AGRIS - International System for Agricultural Science and Technology

Determining the Optimal Fertilizer Requirement of Nitrogen, Phosphorous and Potassium for Durum Wheat, Bohoth 11, in Al-Ghab Region

2023

Muhammad Ahmad Zenab


Bibliographic information
Publisher
Damascus University . Faculty of agricultural engineering
Other Subjects
Phosphorous; الآزوت; الفسفور; المؤشرات الإنتاجية; Productivity indicators; Vegetative indicators; المؤشرات المورفولوجية; البوتاسيوم
Language
Arabic
Note
References 1) Adday, S. K. T. 2002: Effect adding of foliar Soil k fertilization on growth and wheat yield Triticum aestivum L. A thesis College of Agriculture. Univ. Baghdad. 2) Alam, M.Z: M.S. Rahman: M.E. Haque: M.A.K. Azad: and M.R.H. Khan. 2003. Response of irrigation frequencies and different doses of N fertilization on the growth and yield of wheat. Pakistan journal of biological science. 6 (8):723-734. 3) Alam. M., R. M. Akkas, M. S. H. Molla, M. A. Momin and M. A. Mannan. 2009: Evaluation of different levels of potassium on the Yield and protein content of wheat in the high Ganges river flood plain sop. Bangladesh .J.Agril. Res.34(1): 97-104 4) Ali S., Hafeez A., Ma X., Tung S.A., Chattha M.S., Shah A.N.,Yang G.,., Equal potassium-nitrogen ratio regulated the nitrogen metabolism and yield of high-density late-planted cotton (Gossypium hirsutum L.) in Yangtze River valley of China, Ind. Crop. Prod., 2002, 129, 231-241 5) Ali, L.Q. Mohy- Ud-Din and M. Ali , 2015- Effect of different doses of nitrogen fertilizer on the yield of wheat, Int. J. Agric. Biol, 5, 4, 38– 439. 6) Al-Ghzawi, A. L., Khalaf, Y. B., Al-Ajlouni, Z. I., AL-Quraan, N. A., Musallam, I., and Hani, N. B. (2018). The Effect of Supplemental Irrigation on Canopy Temperature Depression, Chlorophyll Content, and Water Use Efficiency in Three Wheat (Triticum aestivum L. and T. durum Desf.) Varieties Grown in Dry Regions of Jordan. Agriculture, 8(97): 1-23. 7) Alley, M. M., Brann, D.E., Hammons ,J. L., Peter Scharf, and Baethgen, W. E, 1999- Nitrogen Management for Winter Wheat: Principles and Recommendations. Crop & Soil Environmental Sciences, PUBLICATION 424-026. 8) Alloush, Ghiath A., Qoubailie, Saleh., and Al-Hafee, Alaa;2022: The Effect of nitrogen Fertilization and Potassium Humate on Growth and Nitrogen Utilization Efficiencies of Soft Wheat (Sham 10) under the Costal Conditions, TishreenUniversity Journal for Research and Scientific Studies - Biological Sciences Series Vol. (44) No. (3) 2022, Pp.: 91-106. 9) AL-Ouda, A. (2013). Effect of Tillage Systems on Wheat Productivity and Precipitation Use Efficiency under Dry Farming System in the North East of Syria. The Arab J. for Arid Environments, 6(2): 3-11. 10) Aown, M.; S. Raza, M. F. Saleem, S. A. Anjum, T. Khaliq and M. A. Wahid 2012. Foliar application of potassium under water deficit conditions improved the growth and yield of wheat (Triticum aestivum L.). J. Anim.Plant Sci., 22(2): 431- 437. 11) Asadi GA, Ghorbani R, Khorramdel S, Azizi G. Effects of Wheat Straw and Nitrogen Fertilizer on Yield and Yield Components of Garlic (Allium sativum L.). Journal of Agricultural Science and Sustainable Production. 2014 Feb; 3(4.1):157–68. 12) Azzaaoui, A; Hason R.G; Soltanpour P.N, 1989: Wheat prequirements on calcareous Moroccan soils. II As estimated by the Olsen P soil test and plant uptake. Soils Science and plant analysis. 20, 8-57,893-908; 13 ref. 13) Bajwa, M. I. 1994: Soil Potassium. Potash fertilizer usage and recommendation in Pakistan. Pot. Rev. 3: 1 – 7. 14) Baque, Md. A.; Md. A. Karim, A. Hamid and H.Tetsushi.2006.Effect of fertilizer potassium on growth, yield and nutrient uptake of wheat (Triticum aestivum) under water stress conditions. South Pacific Studies. 27(1):25-35. 15) Battaglia, M.; Groover, G.; Thomason, W. Harvesting and Nutrient Replacement Costs Associated with Corn Stover Removal in Virginia; Virginia Tech: Blacksburg, VA, USA, 2018. 