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Determination of Nitrogen Efficiency in Winter Bread Wheat Cultivars

Year 2017, Volume: 23 Issue: 1, 119 - 127, 01.01.2017

Abstract

An important factor for achieving the desired yield level in agriculture production is effective nitrogen fertilization in terms of sustainable yield and environment quality. This research was conducted to determine the nitrogen efficiency of some bread wheat varieties at Süleyman Demirel University research and experimental area in the periods 2010-11 and 2011-12 under rainfed conditions. Four bread wheat varieties Adana-99, Bezostaja-1, Esperia and Tosunbey in the experiment were compared using three different N doses 0, 75 and 125 kg ha-1 N . Nitrogen doses affected to all in examined parameters, except apparent recovery fraction. 125 kg ha-1 N dose increased the yield, protein content and the response index while value of agronomic and physiological activities decreased compared to 75 kg ha-1 N dose. The highest grain yield in the first year was obtained from Esperia cultivar with 2619 kg ha-1 and Adana-99 cultivar with 2111 kg ha-1 in the second year. The highest response index was found in Adana-99 cultivar in the both years

References

  • Aran A, Kıvanç F, Tarı A F & Ata G (2008). Konya ovası koşullarında buğdayın azot su ilişkileri. Ülkesel Tahıl Sempozyumu, 2-5 Haziran 2008, Konya, s. 768-775
  • Austin R B, Ford M A, Edrich J A & Blackwell R D (1977). The nitrogen economy of winter wheat. Journal of Agricultural Science 88: 159-167
  • Baligar V C & Fageria Z L (2001). Nutrient use efficiency in plants. Communicotions in Soil Science and Plant Analysis 32(7-8): 921-950
  • Bozkurt M A, Çimrin K M & Şekeroğlu N (2001). Azotlu gübrelemenin bazı tritikale genotiplerinde azot kullanım özelliklerine etkisi. Tarım Bilimleri Dergisi- Journal of Agricultural Sciences 7(3): 35-41
  • Burkhart M R & James D E (1999). Agricultural-nitrogen contributions to hypoxia in the Gulf of Mexico. Journal of Environmental Quality 28: 850-859
  • Craswell E T & Godwin D C (1984). The efficiency of nitrogen fertilizers applied to careal in different climates. Advenced Plant Nutrituon 1: 1-55
  • Çiftci E A & Doğan R (2013). Azotlu gübre dozlarının Gediz-75 ve Flamura-85 buğday çeşitlerinde verim ve kaliteye etkisi. Tarım Bilimleri Dergisi-Journal of Agricultural Sciences 19(1): 1-11
  • De Datta S K & Buresh R J (1989). Integrated nitrogen management in irrigated rice. Advences in Soil Science 10: 143-193
  • Delogu G, Cattivelli L, Pecchioni N, Falcis D D, Maggiore T & Stanca A M (1998). Uptake and agronomic efficiency of nitrogen in winter barley and winter wheat. European Journal of Agronomy 9: 11-20
  • Dobermann A R (2005). Nitrogen Use Efficiency-State of the Art. Digital http://digitalcommons.unl.edu/ agronomyfacpub/316
  • Fernandez R & Laird R T (1959). Yield and protein content of wheat in central Mexico as affected by avaliable soil musture and nitrogen fertilization. Agronomy Journal 51: 33-36
  • Garnett T, Conn V & Kaiser B N (2009). Root based approaches to improving nitrogen use efficiency in plants. Plant, Cell and Environment 32: 1272-1283
  • Geçit H H & Çakır E (2006). Makarnalık buğdayda (Triticum durum L.) sulama ve azotlu gübrelemenin verim ve bazı verim öğeleri üzerine etkisi. Tarım Bilimleri Dergisi-Journal of Agricultural Sciences 12(3): 259-266
  • Gouis J L, Béghin D, Heumez E & Pluchard P (2000). Genetic differences for nitrogen uptake and nitrogen utilisation efficiencies in winter wheat. European Journal of Agronomy 12(3-4): 163-173
  • Harper L A, Sharpe R R, Langdale G W & Giddens J E (1987). Nitrogen cycling in a wheat crop: Soil, plant, and aerial nitrogen transport. Agronomy Journal 79(6): 965-973
