Araştırma Makalesi
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İç Anadolu Bölgesi’nde Potasyum ve Magnezyum Uygulanan Mısırın Zea mays var. intendata Yaprak Besin Elementi İçeriklerindeki Değişimler

Yıl 2016, Cilt: 22 Sayı: 4, 606 - 616, 01.09.2016
https://doi.org/10.1501/Tarimbil_0000001419

Öz

Bu araştırma, toprağa ayrı ayrı ve belli kombinasyonlarda uygulanan potasyum 0, 40, 80, 120 kg K2 O ha-1; potasyum sülfat; % 50 K2 O ve magnezyum 0, 20, 40, 60 kg MgO ha-1; magnezyum sülfat; % 16 MgO ’un İç Anadolu’da yarı kurak iklim koşullarında 2009 ve 2010 yıllarında yetiştirilen mısırın yapraklarındaki bazı besin elementlerine N, P, K, Ca, Mg, Fe, Zn etkilerini belirlemek amacıyla yapılmıştır. Denemeler tesadüf bloklarında faktöriyel deneme deseninde dört tekerrürlü olarak planlanmıştır. Toprak analizleri yapılan deneme alanlarına K ve Mg’lu gübreler ekimde tek seferde tabana verilmiştir. Araştırma sonuçlarına göre, tek başına verilen K yaprağın besin elementlerini artırmış, K ile P, Fe ve Zn arasında sinerjik ilişkiler belirlenmiştir. Diğer taraftan, Mg ile P ve Fe arasında sinerjik etkileşimler saptanmıştır. Genellikle K ile Mg’un birlikte uygulanması topraktaki antagonistik ilişkileri azaltarak yaprakta daha yüksek besin elementlerinin bulunmasını sağlamıştır. Denemenin ilk yılında yaprağın besin element içerikleri ikinci yıldakilerden daha yüksek bulunmuştur.