16) Beerling, E. A. M., Blok, C., van der Maas, A. A., and Van Os, E. A. (2014). Closing the water and nutrient cycles in soilless cultivation systems. Acta Hortic. 1034, 49–55. doe: 10.17660/ActaHortic.2014.1034.4 17) Belaid, A. 2000. Durum wheat in WANA: production, trade, and grains from technological change. Durum wheat improvement in the Mediterranean region. New challenges, CIHEAM, IRTA, CIMMYT, ICARDA. 35-45.18) Bhatia C.R; Rabson R; 1987: Relationship of grain yield and nutritional quality. Genetic and Agronomic Improvement Agronomy Monograph no 28. 19) Bhogal, A; Young S.D; Ralph R; Brabley S; Craiaigon J;1990: Modelling the residual effects of phosphate fertilizer in the Ropsley (UK) field trail 1978-1990. Fertile. Res, 44(1), 26-36. 20) Brennan, r.F, 1995: Effect of levels of take all and phosphorus fertilizer on the dry matter and grain yield of wheat. J. Plant Nutr.18 (6), 1159-1176. 21) Broadley, M.R., Bowen, H.C., Cotterill, H.L., Hammond, J.P., Meacham, M.C., Mead, A., White, P.J. (2004) Phylogenetic variation in the shoot mineral concentration of angiosperms. Journal of Experimental Botany, 55, 321-336. 22) Buah SS, Mwinkaara S. Response of sorghum to nitrogen fertilizer and plant density in the Guinea savanna zone. Journal of agronomy. 2009; 8(4):124–30. 23) Caplan, D., Dixon, M., and Zheng, Y. (2017). Optimal rate of organic fertilizer during the vegetative-stage for cannabis grown in two coir-based substrates. Hort Science 52, 1307–1312. Doi: 10.21273/hortsci11903-17 24) Cavazza, L. and A. Patruno. 1997: Type of phosphorus fertilizer. III.Effects on available phosphorus content in different soils. Rivista di Agronomia. 31(2):347– 360. 25) Chaves, L. H. G.; R. A. Viegas; A. C. F. Vasconcelos, and H. Vieira. 2005. Effect of potassium on moringa plants grown in nutrient solution.Revista De Biologia E Ciencias Da Terra. 26) Cai B Y, Zu W, Ge J P. 2004. Influence on phosphorus amount to dry matter accumulation and distribution of different soybean cultivars. Soybean Science, 23, 73-280. 27) Cao, H, Wang, Z, He, G, Dai, J. (2017) reported that there was a positively linear relationship between NPK absorption of aboveground dry matter and grain yield according to data from 52 experimental sites during 2009–2013. Field Crops Research 209:88-928) Copper C.J.M; Jones M; Harris H; Matar A; 1988: Agro ecological constraints to crop production in west Asia and North Africa and their impact on fertilizer use held during May 1-14. 29) Daoud F, 1993: Etoumeaud, country Report, Int. Potash Inst, Basel, Switzerland. 30) Dario. G, P. Ruisi, G. D. Miceli, A. S. Frenda, G.Amato., 2010- Nitrogen Use Efficiency and Nitrogen Fertilizer Recovery of Durum Wheat Genotypes as Affected by Interspecific Competition, Agronomy Journal , 102, 707–715. 31) Dai, X.Q., Zhang, H.Y., Spiertz, J.H.J., Yu, J., Xie, G.H., Bouman, B.A.M. (2010) Crop response of aerobic rice and winter wheat to nitrogen , phosphorus and potassium in a double cropping system. Nutrient. Cycle. Agro ecosystem, 86, 301-315. 32) Dario, G.; P. Ruisi; G. D. Miceli; A. S. Frenda; and G. Amato (2010). Nitrogen Use Efficiency and Nitrogen Fertilizer Recovery of Durum Wheat Genotypes as affected by Interspecific Competition. Agronomy Journal. 102: 707-715. 33) Dobermann, A., Cassman, K.G., Mamauril, C.P., Sheehy, J.E. (1998) Management of phosphorus and potassium, and sulfur in intensive, irrigated lowland rice. Field Crop Research. 56, 113-138. 34) Donato. D G, F.Fornaro.2012. Nitrogen fertilization and root growth dynamics in durum wheat CRA-Research Unit for Cropping Systems in Dry Environment, Bari, Italy [Italian Journal of Agronomy 2012; 7:e29] 35) Duncan, E.G.; O’Sullivan, C.A.; Roper, M.M.; Biggs, J.S.; Peoples, M.B. Influence of co-application of nitrogen with phosphorus, potassium and sulphur on the apparent efficiency of nitrogen fertilizer use, grain yield and protein content of wheat: Review. Field Crop. Res. 2018, 226, 56–65. 