The Effect of Different Zinc Application Methods on Yield and Grain Zinc Concentration of Bread Wheat Varieties

This study was carried out to elucidate the impacts of zinc (Zn) treatments on growth, development, quality and yield of commonly sown bread wheat cultivars under field conditions of Çukurova Region. Three different bread wheat cultivars (Adana-99, Ceyhan-99 and Pandas) were experimented in randomized complete blocks-split plots experimental design with 3 replications. Field experiments were performed by two different Zn application methods; via soil and via soil+foliage. In the both trials, 0, 5, 10, 20, 30, and 40 kg ha-1 pure Zn doses were applied to the soil. 0.4% ZnSO4.7H2O solution was used for foliar Zn applications. Current findings revealed that Zn treatments had significant effects on grain yield, grain Zn concentration, grain phosphorus (P) concentration and thousand grain weight of bread wheat cultivars, but significant effects were not observed on grain protein concentrations. Soil+foliar Zn treatments were more effective in improving grain Zn concentrations. It was concluded that 10- 20 kg ha-1 Zn treatment was quite effective on grain Zn concentrations.

___

Anon. 2000. AACC Approved Methods (10th ed.). American Association of Cereal Chemists International (AACC), St. Paul, MN. Barton CJ. 1948. Photometric analysis of phosphate rock. Analytical Chemistry, 20(11): 1068-1073.

Black RE, Lindsay HA, Bhutta ZA, Caulfield LE, De Onnis M, Ezzati M, Mathers C, Rivera J. 2008. Maternal and child undernutrition: Global and regional exposures and health consequences. Lancet, 371(9608): 243-260.

Bouyoucos GJ. 1952. Hydrometer method improved for making particle size analyses of soils. Agronomy Journal, 54(5): 464- 465.

Caglar KO. 1949. Toprak su koruma mühendisliği. Çukurova Üniversitesi Ziraat Fakültesi, Yayın No: 108, Adana.

Cakmak I, Marschner H. 1986. Mechanism of phosphorus‐induced zinc eficiency in cotton. I. Zinc deficiency‐enhanced uptake rate of phosphorus. Physiologia Plantarum, 68(3): 483-490.

Cakmak I, Marschner H. 1987. Mechanism of phosphorus‐induced zinc deficiency in cotton. III. Changes in physiological availability of zinc in plants Is mail. Physiologia Plantarum, 70(1): 13-20.

Cakmak I. 1994. Selection and characterisation of cereal genotypes with high resistance to zinc deficiency and boron toxicity and evalation of bioavailability of zinc in creals for GAP and Central Anatolia Regions, “TU- GENOTYPES” NATO Science for Stability Programme. III. Progress Report. Çukurova University, Adana.

Cakmak I, Atli M, Kaya R, Evliya H, Marschner H. 1995.

Association of high light and zinc deficiency in cold-induced leaf chlorosis in grapefruit and mandarin trees. Journal of Plant Physiology, 146(3): 355-360.Cakmak I, Torun B, Erenoglu B, Ozturk L, Marschner H, Kalayci M, Ekiz H, Yilmaz A. 1998. Morphological and physiological differences in cereals in response to zinc deficiency. Euphytica,100: 349-357.

Cakmak I. 2008. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? Plant and Soil, 302: 1-17.

Cakmak I, Kalayci M, Kaya Y, Torun AA, Aydin N, Wang Y, Arisoy Z, Erdem H, Yazici A, Gokmen O, Ozturk L, Horst WJ. 2010a. Biofortification and localization of zinc in wheat grain. Journal of Agricultural and Food Chemistry, 58: 9092–9102.

Cakmak I, Pfeiffer WH, McClafferty B. 2010b. Biofortification of durum wheat with zinc and iron. Cereal Chemistry, 87(1): 10-20.

Cakmak I, Torun A, Millet E, Feldman M, Fahima T, Korol A, Nevo E, Braun HJ, Özkan H. 2004. Triticum dicoccoides: an important genetic resource for increasing zinc and iron concentration in modern cultivated wheat. Soil Science and Plant Nutrition 50(7): 1047-1054.

