References | 8- | Abdel Wahab, A.; El-Nennah, M.E.; Korayem, A.S.M and El-Masry, A.A. (2022): | Effect of bio-organic fertilizers on the content of some macro-nutrients in quinoa plant as well as its productivity and quality | . Journal of Environmental Sciences 51 (7): 21- 42. | |
9- Abdolahpour, H., Nejad, E.T., Pour, A.P. (2021). | Effect of nitrogen, phosphorus and potassium fertilizers on morpho-physiological characteristics and seed yield of quinoa ( | Chenopodium quinoa | Willd.). | Journal of Crop Ecophysiolog, 15(1). DOI: 10.30495/ jcep.2021.6810062.
10- Abou-Amer, A.I and A.S. Kamel.(2011): | Growth, Yield and Nitrogen Utilization Efficiency of Quinoa ( | Chenopodium quinoa | ) under Different Rates and Methods of Nitrogen Fertilization. | Egypt. J. Agron. Vol. 33, No. 2, pp. 155-166.
11- Al-Jbawi E, Abbas F, Al-Huniesh Th. Effect of water stress on germination process and initial seedling growth of quinoa ( | Chenopodium quinoa | Willd.). Research Journal of Science, 2020; 1(1):1-9.
12- Askegaard M., Eriksen J., Johnston A.E. (2004). | Sustainable management of potassium. | In: Schjorring P., Elmholt S., Christensen B.T. (Eds), Managing Soil Quality: Challenges in modern agriculture. CABI Publishing, Wallingford, Oxfordshire, UK, 85-102.
13 - Attia, K.K. (2004). | Effect of saline irrigation water and application with K, Zn and B on yield and quality of some sugar beet cultivars grown on a sandy loam calcareous soil. | Workshop on "Agricultural Development in the Arab Nation, Obstacles and Solutions" January 20-22, 2004, Assiut, Egypt.
14- Attila, Y., and I.K. Cigdem. (2014). | A new crop for salt affected and dry agricultural areas of turkey:Quinoa ( | Chenopodium quinoa | Willd.). | Turkish Journal of Agricultural and Natural Sciences. Special Issue. 2: 1440-1446
15- Alvar-Beltrán J., Napoli M., Dao A., Amoro O., Verdi L., Orlandini S., Marta A.D. (2021 | ). Nitrogen, phosphorus and potassium mass balances in an irrigated quinoa field. | Italian Journal of Agronomy 16, 1788. DOI: 10.481/ija.2021.1788.
16- AOAC. (2009). | Official Maethods of Analysis (15th ed). | Association of Official Analytical Chemists, Washington, DC.
15- Archer J.(1988). | Crop nutrition and fertiliser use. | Ed. Farming press LTD. p 99-122.
17- Aziz T., Ullah, S., Sattar, A., Nasim, M., Farooq, M. and Khan. M. M. (2010). | Nutrient availability and Maize (Zea mays) growth in soil amended with organic manure. | International Journal of Agriculture and Biology. ISSN print pp.1560-8530.18- Barber, S.A.(1968). | Mechanisms of potassium absorption by plants, In: The role of potassium in agriculture. | Amer. Soc. Agron. Madison, Wisconsin, U.S.A. pp. 239-310.
SSSA Madison W.I.
19- Bondok, M.A. (1996). | The role of boron in regulating growth , yield and hormonal balance in sugar beet. | Annals Agric, Sci, Ain Shams Univ, Cairo. 41(1):15-33.
20- Brady, N.C. (1999 | ). The nature and properties of soils | .Prentice Hall. Inc.
21- Cheng, M., Jin, J. and Huang, S. (1999). | Release of native and non-exchangeable soil potassium and adsorption in selected soils of North China. | Better Crops International, Vol. 13 (2), pp. 3-5.