36) Edward, N.k. 2000. Potassium. In The Wheat Book, Principles and Practices by Anderson, W.K. and Garlinge , J., Agric. Western Australia , Dept. of Agric., October 2000.37) Elmejahed K; 1993: Effect of N on yield, N uptake and water use efficiency of wheat in rotation systems under semi-arid conditions of Morocco. PhD Dissertation. Unvi. Nebraska. Lincoln, Nebraska. 38) EL-Medani, M.M.Aboaly H.H.Abdalla and R.M.Ramadan. (Spectroscopy Letters, 37(6), 619-632(1997). 39) Emam, Y. and M. Niknejad, 2005- An introduction to the physiology of crops yield. (Trs.), Shiraz University Press, 2nd Ed., 551 pp., Shiraz, Iran. (In Persian). 40) Epstein E, Nugent J O, Conner M. 1983. Crop tolerance to salinity and other mineral stresses. In: Ciba Foundation Symposium 97. Better Crops for Food. Pitman Publishing Press, London. pp. 61-68. 41) Fageria NK. The use of nutrients in crop plants. CRC press; 2016 Apr 19 42) Fallahi, H. A., A. Nasseri and A. Siadat, 2008- Wheat yield components are , Positively influenced by nitrogen application under moisture deficit environmentsInt. J.Agri. Biol, 10(6), 673 – 676. 43) FAO. 2020. FAOSTAT 2020 FAO Statistical Databases http://faostat.fao.org/ 44) Farmaha B.S., Singh P. & Singh B. (2021) Spatial and temporal assessment of nitrate-N under rice wheat system in riparian wetlands of Punjab, northwestern India. Agronomy, 11, 1284. 45) Fateh, H.; Toube, A.; Gholipuri, A.Q. The feasibility of reducing yield gap by improving crop management. Ukr. J. Ecol. 2019, 9, 21–30. 46) Gaj, R. (2010) Influence of different potassium fertilization level on the winter wheat nutritional status and on the yields in critical growth stage. Journal of Elementology, 15(4), 629-637. 47) Gaj, R., Gorki, D., Przybył, J. (2013) the effect of differentiated phosphorus and potassium fertilization on winter wheat yield and quality. Journal of Elementology, V.18 (1), 55-67. 48) Gething, P.A. 1997. The potassium nitrate partnership. 2nd edition, int. potash. Inst. Basel, Switzerland.49) George C. 1985. Elliott, André, Læuchl. Phosphorus efficiency and phosphate-iron interaction in maize. Agronomy Journal, 77, 399-403. 50) Gerba. L., Getachew. Belay. Walelign. W, 2013- Nitrogen Fertilization Effects on Grain Quality of Durum Wheat (Triticum turgidum L.Var.Durum) Varieties in Central Ethiopia. Journal of Agricultural Sciences, Vol. 1(1), pp. 1-7 Jan 51) Ghosh BN, Singh RJ, Mishra PK. Soil and input management options for increasing nutrient use efficiency. Nutrient use efficiency: from basics to advances. 2015:17–27. 52) Godebo,T., Laekemariam,F., and Loha,G; 2021 Nutrient uptake, use efficiency and productivity of bread wheat (Triticum aestivum L.) as affected by nitrogen and potassium fertilizer in Keddida Gamela Woreda, Southern Ethiopia Environ Sys t Res (2021) 10:12 53) Good AG, Johnson SJ, De Pauw M, Carroll RT, Savidov N, Vidmar J, et al. Engineering nitrogen use efficiency with alanine inotransferase. Botany. 2007 Mar; 85(3):252–62. 54) Gstdiner D T, Christensen N W.1990. Characterization of phosphorus efficiencies of two winter wheat cultivators. Soil Science Society of America Journal, 54, 1337-1340. 55) Grahmann, K, Verhulst, N, Peña, J, R, Buerkert, B, Rojas, L, V, Govaerts, B. Durum wheat (Triticum durum L.) quality and yield as affected by tillage–straw management and nitrogen fertilization practice under furrow-irrigated conditions. Field Crops Research, Volume 164, 1 August 2014, Pages 166-177 56) Habtegebrial, K; Singh, B. R; Haile, M. Impact of tillage and nitrogen fertilization on yield, nitrogen use efficiency of tef (Eragrostis tef (Zucc.) Trotter) and soil properties. Soil and Tillage Res, Vol. 94, 2007, 55-63. 57) Han, X.; Hu, C.; Chen, Y.; Qiao, Y.; Liu, D.; Fan, J.; Li, S.; Zhang, Z. Crop yield stability and sustainability in a rice-wheat cropping system based on 34-year field experiment. Eur. J. Agron. 2020, 113, 125965.58) Hanson, R.L., and D.G. Westfall. 2002. Orthophosphate solubility transformations and availability from dual-applied nitrogen and phosphorus calcareous soil. Soil. Sci. 122: 1368-1370. 