Kaynakça

  • Aktaş M (1991). Plant Nutrition and Soil Fertility. Ankara University, Faculty of Agriculture, Publication No: 1202, Course Book No: 347, pp. 345, Ankara
  • Aktaş M & Ateş M (1998). Nutritional Disorders of Plants; causes, diagnosis and corrections. Engin Press, pp. 247, Ankara
  • Anonymous (2009). Records of Konya Province Agriculture Directorate. Retrieved in December, 26, 2009 from http://www.konyatarim.com.tr
  • Bayraklı F (1987). Soil and Plant Analysis. Ondokuz Mayıs University, Faculty of Agriculture, Publication No: 17, pp. 199, Samsun
  • Blasko L (2006). Acidification of a meadow chernozem (Luvic Pheozem) soil in the trans-Tisza Region. Cereal Research Communications 34(1-2): 131-134
  • Bouyoucos G S (1951). A recalibration of the hydrometer methods for making mechanical analysis of soil. Agronomy Journal 54: 464-465
  • Cela S, Berenguer P, Santiveri F & Loveras J (2010). Potential phosphorus, potassium, and magnesium surpluses in an irrigated maize monoculture fertilized with pig slurry. Agronomy Journal 102: 96-102
  • Çağlar K Ö (1949). Soil Science. Publ. of Ankara Univ., Faculty of Agriculture, No: 10, pp. 270, Ankara
  • DMI (2011). Records of Government Meteorology Institute. http://dmi.gov.tr (Access Date: 21.01.2011)
  • Doll E C & Lucas R E (1973). Testing Soil for Potassium, Calcium and Magnesium. In: Soil Testing and Plant Analysis. Publ. Soil Sci. Soc. Amer. Madison, Wisc. USA, 133-151
  • Düzgüneş O, Kesici T & Gürbüz F (1983). Statistical Methods 1. Ankara University, Faculty of Agriculture, Publication No: 861, Course Book No: 229, pp. 218, Ankara
  • Eyüpoğlu F, Kurucu N & Talaz S (1998). General Situation of Turkish Soils with Respect to Some Available Micro-Nutrients (Fe, Cu, Mn, Zn). Soil and Fertilizer Research Institute Directorate Publication, pp. 72, Ankara
  • Hermans C, Johnson G N, Strasser, R J & Verbruggen N (2004). Physiological characterization of magnesium deficiency in sugar beet: Acclimation to low magnesium differentially affects photo-systems I and II. Planta 220(2): 344-355
  • Izsaki Z (2006). Relationship between potassium supplies of the soil and the nutrient concentration of maize (Zea mays L.) leaves. Cereal Research Communication 34(1-2): 501-504
  • Jackson M L (1962). Soil Chemical Analysis. Prentice- Hall, Inc. 183, New York, USA
  • Jokinen R (1981). The magnesium status of Finnish mineral soils and the requirement of the magnesium supply. Magnesium-Bulletin 3(1a): 1-5
  • Jones J B, Wolf B & Mills H (1991). Plant Analysis Handbook. Micro-Macro Publishing Inc, Athens, GA, pp. 23-26, USA
  • Kacar B (1972). Chemical Analysis of Plant and Soil. Ankara University, Faculty of Agriculture, Publication No: 468, Ankara
  • Kacar B (1994). Chemical Analysis of Plant and Soil. III. Soil Analysis. Ankara University, Faculty of Agriculture Education, Research and Developing Foundation No: 3, pp. 705, Ankara
  • Kanyanjua S M, Keter J K, Okalebo R J & Verchot L (2006). Identifying potassium-deficient soils in Kenya by mapping and analysis of selected sites. Soil Science 171(8): 610-626
  • Karaman M R, Aksu A, Demirer T & Er F (1999). Effect of potassium and magnesium on the growth some nutrient status and K-Mg efficiency parameters of corn (Zea mays L.) grown on siltation soil. Journal of University of Selcuk, Faculty of Agriculture 13(18): 107-117
  • Kovačević V, Rastija M, Šimić B, Andrić L & Kaučić D (2008). Phosphorus and potassium fertilization impacts on yield and nutritional status of maize. Cereal Research Communication 36(1): 43-46
  • Kovačević V, Stojić B, Rastija M, Brkić I & Drezner G (2009). Response of maize, wheat and barley to phosphorus and potassium fertilization. Cereal Research Communication 37: 129-132
  • Lindsay W L & Norwell W A (1978). Development of DTPA soil test for zinc, iron, manganese and copper. Soil Science Society of America Journal 42: 421-428
  • Samui R C, Bhattacharyya P & Roy A (1987). Effect of nutrients and spacing on oil yield and uptake of nutrients by Kharif Sunflower. Journal of Indian Society of Soil Science 35(1): 9-73
  • Sepehr E, Malakouti M J & Rasouli M H (2002). The effect of K, Mg, S and micronutrients on the yield and quality of sunflower in Iran. 17th WCSS, 14-21 August 2002, Symposium 4, pp. 2260, Thailand
  • Sillanpaa M (1990). Micronutrient assessment at the country level: An international study. Soil Bulletin 63, FAO, Rome, Italy
  • Smith H G & Weldon M D (1941). A comparison of some methods for the determination of soil organic matter. Soil Science Society of America Proceeding 5: 177- 182
  • Soltanpour P N & Workman S M (1981). Use of Inductively-Coupled Plasma Spectroscopy for the Simultaneous Determination of Macro and Micro Nutrients in NHHCO-DTPA Extracts of Soils. 3 (Ed. Barnes R M). Developments in Atomic Plasma Analysis, USA, pp. 673-680
  • Spear S N, Asher C J & Edwards D G (2003). Response of Cassava, Sunflower and Maize to Potassium Concentration in Solution I. Growth and Plant Potassium Concentration. Dept. of Agric., Univ. of Queensland, St. Lucia, Brisbane, Qld 4067, pp.347- 361, Australia
  • Stingu A, Stanescu I, Volf I & Popa V (2011). Hyperaccumulation of cadmium in maize plant (Zea mays). Cellulose Chemistry Technology 45: 287-290
  • Szulc P (2009). Effect of nitrogen fertilization and methods of magnesium application on chlorophyll content, accumulation of mineral components and morphology of two maize hybrid types in the initial growth period. Part II. Uptake of mineral components. Acta Scientiarum Polonorum-Agricultura 8(2): 51-62
  • Szulc P (2010). Response of maize hybrid (Zea mays L.), stay-green type to fertilization with nitrogen, sulfur, and magnesium. Part I. Yields and chemical composition. Acta Scientiarum Polonorum- Agricultura 9(1): 29-40
  • Tan D, Jin J & Huang S W (2007). Effect of long-term application of K fertilizer on spring maize yield and soil K in Northeast China. Scientia Agricola Sinica 40(10): 2234-2240
  • Tomov T, Manolov I & Tomova M (2008). Effect of different fertilizing systems on productivity and N, P & K taken up from maize hybrid Mikado. Scientific Works of the Agrarian University 53: 119-124
  • Turan M & Horuz N (2012). Basic Principles of Plant Nutrition. In: Karaman M R (Ed), Plant Nutrition, ‘Healthy Plant, Healthy Production’. 1. Press, Dumat Ofset, Ankara
  • Ülgen N & Yurtsever N. (1974). Guide for Fertilizer and Fertilization. Turkish Ministry of Agriculture, Soil Fertilizer Res. Inst. Publ. No: 28, pp. 115, Ankara
  • Zengin M, Gökmen F, Gezgin S & Çakmak İ (2008). Effects of different fertilizers with potassium and magnesium on the yield and quality of potato. Asian Journal of Chemistry 20(1): 663-676
  • Zengin M, Gökmen F, Yazıcı M A & Gezgin S (2009). Effects of potassium, magnesium and sulphur containing fertilizers on yield and quality of sugar beets (Beta vulgaris L.). Turkish Journal of Agriculture and Forestry 33: 495-502