22- Cocozza, C., Pulvento, C; Lavini, A, Riccardi, M, d’Andria, R and Tognetti, R. (2013). | Effects of increasing salinity stress and decreasing water availability on ecophysiological traits of quinoa ( | Chenopodium quinoa | Willd.) grown in a mediterranean-type agroecosystem | . J. Agron | . | Crop Sci. | 199: 229-240.
23- Day, P.R.(1965). | Particle fractionation and particle size analysis. | P. 546-566. In C. A. Black (ed), Methods of analysis, Agron. No. 9, part I: Physical and mineralogical properties. Am. Soc. Agron, Madison, WI, USA.
24- Dobkin, L. (2008). | Quinoa comeback: a staple in Inca times, this nutritious, versatile “super food” is undergoing a resurgence in the Andes and beyond. | Americas (English Edition). 60(5):28.
25- Doweidar, Mona M. and A.S. Kamel.( 2011). | Using of quinoa for production of some bakery products (gluten-free). | Egyptian J. Nutrition. 26(2): 21-52.
26- Eisa, S, Eid M.A, Abd El-Samad, E.H, Hussin, S.A, Abdel-Ati, A.A, El-Bordeny, N.E, Ali, S.H, Al-Sayed, H.M.A, Lotfy, M.E, Masoud, A.M, El-Naggar, A.M, Ebrahim, M. (2017). | Chenopodium quinoa | Willd. A new cash crop halophyte for saline regions of Egypt Aust | . J Crop Sci 11:343–351.
27- El-Etreiby, F.( 2000). | Effect of Saline irrigation water and micronutrient foliar application on sugar beet cultivars | .Alex. Sci Exch. 21(4): 397-407.
28- El-Sayed Ali, E.E | .; | Abd El-Samad, E.E.H.; Abdelaal, H.A and AbouSekken, M.S. (2023). | Enhancement of Quinoa Grain Yield and Nutritional Quality by Potassium Fertilization Combined with Foliar Spraying of Seaweed Extract. | Journal of Ecological Engineering, 24(3): 341-356.
29- FAO (Food and Agricultural Organization of the United Nations). (2007). | Methodes of anagysis for soil of arid and semi arid region. | FAO, Roma, Italy.
30- FAO (Food and Agricultural Organization of the United Nations). (2013). | Quinoa: launch of the international year of Quinoa. | http://www.fao.org/quinoa-2013/press-room/news/detail/en/. Accessed 7 Oct 2014.31- Farinazzi, F.V.; S.M. Barbalho and M. Oshiiwa. (2012). | Use of cereal bars with quinoa ( | Chenopodium quinoa | W.) to reduce risk factors related to cardiovascular diseases. | Food Sci. Technol | (Campinas). 32(2):239-244.
32- Filho, A.M.( 2017) | Quinoa: Nutritional Aspects. | J. Nutraceuticals Food Sci. 2: 1-3.
33- Gallego, D.Y.; L. Russo and K. Kerbab (2014). | Chemical and nutritional characterization of | Chenopodium pallidicaule | (cañihua) and | Chenopodium quinoa | (quinoa) seeds. | Emirates J.Food Agric., 26(7): 118-122
34- Geren, H.; Y. Kavut; G. Toopcu; S. Ekren; and D. Istlpliler (2015). | Effect of different sowing dates on grain yield and some yield components of quinoa ( | Chenopodium quinoa | Willd) growth under Mediterranean climatic conditions. | Egeuniversitesi ziraat Fakultesi Dergisi. 51 (3): 297-305.
35- Gonzalez, J.A., Konishi, Y., Bruno, M.Y. (2012). | Interrelationships among seed yield, total protein and amino acid composition of ten quinoa (Chenopodium quinoa) cultivars from two different agroecological regions. | J Sci Food.Agric 92(6):1222–1229.
36- Greenwood, D.J.; Cleaver, T.J.; Turner, M.K.; Hunt, J.; Niedorf, K.B.; Loquens, S.M.H. (1980). | Comparison of the effects of potassium fertilizer on the yield , potassium content and quality of 22 different vegetable and agricultural crops. | J. Agric. Sci. 95:441-456.