59) Havlin, J. L.; J. D. Beaton, S. L. Tisdal, and W. L. Nelson .2005. Soil Fertility and Fertilizers. 7 Th Ed. An introduction to nutrient management .Upper Saddle River, New Jersey. 60) Hirniak, J. N. (2018).Evaluation of Nitrogen and Potassium Interactions in Corn, Iowa State University Pro Quest Dissertations Publishing, 2018. 10792790. 61) Hussain, I., Khan M.A. and Khan E.A. (2006). Bread wheat varieties as influenced by different nitrogen levels. Journal of Zhejiang University of Sciences B.7 (1):70-78. 62) Huang Z W, Zhao T J, Gai J Y. 2009. Dynamic analysis of biomass accumulation and partition in soybean with different yield levels. Acta Agronomical Sonica, 35, 1483-1490. (In Chinese). 63) Ibrikci, H.; Ryan, J.; Ulger, A.C.; Buyuk, G.; Cakir, B.; Korkmaz, K.; Karnez, E.; Ozgenturk, G.;Konuskan, O. Maintenance of phosphorus fertilizer and residual phosphorus effect on corn production. Nutr. Cycle. Agro ecosystems 2005, 72, 279–286. 64) IPNI. 2013. 4R Plant Nutrition Manual: A Manual for Improving the management of Plant Nutrition, 1st Rev. Ed., (T.W. Bruulsema, P.E. Fixen, G.D. Sulewski, eds.),International Plant Nutrition Institute, Norcross, GA, USA 65) Jan T, Jan MT, Arif M, Akbar H, Ali S. Response of wheat to source, type and time of nitrogen application. Sarhad Journal of Agriculture. 2007; 23(4):871. 66) Jamaati.E, Somarina.SH., M. Panahyan-e-Kivib, R. Zabihi-e-mahmoodabada., 2011- Dry matter remobilization and yield of durum wheat in Ardabil, Iran as affected by plant density and N fertilization level, Plant Eco physiology, 3 , 37-45. 67) Jelic, M., Milivojević, J., Đekić, V., Paunović, A., Tmušić, N. (2014): Impact of liming and fertilization on grain yield and utilization of nitrogen and phosphorus inwheat plant grown on soil type pseudogley. Proceedings of research papers PKB Agroekonomik, Belgrade, 20(1-4): 49-56. 68) Ju, X.T., ZhangHang, F.S., Bao, X.M., Romheld, V., Roelcke, M. (2005) Utilization and management of organic wastes in Chinese agriculture: past present, perspectives. Science. China Ser.C, 48, 965-979. 69) Juusola, H. 2010. The internal dimensions of water security: the drought crisis in Northern Syria. FIIA report 25: 21-35. 70) Kaiser, D.E., Lamb, J.A., Sims, A., & Wiersma, J.2013. Fertilizing wheat in Minnesota. University Of Minnesota, AG-FO-3814-C 71) Konoplya, E. F. and T. Higa (1999). Mechanisms of EM-1 effect on the growth and development of Plants and its application in agricultural production. Sixth International Conference on Kyusei Nature Farming, Pretoria, South Africa. 72) Koch, k.and K mengel. 1977. Effect of K on fertilization by spring wheat during grain protein agron. J.69:477-480. 73) Kaur, V. P. (2017). Productivity of wheat (Triticum aestivum L.) as affected by sprinkler irrigation regimes and nitrogen levels. Master Thesis, Punjab Agricultural University, Department of Agronomy, College of Agriculture, Ludhiana, India. 74) Latiri-Souki. K., S. Nortcliff ., D.W. Lawlor., 1998-Nitrogen fertilizer can increase dry matter, grain production and radiation and water use efficiencies for durum wheat under semi-arid conditions, European J. Agron, 9, 21–34. 75) Lawlor, D.W. Carbon and nitrogen assimilation in relation to yield: mechanisms are the key to understanding production systems. J. Exp. Bot., Vol.53, NO.370, 2002, 773–787 76) Litke L, Gaile Z, Ruzˇa A. Nitrogen fertilizer influence on winter wheat yield and yield components depending on soil tillage and fore crop. Research for rural development. 2017; 1:9–12. 77) Liu, Z.; Sun, K.; Liu, W.; Gao, T.; Li, G.; Han, H.; Li, Z.; Ning, T. Responses of soil carbon, nitrogen, and wheat and maize productivity to 10 years of decreasednitrogen fertilizer under contrasting tillage systems. Soil Tillage Res. 2020, 196, 104444. 78) Ljubicic, N., Petrovic, S., Dimitrijevic, M., and Hristov, N. (2016). Gene actions involved in the inheritance of yield related traits in bread wheat (Triticum aestivum L.). Emirates J. of Food and Agriculture, 28(7): 477-484. 