Changes in Nutrient Concentrations of Maize Zea mays var. intendata Leaves under Potassium and Magnesium Applications in Central Anatolia

Yıl 2016, Cilt: 22 Sayı: 4, 606 - 616, 01.09.2016
https://doi.org/10.1501/Tarimbil_0000001419

Öz

This research was carried out to determine the effects of potassium 0, 40, 80, 120 kg K2O ha-1; as potassium sulfate; 50% K2O and magnesium 0, 20, 40, 60 kg MgO ha-1; as magnesium sulfate; 16% MgO applied to the soil, either separately or in various combinations, on some nutrients N, P, K, Ca, Mg, Fe, Zn in maize leaves grown under field conditions in semi-arid Central Anatolia in Turkey in 2009 and 2010. The study was designed as a factorial arrangement in randomized block design with four replications. After soil analysis of the study areas, K and Mg-fertilizers were applied at sowing. The results showed that the K applications alone could increase the nutrient concentrations of the leaves, and synergic relations were found between K and P, Fe, or Zn. Synergic relations were also found between Mg and P or Fe. Generally, combined applications of K and Mg resulted in higher nutrient concentrations in the leaves by ameliorating the antagonistic effect of poor soil K-Ca-Mg ionic balances. The leaf nutrient concentrations were generally higher in the first year 2009 than that of the experiment than in the second year 2010