37- Hanafy A.H., Nesiem, M.R.A. Hewedy A.M. and Sallam. H.E.E. (2002) . | Effect of organic manures, biofertilizers and NPK mineral fertilizers on growth, yield, chemical composition and nitrate accumulation of sweet pepper plants. Proceedings of the 2nd . International Congress on Recent Technologies in Agriculture. Faculty of Agriculture, | Cairo Univ., 28-30 October , 4 : 932-955.
38- Havlin. J. D; J. D. Beaton; S. L. Tisdal& W. L. Nelson. (2005). | Soil fertility and fertilizers: An Introduction to nutrient management. | UperSaddleRiver. New Jersey. Pp:515. ASA. Special pup No. 40.Am. Soc. of Agronomy.Madison –Wisconen.
39- Hinojosa L, Gonzalez J, Barrios-Masias F, Fuentes F, Murphy K (2018). | Quinoa abiotic stress responses: a review. | Plants 7(4):106.
40- Hirose Y, Ishii T, Fujita T, Ueno N (2010). | Antioxidative properties and flavonoid composition of Chenopodium quinoa seeds cultivated in Japan. | Food Chem 119(4):1300–1306.
41- Jacline, F. Ibrahim; S.A. Seif; H.R.A. El-Deepah and A.M. Saad. (2020). | Impact of Different Rates and Split Application of NPK Fertilizer on Quinoa ( | Chenopoduim quinoa Willd | .) In Sandy Soil. | Am-Euras. J. Agron. 13 (3): 70-77.
42- Jacobsen, S.; H. Quispe; and A. Mujica (2000). | Quinoa: An alternative crop for saline soils in the Andes. | CIP Progr. Rep., Pp 403–408.43- Jacobsen SE, Mujica A, Jensen CR (2003). | The resistance of quinoa (Chenopodium quinoa Willd.) to adverse abiotic factors. | Food Rev Int 19:99–109.
44- Jacobsen, S.E., Liu, F., Jensen, C.R. (2009). | Does root-sourced ABA play a role for regulation of stomata under drought in quinoa ( | Chenopodium quinoa | Willd.). | Sci. Hortic, 122(2):281-287.
45- Jacobsen, S.E.; C. Monteros; J.L. Christiansen; L.A. Bravo; L.J. Cor- cuera and A. Mujica (2005). | Plant responses of quinoa ( | Chenopodium quinoa | Willd.) to frost at various phonological stages. | European Journal of Agronomy. 22: 131-139.
46- Jahangir, A.A.; R.K. Mondal; K. Nada; R. Sadia Afroze and M.A. Hakim. (2006). | Response of nitrogen and phosphorus fertilizer and plant spacing on growth and yield contributing character of sunflower | . Bangladesh J. Sci. Ind. Res. 41(1-2): 33-40.
47- James, L.E.A. (2009). | Quinoa ( | Chenopodium quinoa | Willd.): Composition, chemistry, nutritional, and functional properties. | Adv. Food Nutr. Res, 58:1-31
48- Jancurová, M., Lucia, M and Alexander, D. (2009). | Quinoa – a Review. | Czech J. Food Sci. Vol. 27. No. 2. pp. 71–79.
49- Jones, J.B. (2001). | Laboratory guide for conductive soil teses and plant analysis. | CRC Press Boca Raton. London. New York Washington, D.C.
50- Kakabouki, I.; D. Bilalis; A. Karkanis; G. Zervas; E. Tsiplakou; and D. Hela. (2014). | Effects of fertilization and tillage system on growth and crude protein content of quinoa ( | Chenopodium | quinoa | Willd.): An alternative forage crop. | Emir. J. Food Agric., 26 (1): 18-24.