  • Hawkesford M J (2014). Reducing the reliance on nitrogen fertilizer for wheat production. Journal of Cereal Science 59: 276-283
  • Heitholt J J, Croy L I, Manes N O & Nguyen H T (1990). Nitrogen partitioning in genotypes of winter wheat differing in grain N concentration. Field Crops Research 23: 133-144
  • Johnson G V & Raun W R (2003). Nitrogen response index as a guide to fertilizer management. Journal of Plant Nutrition 26(2): 249-262
  • Kanampiu F K, Raun W R, Johnson G V & Anderson M P (1997). Effect of nitrogen rate on plant nitrogen loss in winter wheat varieties. Jounal of Plant Nutrition 20(2-3): 389-404
  • Kara B (2010). Influence of late-season nitrogen application on grain yield, nitrogen use efficiency and protein content of wheat under Isparta ecological conditions. Turkish Journal of Field Crops 15(1): 1-6
  • Large E C (1954). Growth stages in cereals. Plant Pathology 3: 128-129
  • Lees H L, Taun W R & Johnson G V (2000). Increased plant nitrogen loss with increasing nitrogen applied in winter wheat observed with 15Nitrogen. Journal of Plant Nutrition 23(2): 219-230
  • Lopez-Bellido R J & Lopez-Bellido L (2001). Efficiency of nitrogen in wheat under mediterranean conditions: Effect of tillage, crop rotation and N fertilization. Field Crops Research 71: 31-46
  • Lopez-Bellido L, Lopez-Bellido R J & Lopez-Bellido F J (2006). Fertilizer nitrogen efficiency in durum wheat under rainfed Mediterranean conditions: Effect of split application. Agronomy Journal 98: 55-62
  • Melaj M A, Echeverria H E, Lopez S C, Studdert G, Andrade F & Barbaro N O (2003). Timing of nitrogen fertilization in wheat under conventional and no- tillage system. Agronomy Journal 95: 1525-1531
  • Moll R H, Kamprath E J & Jackson W A (1982). Analysis and interpretation of factors which contribute to efficiency of nitrogen utilization. Agronomy Journal 74: 562-564
  • Mullen R W, Freeman K W, Raun W R, Johnson G V, Stone M L & Solie J B (2003). Identifying an in- season response index and the potential to increase wheat yield with nitrogen. Agronomy Journal 95: 347-351
  • Müftüoğlu N M & Demirer T (1998). Toprakta azot bilançosu. Atatürk Üniversitesi Ziraat Fakültesi Dergisi 29(1): 175-185
  • Novoa R & Loomis R S (1981). Nitrogen and plant production. Plant and Soil 58: 177-204
  • Olson R V, Murphy L S, Moser H C & Swallow C W (1979). Fate to tagget fertilizer nitrogen applied to winter wheat. Soil Science Society of America Journal 43: 973-975
  • Otteson B N, Mergoum M & Ransom J K (2007). Seeding rate and nitrogen management effects on spring wheat yield and yield components. Agronomy Journal 99: 1615-1621
  • Özcan O, Musaoğlu N, Üstündağ B, Kurucu Y & Örmeci C (2011). Buğday bitkisinin farklı ekim bölgelerindeki gelişim düzeyinin bilgi teknolojileri ile incelenmesi. TMMOB, Coğrafi Bilgi Sistemleri Kongresi 31 Ekim- 4 Kasım 2011, Antalya
  • Papakosta D K & Gagianas A A (1991). Nitrogen and dry matter accumulation, remobilization, and losses for mediterranean wheat during grain filling. Agronomy Journal 83: 864-870
  • Raun W R & Johnson G V (1995). Soil-plant buffering of inorganic nitrogen in continuous winter wheat. Agronomy Journal 87: 827-834
  • Raun W R & Johnson G V (1999). Improving nitrogen use efficiency for careal production. Agronomy Journal 91: 357-363
  • Spiertz J H & Ellen J (1978). Effects of nitrogen on crop development and grain growth of winter wheat in relation to assimilation and utilization of assimilates and nutrients. Netherlands Journal of Agricultral Science 25: 210-231
  • Takahashi S, Anwar M R & Vera S G (2007). Effects of compost and nirtogen fertilizer on wheat nitrogen use in Japanese soils. Agronomy Journal 99: 1151-1157
  • Timsina J & Connor D J (2001). Productivity and management of rice-wheat cropping systems: Issues and challenges. Field Crops Research 69(2): 93-132