Kaynakça

  • Aktaş M (1991). Plant Nutrition and Soil Fertility. Ankara University, Faculty of Agriculture, Publication No: 1202, Course Book No: 347, pp. 345, Ankara
  • Aktaş M & Ateş M (1998). Nutritional Disorders of Plants; causes, diagnosis and corrections. Engin Press, pp. 247, Ankara
  • Anonymous (2009). Records of Konya Province Agriculture Directorate. Retrieved in December, 26, 2009 from http://www.konyatarim.com.tr
  • Bayraklı F (1987). Soil and Plant Analysis. Ondokuz Mayıs University, Faculty of Agriculture, Publication No: 17, pp. 199, Samsun
  • Blasko L (2006). Acidification of a meadow chernozem (Luvic Pheozem) soil in the trans-Tisza Region. Cereal Research Communications 34(1-2): 131-134
  • Bouyoucos G S (1951). A recalibration of the hydrometer methods for making mechanical analysis of soil. Agronomy Journal 54: 464-465
  • Cela S, Berenguer P, Santiveri F & Loveras J (2010). Potential phosphorus, potassium, and magnesium surpluses in an irrigated maize monoculture fertilized with pig slurry. Agronomy Journal 102: 96-102
  • Çağlar K Ö (1949). Soil Science. Publ. of Ankara Univ., Faculty of Agriculture, No: 10, pp. 270, Ankara
  • DMI (2011). Records of Government Meteorology Institute. http://dmi.gov.tr (Access Date: 21.01.2011)
  • Doll E C & Lucas R E (1973). Testing Soil for Potassium, Calcium and Magnesium. In: Soil Testing and Plant Analysis. Publ. Soil Sci. Soc. Amer. Madison, Wisc. USA, 133-151
  • Düzgüneş O, Kesici T & Gürbüz F (1983). Statistical Methods 1. Ankara University, Faculty of Agriculture, Publication No: 861, Course Book No: 229, pp. 218, Ankara
  • Eyüpoğlu F, Kurucu N & Talaz S (1998). General Situation of Turkish Soils with Respect to Some Available Micro-Nutrients (Fe, Cu, Mn, Zn). Soil and Fertilizer Research Institute Directorate Publication, pp. 72, Ankara
  • Hermans C, Johnson G N, Strasser, R J & Verbruggen N (2004). Physiological characterization of magnesium deficiency in sugar beet: Acclimation to low magnesium differentially affects photo-systems I and II. Planta 220(2): 344-355
  • Izsaki Z (2006). Relationship between potassium supplies of the soil and the nutrient concentration of maize (Zea mays L.) leaves. Cereal Research Communication 34(1-2): 501-504
  • Jackson M L (1962). Soil Chemical Analysis. Prentice- Hall, Inc. 183, New York, USA
  • Jokinen R (1981). The magnesium status of Finnish mineral soils and the requirement of the magnesium supply. Magnesium-Bulletin 3(1a): 1-5
  • Jones J B, Wolf B & Mills H (1991). Plant Analysis Handbook. Micro-Macro Publishing Inc, Athens, GA, pp. 23-26, USA
  • Kacar B (1972). Chemical Analysis of Plant and Soil. Ankara University, Faculty of Agriculture, Publication No: 468, Ankara
  • Kacar B (1994). Chemical Analysis of Plant and Soil. III. Soil Analysis. Ankara University, Faculty of Agriculture Education, Research and Developing Foundation No: 3, pp. 705, Ankara
  • Kanyanjua S M, Keter J K, Okalebo R J & Verchot L (2006). Identifying potassium-deficient soils in Kenya by mapping and analysis of selected sites. Soil Science 171(8): 610-626
  • Karaman M R, Aksu A, Demirer T & Er F (1999). Effect of potassium and magnesium on the growth some nutrient status and K-Mg efficiency parameters of corn (Zea mays L.) grown on siltation soil. Journal of University of Selcuk, Faculty of Agriculture 13(18): 107-117
  • Kovačević V, Rastija M, Šimić B, Andrić L & Kaučić D (2008). Phosphorus and potassium fertilization impacts on yield and nutritional status of maize. Cereal Research Communication 36(1): 43-46
  • Kovačević V, Stojić B, Rastija M, Brkić I & Drezner G (2009). Response of maize, wheat and barley to phosphorus and potassium fertilization. Cereal Research Communication 37: 129-132