51- Koyro HW, Lieth H, Eisa S. (2008). | Salt tolerance of Chenopodium quinoa willd, grains of the Andes: influence of salinity on biomass production, yield, composition of reserves in the seeds, water and solute relations. | Tasks Veg Sci 42(3):133–145.
52- Letelier, M.E.; C. Rodriguez-Rojas and S. Sanchez-Jofre (2011 | ). Surfactant and antioxidant properties of an extract from | Chenopodium quinoa | Willd seed coats. | J. Cereal Sci. 53(2):239–243.
53- Maradini-Filho A.M, Pirozi M.R, Borges J.T.S, Chaves H.M.P, Santana J.B.P, Reis- Coimbra J.S.D. (2017). | Quinoa: nutritional, functional and anti-nutritional aspects. | Crit Rev Food Sci Nutr 57:1618–1630.
54- Marschner, H.(1986). Mineral Nutrition in Higher Plants . Academic Press, London, 674 p.
55- Marschner, H; Kirkby, E.A. and Cakmak, I. (1996). | Effect of mineral nutrition status on shoot- root partitioning of photo-assimilates and cycling of mineral nutrition. | J. Exp. Botany 47:1255-1263.
56- Mengel, K. and Kirkby, E.A. (1980). | Potassium in crop production . | Adv. Agron. 33:59-110.
57- Minh, N.V; D.T. Hong; D.T.P. Anh and N.V. Long. (2022). | Effect of nitrogen and potassium on growth, yield, and seed quality of quinoa in Ferralsols and Acrisols under rainfed conditions. | Journal of Ecological Engineering. 23(4): 164–172.
58- Monreal, J.A.; Jimenez, E.T.; Remesal, E.; Morillo-Velarede, R. and Garcia-Maurino, S.(2006). | Proline content of sugar beet storage roots: response to water deficit and nitrogen fertilization at field conditions. | Environmental and Experimental Botany, Vol 60, I:2, p 257-267.
59- Mujica, A.; A. Canahua and R. Saravia. (2001). | Agronomía del cultivo de la quinua | , Santiago de Chile. pp: 20-48.
60- Munson, R.D.(1998). | Principles of plant analysis. | P | 1 | 1-2n. in Y.P. Kalra, Reference methods for plant analysis. CRC Press, Boca Raton.
61- Neweigy N. A., Ehsan , A., Hanafy, A. H., Zaghloul, R. A., El-Sayeda. H.(1997). | Response of sorghum to inoculation with Azospirillum, organic, and inorganic fertilization in the presence of phosphate solubilizing microorganisms. | Annals of Agricultural Science. Moshtohor. 35(3):1383-1401.
62- Olsen, S.A. and Sommers, L.E. (1982). | Phosphorus. | P403-430. In A.L. Page(ed), Methods of soil analysis, Agron. No 9, part 2:Chemical and microbiological properties, 2 | nd | ed ., Am. Soc. Agron., Madison, WI, USA.
63- Papastylianou, P.; K. Ioanna; T. Eleni; T. Ilias, B. Dimitrios; H. Dimitra; C. Demosthenis, A. George;and Z. George (2014). | Effect of fertilization on yield and quality of biomass of quinoa ( | Chenopodium quinoa | Willd.) and green amaranth ( | Amaranthus retroϔlexus | L.). | Bulletin UASVM Horticulture. 71(2): 1843-5254.
64- Pulvento, C.; Riccardi, M.; Lavini, A.; Iafelice, G.; Marconi, E and d’Andria, R. (2012). | Yield and Quality Characteristics of Quinoa Grown in Open Field Under Different Saline and Non-Saline Irrigation Regimes. | Journal of Agronomy and Crop Science.198(4):254-263.
65- Ramesh, P., Panwar, N. R., Singh, A. B., Ramana. S. (2008). | Effect of organic manures on productivity, soil fertility and economics of soybean (Glycine max) - durum wheat (Titicum durum) cropping system under organic farming in Vertisols. | The Indian Journal of Agricultural Sciences. 78(12): 1033 - 1037.