Kışlık Ekmeklik Buğday Çeşitlerinin Azot Etkinliklerinin Belirlenmesi

Year 2017, Volume: 23 Issue: 1, 119 - 127, 01.01.2017

Abstract

Tarımsal üretimde istenen verim düzeyine ulaşmada önemli bir faktör olan azot N gübrelemesinin etkin bir şekilde yapılabilmesi sürdürülebilir verim ve çevre kalitesi açısından önem taşımaktadır. Bu çalışma, kimi ekmeklik buğday çeşitlerinin azot etkinliklerinin belirlenmesi amacıyla, Süleyman Demirel Üniversitesi araştırma ve deneme alanında 2010-11 ve 2011-12 yıllarında, tekrarlamalı olarak kuru tarım koşullarında yürütülmüştür. Denemede dört ekmeklik buğday Adana-99, Bezostaja-1, Esperia ve Tosunbey çeşidi 0, 7.5 ve 12.5 kg N da-1 olacak şekilde 3 farklı N dozu kullanılarak karşılaştırılmıştır. Azot dozları, çalışmada incelenen özelliklerden geri kazanım etkinliği hariç tümünde etkili olmuştur. Uygulanan 12.5 kg da-1 N dozu, 7.5 kg da-1 N dozuna göre verim, protein içeriği ve tepki indeksini artırırken, agronomik ve fizyolojik etkinlik değerlerini azaltmıştır. En yüksek tane verimi ilk yıl 261.9 kg da-1 ile Esperia, ikinci yıl 211.1 kg da-1 ile Adana-99 çeşitlerinden elde edilmiştir. Tepki indeksi her iki yılda en yüksek Adana-99 çeşidinde olmuştur

