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2015 | 18 | 1 |

Tytuł artykułu

Spring wheat yielding and the content of protein and zinc in its grain depending on zinc fertilisation

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

18

Numer

1

Opis fizyczny

http://www.ejpau.media.pl/volume18/issue1/art-08.html

Twórcy

  • Department of Agronomy and Plant Breeding, Agriculture Faculty, University of Maragheh, Maragheh 55181, Iran
autor
  • Department of Agronomy and Plant Breeding, Agriculture Faculty, University of Maragheh, Maragheh 55181, Iran
  • Department of Agronomy and Plant Breeding, Agriculture Faculty, University of Maragheh, Maragheh 55181, Iran
autor
  • Department of Chemistry, Basic Sciences Faculty, University of Maragheh, Maragheh 55181, Iran
autor
  • East Azarbaijan Agricultural and Natural Resources Research Centre, Tabriz, Iran

Bibliografia

  • Andreini C., Banci L., Rosato A., 2006. Zinc through the three domains of life. J. Proteome. Res., 5, 3173–3178.
  • Bansal R.L., Takker P.N., Bhandari A.L., Rana D.S., 1990. Critical level of DTPA extractable Zn for wheat in alkaline soils of semiarid region of Punjab, India. Fer. Res., 21, 163–166.
  • Belali M. Malakooti M.J., 1998. Different application methods comparison of microelements and Magnesium sulfate on yield increase and wheat amendment in Iran different provinces. http://www.iranwheat.ir/tahghigh/33.asp
  • Black R.E., Allen L.H., Bhutta Z.A., Caulfield L.E., de Onis M., Ezzati M., Mathers C., Rivera, J., 2008. Maternal and child under nutrition: global and regional exposure and health consequences. Lancet, 371, 243–260.
  • Bouis H.L., Graham R.D. Welch R.M., 2000. The Consultative Group on International Agricultural Research (CGIAR) Micronutrients Project: Justification and objectives. Food Nutr. Bull., 2, 374–381.
  • Cakmak I., 2008. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? Plant Soil, 302, 1–17.
  • Cakmak I., 2010. Biofortification of Cereal Grains with Zinc by Applying Zinc Fertilizers. http://www.biokemi.org/biozoom/issues/525/articles/2396.
  • Ekiz H., Bagcý S.A., Kýral A., Eker S., Gültekin I., Alkan A., Cakmak I., 1998. Effects of zinc fertilization and irrigation on grain yield and zinc concentration of various cereals grown in zinc-deficient calcareous soils. J. Plant Nutr., 21 (10), 2245–2256.
  • Fageria N.K., Slaton N.A., Baligar V.C., 2003. Nutrient management for improved lowland rice productivity and sustainability. Adv. Agron., 80, 63–152.
  • Fageria N.K., Baligar V.C., Clark R.B., 2008. Physiology of crop production. Taylor and Francis, CRC Press.
  • FAO, 2012. FAO statistical yearbook. Food and Agriculture Organization (FAO) of the United Nations, Rome, Italy. Available at: http://statistics.amis-outlook.org/data/index.html (accessed February 2013).
  • Feredric J.R., Camberato J.J., 1995a. Water and nitrogen effects on winter wheat in the southeastern Coastal Plain: I. Grain yield and kernel traits. Agron. J., 87, 521–526.
  • Gill M.S., Tarlok S., Rana D.S., Bhandari A.L. Singh T., 1994. Response of maize (Zea mays) and wheat (Triticum aestivum) to different levels of fertilization zinc. Indian J. Agronomy. 39, 168–170.
  • Hemantaranjan A., Garg O.K., 1988. Iron and zinc fertilization with reference to the grain quality of Triticum aestivum L., J. Plant Nutr., 11, 1439–1450.
  • Kalayci M., Torun B., Eker S., Aydin M., Ozturk L. Cakmak I., 1999. Grain yield, zinc efficiency and zinc concentration of wheat cultivars grown in a zinc deficient calcareous soil in field and greenhouse. Field Crops Res., 63, 87–98.
  • Karlen D.L. Sadler E.J., 1990. Nutrient accumulation rates for wheat in the southeastern Coastal Plain. Comm. Soil Sci. Plant Anal., 21, 1329–1352.