66- Rashid N, Basra SMA, Shahbaz M, Iqbal S, Hafeez MB .(2018). | Foliar applied moringa leaf extract induces terminal heat tolerance in Quinoa. | Int J Agric Biol 20(1):157–164.
67- Razzaghi, F.; Plauborg, F; Jacobsen, S-E; Jensen, C.R and Andersen, M.N. (2012). | Effect of nitrogen and water availability of three soil types on yield, radiation use efficiency and evapotranspiration in field-grown quinoa. | Agric. Water Manage | . | 109: 20-29.
68- Rego, V.M., M,Koetz., E.M, Bonfim-Silva., T.J.A, da Silva and L.G.A, Araújo Dourado .(2017). | Productive characteristics of quinoa ( | Chenopodium quinoa | Willd.) under irrigation and potassium fertilization. | AJCS 11(11):1438-1443.
69- Repo-Carrasco, R.; Espinoza, C and Jacobsen, S.E. (2003). | Nutritional value and use of the Andean crops quinoa (Chenopodium quinoa) and kañiwa (Chenopodium pallidicaule). | Food reviews international, 19(1-2), pp.179-189.
70- Repo-Carrasco-Valencia, R., Hellström, J.K., Pihlava, J.M. and Mattila. P.H. (2010 | ). Flavonoids and other phenolic compounds in Andean indigenous grains: Quinoa ( | Chenopodium quinoa | ), kaniwa ( | Chenopodium pallidicaule | ) and kiwicha ( | Amaranthus caudatus | ). | Food Chem. | 120: 128-133.
71- Richards, L. A.(1954). | Diagnosis and improvement of saline and alkali soils. | USDA. Agric. Handbook 6. Washington, D.c.
72- Salim, S.A.; Isam, K.H.A and Salwan, A.J.A. (2019). | Role of irrigation scheduling and potassium fertilization on soil moisture depletion and distribution of quinoa root (irrigation scheduling fertilization and their effect on moisture depletion and yield). | Plant Archives.19(2): 3844-3852.
73- Satyanarayana V., Vara Prasad, P. V. Murthy, V. R. K. and Boote. K. J. (2002). | Influence of integrated use of farmyard manure and inorganic fertilizers on yield and yield components of irrigated lowland rice. | Journal of plant nutrition. 25(10): 2081–2090.
74- Sekhon, G.S. (1983). | Potassium dynamics in the soils of semi-arid and arid areas. | Proc. 17th Colloquium Intern. Potash Ins. 153-162.
75- Shams, A.S. (2010). | Combat degradation in rain fed areas by introducing new drought tolerant crops in Egypt. | 4th International Conference on Water Resources and Arid Environments, Riyadh, Saudi Arabia, 5- 8 December, pp: 575-582.
75- Shahzad, M.A.; I. Shahid, and A. Irfan (2014). | Evaluating the response of nitrogen application on growth,development and yield of quinoa genotypes. | International Journal of Agriculture and Biology.1560–8530.
76- Soltanzadeh, A.; Ghanbari, A.; Seyedabadi, E and Dahmardeh, M. (2023): | Effects of Chemical Fertilizers and Vermicompost on Morphological and Chemical Characteristics of Quinoa (Chenopodium quinoa). | Journal of Crops Improvement:209-220.
77- Richards, L. A. (1954). | Diagnosis and Improvement of Saline and Alkali soils. | USDA hand book No. 60.
78- Smith, G.S.; Lauren, D.R.; Cornforth, I.S.; Agnew, M.P. (1982). | Evaluation of putrescine as a biochemical indicator of the potassium requirements of Lucerne. | New Phytol. 91,419-428.
79- Sparks, D.L. (2000). | Bioavailability of Soil Potassium. | In Handbook of soil Walcolml sumnered 2000 C.R.C. Press. New York.