Cavdar AO, Arcasoy A, Cin S, Babacan E, Gozdasoglu S. 1982.

Geophagia in Turkey: iron and zinc deficiency, iron and zinc absorption studies and response to treatment with zinc in geophagia cases. Progress in Clinical and Biological Research,129: 71-97.

Ceylan S, Akdemir H, Oktay M, Irget E. 1998. Çinko uygulamalarının Lirasa-92 ve Cumhuriyet-75 buğday çeşitlerinde verim ve bazı verim kriterlerine etkisi. I. Ulusal Çinko Kongresi,12-16 Mayıs, Eskişehir, s.229-234.

Daghan H, Uygur V, Koleli N, Arslan M, Eren A. 2013. The effect of heavy metal treatments on uptake of nitrogen, phosphorus and potassium in transgenic and non-transgenic tobacco plants. Tarım Bilimleri Dergisi-Journal of Agricultural Sciences,19: 129-139.

Elgün A, Ertugay Z, Certel M, Kotancılar HG. 2002. Tahıl ve Ürünlerinde Analitik Kalite Kontrolü ve Laboratuvar Uygulama Klavuzu (3. baskı). Atatürk Üniversitesi, Ziraat Fakültesi, Yayın No: 335, Erzurum.

El-sayed Gheith MS, El-Badry OZ. 1988. Effect of the dates of zinc application on wheat. Beyragu Zur Tropischen Landwirtschof und Veterinarmadizin, 26 (3): 273-278.

Erdal I, Yilmaz A, Taban S, Eker S, Cakmak I. 2002. Phytic acid and phosphorus concentrations in seeds of wheat cultivars grown with and without zinc fertilization. Journal of Plant Nutrition 25: 113-127.

Eyupoglu F, Kurucu N, Talaz S. 1995. Türkiye topraklarının bitkiye yarayışlı elementler bakımından genel durumu. Toprak Gübre Araştırma Enstitüsü. 620/A-002 Projesi Toplu Sonuç Raporu.

Feil B and Fossati D. 1995. Minerals composition of Triticale grains as related to grain yield and grain protein. Crop Science, 35: 1426-1431.

Gomez-Coronado F, Poblaciones MJ, Almeida AS, Cakmak I. 2016. Zinc (Zn) concentration of bread wheat grown under Mediterranean conditions as affected by genotype and soil/foliar Zn application. Plant and Soil, 401(1-2): 331-346.

Graham RD, Welch RM, Bouis HE. 2001. Addressing micronutrient malnutrition through enhancing the nutritional quality of staple foods: principles, perspectives and knowledge gaps. Advances in Agronomy, 70: 77-142.

Hotz C, Brown KH. 2004. Assessment of the risk of zinc deficiency in populations and options for its control. Food and Nutrition Bulletin 25: 94-204.

House WA, Van Campen DR, Welch RM. 1996. Influence of dietary sulfurcontaining amino acids on the bioavailability to rats of zinc in corn kernels. Nutrition Research 16: 225-235.

Jackson ML. 1959. Soil chemical analysis. Englewood Cliffs, New Jersey.

Jackson ML. 2005. Soil chemical analysis: Advanced course. UWMadison Libraries Parallel Press.

Jiang W, Struik PC, Lingna J, van Keulen H, Ming Z, Stomph TJ. 2007. Uptake and distribution of root-applied or foliarapplied 65Zn after flowering in aerobic rice. Annals of AppliedBiology,150: 383–391.

Kalayci M, Aydin M, Kaya F, Ozbek V, Siit S. 1993. Mikro besin maddesi denemeleri. Geçit Kuşağı Tarımsal Araştırma Enstitüsü. 1992- 1993 Yılı Serin İklim Tahılları Projesi Gelişme Raporu, Eskişehir, s. 25-31.