79) Ljubicic, N., Petrovic, S., Dimitrijevic, M., Hristov, N., Vukosavliev, M., and Sreckov, Z. (2014). Deale Analysis for Spike Length in Winter Wheat. Turkish J. of Agricultural and Natural Sci.s, 2(SI): 1455-1459. 80) Lobell D. B., Cassman K. G. & Field C. B. (2009) Crop yield gaps: Their importance, magnitudes, and causes. Annual Review of Environment & Resources, 34, 179–204. 81) Loue A; 1979: Average effect of potassium fertilization the arable crops in long-term field trials. Potash Review (Berne) subj. 16, suite 7th No 4. 82) Lollato, R.P.; Figueiredo, B.M.; Dhillon, J.S.; Arnall, D.B.; Raun, W.R. Wheat grain yield and grain-nitrogen relationships as affected by N, P, and K fertilization: A synthesis of long-term experiments. Field Crop. Res. 2019, 236, 42–57 83) Maser, P., M. Gierth and J.I. Schroeder. 2002. Molecularmechanisms of potassium and sodium uptake in plants. Plant Soil. 247: 43-54. 84) Matar A; Perrier E; 1990: Effect of supplemental irrigation and nitrogen fertilization on nitrogen content of grain wheat. Farm Resource Management Program Annual Report.133-136. 85) Madana HS, Munjal R, 2009- Effect of split doses of nitrogen and seed rate on protein content, protein Fractions and yield of wheat, J.Agri.and Biol. Sci.Asian Res,4,1, 26-30. 86) Marschner, P. (2012). Mineral nutrition of higher plants, 3rd ed. Academic Press, London, UK. 10: 178–189.87) Macholdt, J.; Piepho, H.-P.; Honermeier, B. Mineral NPK and manure fertilization affecting the yield stability of winter wheat: Results from a long-term field experiment. Eur. J. Agron. 2019, 102, 14–22. 88) Mclean, E.O. (1982). Soil pH and lime requirement. P.199-224. Methods of soil analysis. USA. 89) Mengel, K. and Kirkby, E.A. (2001) Principles of Plant Nutrition. Kluwer Academic Publishers, Dordrecht, 849 p. 90) Mojid M.A., Wyseure G.C.L., Biswas S.K.: Requirement of nitrogen, phosphorus and potassium fertilizers for wheat cultivation under irrigation by municipal wastewater, Journal of Soil Science and Plant Nutrition, 2012, 12 (4), 655- 665 91) Morad, p. 1974. Physiological roles of potassium in plants. Potash review. Sub 3.4, Th suite, int. potash. Inst. Basel, Switzerland. Pp. 125. 92) Mosluh K.J; Al-shammari A. K. K; 1977: Effect of N P and K fertilizers on the growth and yield of wheat technical bulletin No. 44, Baghdad, Iraq. 93) Moshatatia, A., Siadata, S., Alami-Saeida, K., Bakhshandeha, A., and Jalal-Kamalib, M. (2017). The impact of terminal heat stress on yield and heat tolerance of bread wheat. International J. of Plant Production, 11(4): 549-560. 94) Mushtaq, T., S.Hussain, Bukhsh, M. A., Iqbal, J., and Khaliq, T. (2011). Evaluation of two wheat genotypes Performance of under drought conditions at different growth stages. Crop and Environment, 2(2): 20-27. 95) Nelson, L.A; Anderson, R, L, 1977: Partitioning of soil test crop response probability. ASA Sep. Publ. No. 29. Am Soc of Agron Inc. Madison Wi. 96) Ojha RB, Shrestha S, Khadka YG, Panday D. Potassium nutrient response in the rice-wheat cropping system in different agro-Eco zones of Nepal. PloS one. 2021 Mar 18; 16(3):e0248837. https://doi.org/10.1371/journal.pone.0248837 PMID: 33735327 97) Olsen, S.R. 1954. Inorganic phosphorus in alkaline and calcareous soils. Advan. Agron. 4: 84-122.98) Omara P., Aula L., Oyebiyi F. & Raun W.R. (2019) World cereal nitrogen use efficiency trends: review and current knowledge. Agro system, Geoscience & Environment, 2, 1–8. 99) Page, A.L.; R.H. Miller and D.R. Keency. 1982. Methods of Soil analysis part (2) 2nd(ed). Agronomy 9 .Amer. Soc. Agron. Madison Wisconsin. USA 100) Pandey, R.K., J.W. Maranville, and Y. Bako (2001). Nitrogen fertilizer soil response and use efficiency for three cereal crops in Niger. Journal Communications in Soil Science and Plant Analysis. 32(10):1465-1482. 101) Passioura, J.B, 2002- Environmental biology and crop improvement, Functional Plant Biology, 29, 537-546. 