  • Kaya Y., Kaya Y., Arisoy R.Z., Göcmen A., 2002. Variation in grain yield and quality traits of bread wheat genotypes by zinc fertilization. Pakistan Journal of Agronomy, 1, 142–144.
  • Khandkar U.R., Jain N.K. Shinde D.A., 1992. Response of irrigated wheat to ZnSO4 application in vertisol. J. Indian. Soc. Soil Sci., 40, 399–400.
  • Marschner H., 1993. Mineral nutrition of higher plants. 2nd ed. Academic Press public.
  • Nasiri M., Khalatbari M., Aliabadi Farahani H., 2011. Zn-foliar Application Influence on Quality and Quantity Features in Phaseolous Vulgaris under Different Levels of N and K Fertilizers. Advances in Environmental Biology, 5(5), 839–846.
  • Ozturk L., Yazici M.A., Yucel C., Torun A., Cekic C., Bagci A., Ozkan H., Braun H.J., Sayers Z., Cakmak I., 2006. Concentration and localization of zinc during seed development and germination in wheat. Physiol Plant., 128, 144–152.
  • Qaderi J., 2000. Zinc and manganese role in wheat vigorous seed production. IRIDA. AREEO. SWRI. No 46. Tehran, Iran [in Persian].
  • Rengel Z., Graham R.D., 1995a. Importance of seed Zn content for wheat growth on Zn-deficient soil. I. Vegetative growth. Plant and Soil, 173(2), 259–266.
  • Rengel Z., Graham R.D., 1995b. Importance of seed Zn content for wheat growth on zinc-deficient soil. II. Grain growth. Plant and Soil., 173, 267–274.
  • Salardini A.A., 1999. Soil fertility. University of Tehran Pub. 441 pp. [in Persian].
  • Schachtman D.P. Barker S.J., 1999. Molecular approaches for increasing the micronutrient density in edible portions of food crops. Field Crop Res., 60, 81–92.
  • Singh Y.P., 2004. Effect of nitrogen and zinc on wheat irrigated with alkali water. Annals of Agricultural Research, 25, 233–236.
  • Slafar G.A. Savin R., 1994. Source-sink relationships and grain mass at different positions within the spike in wheat. Field Crops Research, 37, 39–49.
  • Slafer G.A. Rawson H.M., 1994. Sensitivity of wheat phasic development to major environmental factors: A re-examination of some assumptions made by physiologists and modelers. Austr. J. Plant Physiol., 21, 393–426.
  • Slaton N.A., Wilson C.E., Ntamatungiro S., Norman R.J., Boothe D.L., 2001. Evaluation of zinc seed treatments for rice. Agron J., 93, 152–157.
  • Thind S.S., Bansal R.L., Nayyar, U.K., Bhandari A.L., 1993. Field response of wheat to zinc application in soils of semiarid region in Punjab. India. Agronomica Hungarica, 42, 315–320.
  • Van Loon J.C., 1980. Analytical Atomic Absorption Spectroscopy. Academic Press Inc. Chapter 5: Analysis of Organic Compounds, 158–220.
  • Welch R.M. Webb M.J., Loneragan J.F., 1982. Zinc in membrane function and its role in phosphorus toxicity. In: Scafie A (ed) Proceeding of the Ninth Plant Nutrition Colloquim. Warwick, UK. Wallingford, UK: CAB International, 710–715.
  • Yilmaz A., Ekiz H., Torun B., Gultekin I., Karanlik S., Bagci S.A., Cakmak I., 1997. Effect of Different Zinc Application Methods on Grain Yield and Zinc Concentration in Wheat Cultivars Grown on Zinc-Deficient Calcareous Soils. Journal of Plant Nutrition, 20(4&5), 461–471.
  • Yilmaz A., Cakmak I., Kalayci M., Ekiz H., Torun B., Erenaglu B. Braun H.I., 1996. Zinc deficiency as a critical problem in wheat production in central Anatolia. Plant and Soil, 180, 165–172.
  • Zeltex Inc., 2006. http://www.zeltex.com/portable/zx-50.html
  • Ziaeian A., Malakooti M.J., 1998. Effect of micronutrient application and application time on increasing yield. Soil and Water, 2(1), 56–62 [in Persian with English abstract].

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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