Kalayci M, Aydin M, Özbek V, Çekiç C. 1996. Serin iklim tahıllarında mikroelement ilişkileri. Anadolu Tarımsal Araştırma Enstitüsü. 1995-1996 Yıllık Gelişme Raporu. Eskişehir

Kalayci M, Torun B, Eker S, Aydin M, Ozturk L, Cakmak I. 1999. Grain yield, zinc efficiency and zinc concentration of wheat cultuvars grown in zincdeficient calcareous soils in field and greenhouse. Field Crops Research, 63: 87-98.

Kalfa H, Gulut KY, Atli M, Eker S, Barut H, Cakmak I. 1998. Artan oranlarda uygulanan fosforun buğday yapraklarında çinkonun fizyolojik yarayışlılığına etkisi. I. Ulusal Çinko Kongresi,12-16 Mayıs, Eskişehir, s. 453-460.

Lindsay WL, Norvell WA. 1978. Development of a DTPA soil test for zinc, iron, manganese and copper. Soil Science Society of America Journal, 42: 421-428.

Lonnerdal B. 2000. Dietary factors influencing zinc absorption. Journal of Nutrition130: 1378-1383.

Mandall AB, Singharoy AK. 1989. Selection of some wheat genotypes on terai soil. Environment and Ecology, 7(4): 978- 979.

Mishra SS, Gulati JML, Nanda SS, Garyanak LM, Jenz SN. 1989. Micronutrient studies in wheat. Orissa Journal of Agricultural Research, 2(2): 94-96.

Mungan S, Duran I. 2003. Farklı doz ve yöntemlerle uygulanan çinkonun makarnalık buğday ve arpanın verim ve verim unsurlarına etkileri. Türkiye 5. Tarla Bitkileri Kongresi, 13-17 Ekim, Diyarbakır, Cilt:2, 510-515.

Oberleas D, Harland BF. 1981. Phytate content of foods; Effect on dietary zinc bioavailibilty. Journal of the American Dietetic Association, 79: 433-436.

Olsen SR, Cole CV, Watanabe FS, Dean LA. 1954. Estimation of available phosphorus in soil by extraction with sodium bicarbonate. USDA Circ., 939. U.S. Cov. Print Office, Washington D.C.

Ozbek V, Ozgumuş A. 1998. Farklı çinko uygulamalarının değişik buğday çeşitlerinin verim ve bazı verim kriterleri üzerine etkileri. I. Ulusal Çinko Kongresi,12-16 Mayıs, Eskişehir, s. 183-190.

Pfeiffer WH, McClafferty B. 2007. Biofortification: Breeding micronutrientdense crops. In: M. S. Kang & P. M. Priyadarshan (Eds.) Breeding major food staples (pp. 61-91). New York: Blackwell Science.

Phattarakul N, Rerkasem B, Li LJ, Wu LH, Zou CQ, RamH, Sohu VS, Kang BS, Surek H, Kalayci M, Yazici A, Zhang FS, Cakmak I. 2012. Biofortification of rice grain with zinc through zinc fertilization in different countries. Plant and Soil, 361: 131–141.

Prasad AS. 1984. Discovery and importance of zinc in human nutrition. In Federation Proceedings,Vol. 43, No. 13, pp. 2829- 2834.

Raboy V, Noaman MM, Taylor GA, Pickett SG. 1991. Grain phytic acid and protein are highly correlated in winter wheat. Crop Science 31: 631-63.

Raboy V. 2002 Progress in breeding low phytate crops. Journal Nutrition 132: 503S-505S.

Reddy NR, Pierson MD, Sathe SK, Salunkhe DK. 1989. Phytates in Cereals and Legumes. CRC Press, Florida.

Ryan MH, McInerney JK, Record IR, Angus JF. 2008. Zinc bioavailability in wheat grain in relation to phosphorus fertiliser, crop sequence and mycorrhizal fungi. Journal of the Science of Food and Agriculture 88: 1208-1216.

Sillanpaa M. 1982. Micro nutrients and the nutrient status of soils. A global study. FAO Soils Bulletin, No.48, FAO, Rome.

Simic D, Sudar R, Ledencan T, Jambrovic A, Zdunic Z, Brkic I, Kovacevic V. 2009. Genetic variation of bioavailable iron and zinc in grain of a maize population. Journal of Cereal Science 50, 392-397.
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)