L.A., 1954. Estimation of available phosphorus in soils by extraction with sodium bicarbonate. Circular, Vol 939 (p. 19), Washington. doi: 10.2134/agronj1954.00021962004600030006x
Perchlik, M. and Tegeder, M., 2017. Improving plant nitrogen use efficiency through alteration of amino acid transport processes. Plant Physiology, 175, pp.47-56. doi: 10.1104/pp.17.00039
Pourazizi, M. and Fallah, S., 2013. Optimization of application of nitrogen fertilizers for growth and yield of forage sorghum under low-input and conventional farming systems. Journal of Crop Production and Processing, 9, pp.81-91. [In Persian]. doi: 20.1001.1.22518517.1392.3.9.7.0
Rasheed, M., Hussain, A. and Mahmood, T., 2013. Growth analysis of hybrid maize as influenced by planting techniques and nutrient management. International Journal of Agricultural and Biology, 2, pp.169-171. doi: 10.17957/ijab/15.0010
Ravindranath, M.H., 1981. Manual research methods for crustacean biochemistry and physiology. Special Publication, 7, pp.10-20.
Sandhya, V., Ali, S.K.Z., Grover, M., Reddy, G. and Venkateswarlu, B., 2010. Effect of plant growth promoting Pseudomonas spp. on compatible solutes, antioxidant status and plant growth of maize under drought stress. Plant Growth Regulation, 62, pp.21-30. doi: 10.1007/s10725-010-9481-3
Sepúlveda, E., Sáenz, C., Aliaga, E. and Aceituno, C., 2007. Extraction and characterization of mucilage in Opuntia spp. Journal of Arid Environments, 68, pp.534-545. doi: 10.1016/j.jaridenv.2006.11.005
Taiz, L. and Zeiger, E., 2006. Plant Physiology (4th Ed), Sunderland, U.K., 690 pp.
Vidal, I., Longeri, L. and Hetier, J.M., 1999. Nitrogen uptake and Chlorophyll meter measurements in spring wheat. Nutrient Cycling in Agroecosystems, 55, pp.1-6. doi: 10.1023/A:1009783407744
Williams, C.M., 2012. Nutritional quality of organic food: Shades of grey or shades of green? Proceedings of the Nutrition Society, 61, pp.19-24. doi: 10.1017/s0029665112000028
Xi, X., Wei, X., Wang, Y., Chu, Q. and Xiao, J., 2010. Determination of tea polysaccharides in camillaia sinensis by a modified phenol-sulfuric acid method. Archive of Biological Science, 62, pp.671-678. doi: 10.2298/abs1003671x
Zegbe, J.A., Serna-Pérez, A. and Mena-Covarrubias, J., 2014. Mineral nutrition enhances yield and affects fruit quality of ‘Cristalina’ cactus pear. Scientia Horticulturae, 167, pp.63-70. doi:10.1016/j.scienta.2013.12.023