102) Peltomen, J. (1995).Grain yield and quality of wheat as affected by nitrogen fertilizer application timed according to apical development. Journal Acta Soil and Plant Science.24:2-14. 103) Protic, R., Todorovic, G., Sečanski, M., and Protic, N. (2019). Effects of a variety and a seed size on productive traits of a winter wheat spike. Azarian J. of Agriculture, 6(3): 67-73. 104) Quan W M, Yan L. 2002. Effects of Agricultural non-point source pollution on eutrophication of water body and its control measure. Acta Ecological Sinica, 22, 291-299. (in Chinese). 105) Rawal N, Pande KR, Shrestha R, Vista SP (2022) Nutrient use efficiency (NUE) of wheat (Triticum aestivum L.) as affected by NPK fertilization. PLoS ONE 17(1): e0262771 106) Ray DK, Mueller ND, West PC, Foley JA. Yield trends are insufficient to double global crop production by 2050. PLoS One. 2013; 8: e66428. mid:23840465 107) Richards, L.A. (1954) Diagnosis and Improvement of Saline Alkali Soils, Agriculture, 160, Handbook 60. US Department of Agriculture, Washington DC. 108) Ruder, J., and E. Bennion. 2013. Growing demand for fertilizer keeps prices high. Beyond the numbers: Global economy. US Bureau of Labor Statisticshttps://www.bls.gov/opub/btn/volume-2/growing-demand-for-fertilizer-keeps-prices-high.htm (accessed 10 July 2017( . 109) Salman, E. S. 2007: Potassium importance of plant. The Iraqi J. Agric. 4:1-8. 110) Sallam, A., Hashad, M., Hamed, E.-S., and Omara, M. (2015). Genetic Variation of Stem Characters in Wheat and Their Relation to Kernel Weight under Drought and Heat Stresses. 137-146, 18(3): J. of Crop Sci. and Biotechnology. 111) Sattore, E.H. and Slafer, G.S. Wheat: Ecology and Physiology of Yield Determination. Food Products Press, New York, USA, Pp.503, 1999. 112) Savin, R. and Slafer, G. A. Shading effects on the yield of an Argentinean wheat cultivar. Journal of Agricultural Science, Vol. 116, 1991, 1-7. 113) Schindler, D. W., Carpenter, S. R., Chapra, S. C., Hecky, R. E., and Orihel, D. M.(2016). Reducing phosphorus to curb lake eutrophication is a success. Environ. Sci. Technol. 50, 8923–8929. doi:10.1021/acs.est.6b02204 114) Schwartzkopf, C.A.R. I. (2018). Potassium, calcium, magnesium, How they relate to plant growth. Available online: (accessed on 11 March 2018). .http://gsrpdf.lib.msu.edu/ticpdf.py?file=/1970s/1972/721101.pdf 115) Sedri, M.H.; Roohi, E.;Niazian, M.; Niedbała, G. Interactive Effects of Nitrogen and Potassium Fertilizers on Quantitative- Qualitative Traits and Drought Tolerance Indices of Rainfed Wheat Cultivar. Agronomy 2022, 12, 30. 116) Semenov, M. A; Jamieson, P. D; Martre, P. DE convoluting nitrogen use efficiency in wheat: A simulation study. Eur. J. Agron., Vol. 26, 2007, 283-294. 117) Shafiq M; Hassan A; Ahmad N.J; Rashid A; 1994: Crop yields and nutrient uptake by rainfed wheat and munghean as effected by tillage, fertilization, and weeding. J Plant. Nutr, 17(4), 561-577. 118) Sharma S., Singh P., Choudhary O.P., Neemisha. (2021). Nitrogen and rice straw incorporation impact nitrogen use efficiency, soil nitrogen pools and enzyme activity in rice-wheat system in northwestern India. Field Crops Research, 266, 108–131.119) Sharma S, Kaur G, Singh P, Alamri S, Kumar R, Siddiqui MH. (2022). Nitrogen and potassium application effects on productivity, profitability and nutrient use efficiency of irrigated wheat (Triticum aestivum L.). PLoS ONE 17(5): e0264210. https://doi.org/10.1371/journal. pone.0264210 120) Sherchand, K and G.M.Paulsen, 1985. Response of wheat to foliar KH2PO4 treatments under field and high temperature regimes. J. of plant nutrition 8(12): 1171-1181. 121) Sherman, V. J; Sylvester-Bradley, R; Scott, R. K. and Foulkes, M. J. Physiological processes associated with wheat yield progress in the UK. Crop Science, Vol. 45, 2005, 175-185. 