80- Stikic, R.; Glamoclija, Dj; 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. | J. Cereal Sci. | 55: 132-138.
81- Tehrani, M.M. and Malakouti, M.L. (1997). | Effect of K and micronutrients on increase of sugar content of beets in Iran. | In | : Proc. IPI Regional Workshop on 'Food security in the WANA region, the essential need for balanced fertilization', Bornova, Izmir, Turkey, 26- 30 may 1997, pp. 220- 223.
82- Tisdale, L.; Samuel.; Nelson,L.; Warmer.; Beaton, D.; James and Havlin,L.; Jhon(1993). | Soil Fertility and Fertilizers. | Prentice. Hall-Fith Edition. 634p.
83- Turcios, A.E.; Brock, J and Trankner, M. (2021). | Potassium, an important element to improve water use efficiency and growth parameters in quinoa ( | Chenopodium quinoa | ) under saline conditions. | J | ournal of of Agronomy and Crop Science. 207(4): 618-630.
84- Valencia-Chamorro S.A. (2003). | Quinoa. In: Caballero B. | Encyclopedia of Food Science and Nutrition. 8: 4895-4902.
85- Vega-Galvez A, Miranda M, Vergara J, Uribe E, Puente L, Martinez EA (2010). | Nutrition facts and functional potential of quinoa (Chenopodium quinoa willd.), an ancient Andean grain: a review. | Soc Chem Ind 90:2541–2547.
86- Walkley. A and Black, C.A. (1934): | An examination of the degtjareff method for determination soil organic matter and a proposed modification of the chromic acid titration method. | Soil Sci. 63:29-38.
87- Wang, M., Zheng, Q., Shen, Q., & Guo, S. (2013). | The critical role of potassium in plant stress response. | International Journal of Molecular Sciences, 14(4), 7370– 7390.
88- Wilfredo, R., Soto, T.L. and Carasco, E. (2004). | Study on the social, environmental and economic impacts of quinoa promotion in Bolevia. | Proinp Foundation. Bull | . | 8, 51-72.
89- Yang, L.; Li, M.X.; Li, W.B.; Li, W.H and Mu, J.M.(2019). | Effects of phosphorus and potassium fertilizer on growth, development and yield of quinoa. | Journal of Jilin Agricultural University. 41(6):653-659.
90- Yazar, A.; S.S. Metin; B.C. Yeşim; I.K. Çiğdem; and T. Servet (2017). | Effect of planting times and saline irrigation of quinoa using drainage water on yield and yield components under the Mediterranean environmental conditions. | International Journal of Research in Agriculture and Forestry. 4(8): 8-16.
91- Yazdanpoor, A.; El-Soluki, M.; Dahmardeh, M and Khammari, I. (2023): | Investigating the combined effect of organic and chemical fertilizers on quantitative and qualitative yield of Quinoa (Chenopodium quinoa) under drought stress. | Journal of of Environmental Stresses in Crop Sciences. 1059-1072.
92- Youssef, M.A and M.I.H. Farag. (2021): | Co-application of Organic Manure and Bio-fertilizer to Improve Soil Fertility and Production of Quinoa and Proceeding Jew’s Mallow Crops. | J. Soil Science and Plant Nutrition, 21, 2472-2488.
93- Zhang M. K., and Fang. L. (2007). | Effect of tillage, fertilizer and green manure cropping on soil quality at an abandoned brick making site. | Soil and tillage Research. 93: 87-93.
94- Zhong, Z.; T. Gu; W. Wang; B. Zhang; X. Lin; Q. Huang; and W. Shen. (2010). | The effect of mineral ferilizer and organic manure on soil microbial community and diversity. | J. Plant and Soil, 326, 511-522.
95- Zorkany, E. S. K. (2000). | Response of corn plants to irrigation and fertilization with nitrogen and potassium. | M.Sc. Thesis, Fac. of Agric., Minia Univ. : 120-138.