  • Lindsay W L & Norwell W A (1978). Development of DTPA soil test for zinc, iron, manganese and copper. Soil Science Society of America Journal 42: 421-428
  • Samui R C, Bhattacharyya P & Roy A (1987). Effect of nutrients and spacing on oil yield and uptake of nutrients by Kharif Sunflower. Journal of Indian Society of Soil Science 35(1): 9-73
  • Sepehr E, Malakouti M J & Rasouli M H (2002). The effect of K, Mg, S and micronutrients on the yield and quality of sunflower in Iran. 17th WCSS, 14-21 August 2002, Symposium 4, pp. 2260, Thailand
  • Sillanpaa M (1990). Micronutrient assessment at the country level: An international study. Soil Bulletin 63, FAO, Rome, Italy
  • Smith H G & Weldon M D (1941). A comparison of some methods for the determination of soil organic matter. Soil Science Society of America Proceeding 5: 177- 182
  • Soltanpour P N & Workman S M (1981). Use of Inductively-Coupled Plasma Spectroscopy for the Simultaneous Determination of Macro and Micro Nutrients in NHHCO-DTPA Extracts of Soils. 3 (Ed. Barnes R M). Developments in Atomic Plasma Analysis, USA, pp. 673-680
  • Spear S N, Asher C J & Edwards D G (2003). Response of Cassava, Sunflower and Maize to Potassium Concentration in Solution I. Growth and Plant Potassium Concentration. Dept. of Agric., Univ. of Queensland, St. Lucia, Brisbane, Qld 4067, pp.347- 361, Australia
  • Stingu A, Stanescu I, Volf I & Popa V (2011). Hyperaccumulation of cadmium in maize plant (Zea mays). Cellulose Chemistry Technology 45: 287-290
  • Szulc P (2009). Effect of nitrogen fertilization and methods of magnesium application on chlorophyll content, accumulation of mineral components and morphology of two maize hybrid types in the initial growth period. Part II. Uptake of mineral components. Acta Scientiarum Polonorum-Agricultura 8(2): 51-62
  • Szulc P (2010). Response of maize hybrid (Zea mays L.), stay-green type to fertilization with nitrogen, sulfur, and magnesium. Part I. Yields and chemical composition. Acta Scientiarum Polonorum- Agricultura 9(1): 29-40
  • Tan D, Jin J & Huang S W (2007). Effect of long-term application of K fertilizer on spring maize yield and soil K in Northeast China. Scientia Agricola Sinica 40(10): 2234-2240
  • Tomov T, Manolov I & Tomova M (2008). Effect of different fertilizing systems on productivity and N, P & K taken up from maize hybrid Mikado. Scientific Works of the Agrarian University 53: 119-124
  • Turan M & Horuz N (2012). Basic Principles of Plant Nutrition. In: Karaman M R (Ed), Plant Nutrition, ‘Healthy Plant, Healthy Production’. 1. Press, Dumat Ofset, Ankara
  • Ülgen N & Yurtsever N. (1974). Guide for Fertilizer and Fertilization. Turkish Ministry of Agriculture, Soil Fertilizer Res. Inst. Publ. No: 28, pp. 115, Ankara
  • Zengin M, Gökmen F, Gezgin S & Çakmak İ (2008). Effects of different fertilizers with potassium and magnesium on the yield and quality of potato. Asian Journal of Chemistry 20(1): 663-676
  • Zengin M, Gökmen F, Yazıcı M A & Gezgin S (2009). Effects of potassium, magnesium and sulphur containing fertilizers on yield and quality of sugar beets (Beta vulgaris L.). Turkish Journal of Agriculture and Forestry 33: 495-502
Toplam 39 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Hakan Ertiftik Bu kişi benim

Mehmet Zengin Bu kişi benim

Yayımlanma Tarihi 1 Eylül 2016
Gönderilme Tarihi 1 Ocak 2016
Yayımlandığı Sayı Yıl 2016 Cilt: 22 Sayı: 4

Kaynak Göster

APA Ertiftik, H., & Zengin, M. (2016). Changes in Nutrient Concentrations of Maize Zea mays var. intendata Leaves under Potassium and Magnesium Applications in Central Anatolia. Journal of Agricultural Sciences, 22(4), 606-616. https://doi.org/10.1501/Tarimbil_0000001419

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