122) Shi, R, Zhang, Y, Chen, X, Sun, Q, Zhang, F, Romheld, V, Zou, C. Influence of long-term nitrogen fertilization on micronutrient density in grain of winter wheat (Triticum aestivum L.), Journal of Cereal Science, Volume 51, Issue 1, January 2010, Pages 165-170 123) Shreidi, A. S., Zentani, A., and Ketata, H. (2016). The History of Wheat Breeding in Libya. In A. P. Bonjean, W. J. Angus, and M. v. Ginkel (Eds.): The World Wheat Book, A History of Wheat Breeding (Vol. 3, pp. 497-500). Lavoisier, France: Limagrain. 124) Shristian S; 1981: The interrelations among nutrient elements applied to calcareous and greens agron J, 73,929-933. 125) Siada H; M. H. Roozitalb H; 1993: Seddigh Ansari Poor; N. A. Shahrookh use and recommendations in Iran 113-124. Proc.Regional symp, K Availability of soils in West Asia and North Africa, Status and Perspectives, Tehran, Iran. June 19-22, 1993. In t, Potash Inst, Basel, Switzerland. 126) Si – Smail, K. Ghebbi., A. Benamara, and Y. Dumas. 2004 Effect of potassium fertilization on the behavior of three processing tomato cultivars under various watering levels. Acta Hort. 13.127) Singh K.N; Sharma D.P; 2001: Response of wheat to nitrogen and potassium in saline soils. Experimental Agriculture, 37,417-427. Cambridge university press. 128) Singh P., Benbi D.K., Verma G. (2021). Nutrient management impacts on nutrient use efficiency and energy, carbon, and net ecosystem economic budget of rice-wheat cropping system in northwestern India. Journal of Soil Science & Plant Nutrition, 21, 559–577. 129) Spiertz, J. H. J. Nitrogen, sustainable agriculture, and food security. A review. Agron. Sustain. Dev., 30, 2010, 43-55. 130) Srivastave S; Swarup A; Sahoo D; Tembhare B.R; 2004: The availability of potassium acres haplaquept and topic haplustert as affected by long-term cropping fertilization and maturing. Nutrient cycling in agro co systems, 65, 1-11. 131) Subedi, K.D.; B.L. Ma; and A.G. Xue (2007). Planting date and nitrogen effects on grain yield and protein content of spring wheat. Crop Science. 47: 36-44. 132) Tadesse, W., Sanchez-Garcia, M., Assefa, S. G., Amri, A., Bishaw, Z., Ogbonnaya, F. C., and Baum, M. (2019). Genetic Gains in Wheat Breeding and Its Role in Feeding the World. Crop Breeding, Genetics and Genomics, 1, 1-28. 133) Tahir, M.A. and J. Valkoun. 1994. Genetic diversity in wheat. An-international approach in its evaluation and utilization. Wheat information service, 78:1-12. 134) Tahir, M. A. Tanveer, A. Ali, M. Ashraf and A. Wasaya. 2008: Growth and yield Response of two wheat (Triticum aestivum L.) varieties to different potassium Levels. J. Life Sac.6 (2) 92-95. 135) Taiz, L and E. Zeiger (2002). Plant Physiology. Publisher: Sinauer Associates. Third Edition.PP:690. 136) Tan, D., Jin, J., Jiang, L., Haung, S., Liu, Z. (2012) Potassium assessment of grain producing soils in North China. Agriculture Ecosystem Environment, 148, 65-71 137) Tang, Ming Yao., SHEN Chong Yang., CHEN Shu Huang., TANG Guang Mu., LI Qing Jun., YAN Cui Xia., GENG Qing Long., FU Guo Hai. Yield of Wheat and Maize and Utilization Efficiency of Nitrogen, Phosphorus and Potassium in XinjiangScientia Agriculture Sinica (2022) , Vol. 55, Issue (14): 2762-2774.doi: 10.3864/j.issn.0578-1752.2022.14.007 138) Thalooth, A.T.; M.M. Tawfik and H. M. Mohamed .2006. A Comparative Study on the Effect of Foliar Application of Zinc, Potassium and Magnesium on Growth, Yield and Some Chemical Constituents of Mungbean Plants Grown under Water Stress Conditions. World J. Agric. Sci., 2 (1): 37- 46. 139) Tilman, D; Cassman, K. G; Matson, P.A; Naylor, R; Pplasky, S. Agricultural sustainability and intensive production practices. Nature, vol. 418, 2002, 671–677 140) Tisdale, S.L., W.L. Nelson, J.D. Beaton and J.L. Havlin. 1997: Soil Fertility and Fertilizers. Prentice–Hall of India, New Delhi. P.176-229. 141) Tshikunde, N. M., Mashilo, J., Shimelis, H., and Odindo, A. (2019). Agronomic and Physiological Traits, and Associated Quantitative Trait Loci (QTL) Affecting Yield Response in Wheat (Triticum aestivum L.): A Review. Frontiers in Plant Sci., 10, 1-18. 