References

  • Aran A, Kıvanç F, Tarı A F & Ata G (2008). Konya ovası koşullarında buğdayın azot su ilişkileri. Ülkesel Tahıl Sempozyumu, 2-5 Haziran 2008, Konya, s. 768-775
  • Austin R B, Ford M A, Edrich J A & Blackwell R D (1977). The nitrogen economy of winter wheat. Journal of Agricultural Science 88: 159-167
  • Baligar V C & Fageria Z L (2001). Nutrient use efficiency in plants. Communicotions in Soil Science and Plant Analysis 32(7-8): 921-950
  • Bozkurt M A, Çimrin K M & Şekeroğlu N (2001). Azotlu gübrelemenin bazı tritikale genotiplerinde azot kullanım özelliklerine etkisi. Tarım Bilimleri Dergisi- Journal of Agricultural Sciences 7(3): 35-41
  • Burkhart M R & James D E (1999). Agricultural-nitrogen contributions to hypoxia in the Gulf of Mexico. Journal of Environmental Quality 28: 850-859
  • Craswell E T & Godwin D C (1984). The efficiency of nitrogen fertilizers applied to careal in different climates. Advenced Plant Nutrituon 1: 1-55
  • Çiftci E A & Doğan R (2013). Azotlu gübre dozlarının Gediz-75 ve Flamura-85 buğday çeşitlerinde verim ve kaliteye etkisi. Tarım Bilimleri Dergisi-Journal of Agricultural Sciences 19(1): 1-11
  • De Datta S K & Buresh R J (1989). Integrated nitrogen management in irrigated rice. Advences in Soil Science 10: 143-193
  • Delogu G, Cattivelli L, Pecchioni N, Falcis D D, Maggiore T & Stanca A M (1998). Uptake and agronomic efficiency of nitrogen in winter barley and winter wheat. European Journal of Agronomy 9: 11-20
  • Dobermann A R (2005). Nitrogen Use Efficiency-State of the Art. Digital http://digitalcommons.unl.edu/ agronomyfacpub/316
  • Fernandez R & Laird R T (1959). Yield and protein content of wheat in central Mexico as affected by avaliable soil musture and nitrogen fertilization. Agronomy Journal 51: 33-36
  • Garnett T, Conn V & Kaiser B N (2009). Root based approaches to improving nitrogen use efficiency in plants. Plant, Cell and Environment 32: 1272-1283
  • Geçit H H & Çakır E (2006). Makarnalık buğdayda (Triticum durum L.) sulama ve azotlu gübrelemenin verim ve bazı verim öğeleri üzerine etkisi. Tarım Bilimleri Dergisi-Journal of Agricultural Sciences 12(3): 259-266
  • Gouis J L, Béghin D, Heumez E & Pluchard P (2000). Genetic differences for nitrogen uptake and nitrogen utilisation efficiencies in winter wheat. European Journal of Agronomy 12(3-4): 163-173
  • Harper L A, Sharpe R R, Langdale G W & Giddens J E (1987). Nitrogen cycling in a wheat crop: Soil, plant, and aerial nitrogen transport. Agronomy Journal 79(6): 965-973
  • Hawkesford M J (2014). Reducing the reliance on nitrogen fertilizer for wheat production. Journal of Cereal Science 59: 276-283
  • Heitholt J J, Croy L I, Manes N O & Nguyen H T (1990). Nitrogen partitioning in genotypes of winter wheat differing in grain N concentration. Field Crops Research 23: 133-144
  • Johnson G V & Raun W R (2003). Nitrogen response index as a guide to fertilizer management. Journal of Plant Nutrition 26(2): 249-262
  • Kanampiu F K, Raun W R, Johnson G V & Anderson M P (1997). Effect of nitrogen rate on plant nitrogen loss in winter wheat varieties. Jounal of Plant Nutrition 20(2-3): 389-404
  • Kara B (2010). Influence of late-season nitrogen application on grain yield, nitrogen use efficiency and protein content of wheat under Isparta ecological conditions. Turkish Journal of Field Crops 15(1): 1-6
  • Large E C (1954). Growth stages in cereals. Plant Pathology 3: 128-129
  • Lees H L, Taun W R & Johnson G V (2000). Increased plant nitrogen loss with increasing nitrogen applied in winter wheat observed with 15Nitrogen. Journal of Plant Nutrition 23(2): 219-230
  • Lopez-Bellido R J & Lopez-Bellido L (2001). Efficiency of nitrogen in wheat under mediterranean conditions: Effect of tillage, crop rotation and N fertilization. Field Crops Research 71: 31-46
  • Lopez-Bellido L, Lopez-Bellido R J & Lopez-Bellido F J (2006). Fertilizer nitrogen efficiency in durum wheat under rainfed Mediterranean conditions: Effect of split application. Agronomy Journal 98: 55-62
  • Melaj M A, Echeverria H E, Lopez S C, Studdert G, Andrade F & Barbaro N O (2003). Timing of nitrogen fertilization in wheat under conventional and no- tillage system. Agronomy Journal 95: 1525-1531
  • Moll R H, Kamprath E J & Jackson W A (1982). Analysis and interpretation of factors which contribute to efficiency of nitrogen utilization. Agronomy Journal 74: 562-564
  • Mullen R W, Freeman K W, Raun W R, Johnson G V, Stone M L & Solie J B (2003). Identifying an in- season response index and the potential to increase wheat yield with nitrogen. Agronomy Journal 95: 347-351
  • Müftüoğlu N M & Demirer T (1998). Toprakta azot bilançosu. Atatürk Üniversitesi Ziraat Fakültesi Dergisi 29(1): 175-185
  • Novoa R & Loomis R S (1981). Nitrogen and plant production. Plant and Soil 58: 177-204
  • Olson R V, Murphy L S, Moser H C & Swallow C W (1979). Fate to tagget fertilizer nitrogen applied to winter wheat. Soil Science Society of America Journal 43: 973-975
  • Otteson B N, Mergoum M & Ransom J K (2007). Seeding rate and nitrogen management effects on spring wheat yield and yield components. Agronomy Journal 99: 1615-1621
  • Özcan O, Musaoğlu N, Üstündağ B, Kurucu Y & Örmeci C (2011). Buğday bitkisinin farklı ekim bölgelerindeki gelişim düzeyinin bilgi teknolojileri ile incelenmesi. TMMOB, Coğrafi Bilgi Sistemleri Kongresi 31 Ekim- 4 Kasım 2011, Antalya
  • Papakosta D K & Gagianas A A (1991). Nitrogen and dry matter accumulation, remobilization, and losses for mediterranean wheat during grain filling. Agronomy Journal 83: 864-870
  • Raun W R & Johnson G V (1995). Soil-plant buffering of inorganic nitrogen in continuous winter wheat. Agronomy Journal 87: 827-834
  • Raun W R & Johnson G V (1999). Improving nitrogen use efficiency for careal production. Agronomy Journal 91: 357-363
  • Spiertz J H & Ellen J (1978). Effects of nitrogen on crop development and grain growth of winter wheat in relation to assimilation and utilization of assimilates and nutrients. Netherlands Journal of Agricultral Science 25: 210-231
  • Takahashi S, Anwar M R & Vera S G (2007). Effects of compost and nirtogen fertilizer on wheat nitrogen use in Japanese soils. Agronomy Journal 99: 1151-1157
  • Timsina J & Connor D J (2001). Productivity and management of rice-wheat cropping systems: Issues and challenges. Field Crops Research 69(2): 93-132
There are 38 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

Bekir Atar This is me

Burhan Kara This is me

Zeliha Küçükyumuk This is me

Publication Date January 1, 2017
Published in Issue Year 2017 Volume: 23 Issue: 1

Cite

APA Atar, B., Kara, B., & Küçükyumuk, Z. (2017). Kışlık Ekmeklik Buğday Çeşitlerinin Azot Etkinliklerinin Belirlenmesi. Journal of Agricultural Sciences, 23(1), 119-127.

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