142) Valnti S.A; Wicks G.A,1992: Influence of nitrogen rate and wheat triticum aestivum cultivar on weed control university of Nebraska NE weed science USA Jan-Mar, 40(1), 115-121. 143) Vazquez, D.; Berger, A.; Prieto-Linde, M.L.; Johansson, E. Can nitrogen fertilization be used to modulate yield, protein content and bread-making quality in Uruguayan wheat? J. Cereal Sci. 2019, 85, 153–161. 144) Walkley, A.J. and Black, I.A. (1934) Estimation of soil organic carbon by the chromic acid titration method. Soil Sci. 37, 29-38. 145) Waraich, E.A.; R. Ahmad, S., M. Y. and A. Ehsanullah.2011. Role of mineral nutrition in alleviation of drought stress in plants. Aust.J.Crop Sci., 5(6):764-777. 146) Wissuwa M. 2003. How do plants achieve tolerance to phosphorus deficiency? Small causes with big Effects. Plant Physiology, 133, 1947-1958.147) Wolde, G. M., Mascher, M., and Schnurbusch, T. (2019). Genetic modification of spikelet arrangement in wheat increases grain number without significantly affecting grain weight. Molecular Genetics and Genomics, 294, 457–468. 148) Wu, W, Ma, L, B, Fan, J, J, Sun, M, Yibe,Y, Guo, S, W, Harvey, D, Deng, V. Management of nitrogen fertilization to balance reducing lodging risk and increasing yield and protein content in spring wheat, Field Crops Research, Volume 241, 1 September 2019, 107584. 149) Wnuk, A., Górny, A. G., Bocianowski, J., and Kozak, M. (2013). Visualizing harvest index in crops. Communications in Biometry and Crop Scienc, 8(2): 48–59. 150) Xue, C.; auf am Erley, G.S.; Rossmann, A.; Schuster, R.; Koehler, P.; Mulling, K.-H. Split Nitrogen Application Improves Wheat Baking Quality by Influencing Protein Composition Rather Than Concentration. Front. Plant Sci. 2016, 7. 151) Yan, S.;Wu, Y.; Fan, J.; Zhang, F.; Zheng, J.; Qiang, S.; Guo, J.; Xiang, Y.; Zou, H.;Wu, L. Dynamic change and accumulation of grain macronutrient (N, P and K) concentrations in winter wheat under different drip fertigation regimes. Field Crop. Res. 2020, 250, 107767. 152) Yan, F, Zhang, F, Fan, X, Fan, J, Wang, Y, Zou, H, Wang, H, Li, G. Determining irrigation amount and fertilization rate to simultaneously optimize grain yield, grain nitrogen accumulation and economic benefit of drip-fertigated spring maize in northwest China, Agricultural Water Management, Volume 243, 1 January 2021, 106440. 153) Zhang L M, He L Y, Li J S, Xu S Z. 2005. Phosphorus nutrient characteristics of different maize inbreeds with tolerance to low-P stress. Scientia Agriculture Sinica, 154) Zhang, S, Gao, P, C, Norse, D, Tong, Y, Lu, Y, Powlson, D, S. Overcoming nitrogen fertilizer over-use through technical and advisory approaches: A case study from Shaanxi Province, northwest China. March 2015 Agriculture Ecosystems & Environment 209 DOI:10.1016/j.agee.2015.03.002 Project: UK China Sustainable Agriculture Innovation Network.155) Zhanga, Y, Wanga, J, Gonga, S, Xu, D, Suia, J. Nitrogen fertigation effect on photosynthesis, grain yield and water use efficiency of winter wheat, Management, Volume 179, 1 January 2017, Pages 277-287 156) Zhang Z, Yu Z, Zhang Y, Shi Y. Optimized nitrogen fertilizer application strategies under supplementary irrigation improved winter wheat (Triticum aestivum L.) yield and grain protein yield. PeerJ. 2021. Jun 2;9:e11467. Doi: 10.7717/peerj.11467. 157) Zhao B.Q., Li X.Y., Li X.P., Shi X.J., Huang S.M., Wang B.R., et al (2010) Long-term fertilizer experiment network in China: crop yields and soil nutrient trends. Agronomy Journal, 102, 216–230. 158) Zende N. B., Sethi H. N., Karunakar. A. P. and Jiotode, D. J, 2005- Effect of sowing time and fertility levels on yield and quality of durum wheat genotypes, Res. On Crops, 6, 2, 194-196 159) Zheng, Y. (2018). Current nutrient management practices and technologies used in North American greenhouse and nursery industries. Acta Hortic. 1227, 435–442. Doi: 10.17660/ActaHortic.2018.1227.54
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