Effect of nano iron foliar application on quantitative characteristics of new line of wheat

Authors

  • Maziar Ghazi Harsini MSc of student of Agronomy Department, Faculty of Agriculture Sciences, Shahed University, Tehran, IRAN
  • Hassan Habibi Agronomy Department, Faculty of Agriculture Sciences and Medicinal Plant Research Center, Shahed University of Tehran, Tehran, IRAN
  • Ghasem Hosein Talaei Young Researchers and Elite Club, Khorramabad Branch, Islamic Azad University, Khorramabad, IRAN

Keywords:

iron, protein, quantitative, wheat

References

Abbas, G., Khan, M.Q., Khan, M.J., Hussain, F., Hussai, I., 2009. Effect of iron on the growth and yield contributing parameters of wheat (Triticum aestivum L.). J. Anim. Plant Sci., 19, 135-139.

Brown, P.h., Cakmak, I., Zhang, Q., 1993. Form and function of zinc in plants. In Zinc in Soils and Plants. Ed. A D Robson. Pp 107-118. Kluwer Academic Publishers, Dordrecht, Netherlands.

Buyckx, M., 1993. The international community's commitment to combating micronutrient deficiencies. Food Nutr. Agr., 7, 2-7.

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

Cakmak, I., Torun, A., Millet, E., Feldman, M., Fahima, T., Korol, A., Nevo, E., Braun, H.J., Ozkan, H., 2004. Triticum dicoccoides, an important genetic resource for increasing zinc and iron concentration in modern cultivated wheat. Soil. Sci. Plant Nutr., 50, 1047-1054.

Davidson, F., Miller, R., 2005. Manual for wheat flour fortificaion with iron, analytical methods for monitoring wheat flour fortification with iron., pp.1-40.

Farajzadeh Memari Tabrizi, E., Yarnia, M., Khorshidi, M.B., Ahmadzadeh, V., 2009. Effect of micronutrients and their application method on yield, crop growth rate and net assimilation rate of corn cv. Jeta. J. Food Agr. Env., 7(2),611-615.

Fernandez, V., Orera, I., Abadia, J., Abadia, A., 2009. Foliar iron-fertilisation of fruit trees, present knowledge and future perspectives_a review. J. Hort Sci. Bio., 84, 1-6.

Ghorbani, S., Khiabani, B.N., Amini, I., Ardakani, M.R., Pirdashti, H., Moakhar, S.R., 2009. Effect of iron and zinc on yield and components of mutant line, wheat. Asian. J. Bio. Sci., 2, 74-80.

Habib, M., 2009. Effect of foliar application of Zn and Fe on wheat yield and quality. Afr. J. Biotechnol., 8, 6795-6798.

Joseph, T., Morrisson, M., 2006. Nanoforum, Nanotechnology in agriculture and food. Eur. Nanotechnol. Gateway.

Lemonse Silva, C.F., Kothe Milach, S.C., Anjos e Silva, S.D., Montero, C.R., 2008. Near infrared reflectance spectroscopy (NIRS) to assessprotein and lipid contents in (Avena sativa L.). Crop Breed. Appl. Bio., 8, 127-133.

Liscano, J.F., Wilson, C.E., Norman, R.J., Slaton, N.A., 2000. Zinc availability to rice from seven granular fertilizers. AAES Res Bulletin., 963, 1–31.

Liu, X.M., Zhang, F.D., Zhang, S.Q., He, X.S., Fang, R., Feng, Z., Wang, Y., 2005. Effects of nano-ferric oxide on the growth and nutrients absorption of peanut. Plant Nutr. Fert. Sci., 11,14-18.

Mariotti, M., Ercoli, L., Masoni, A., 1996. Spectral properties of iron deficient corn and sunflower leaves. Rem. sens. Env., 58(3), 282-288.

McGuire, J., 1993. Addressing micronutrient malnutrition. SCN News., 9, 1–10.

Mohamad, W., Igbal, M., Shal, S.M., 1990. Effect of mode of application of zinc and iron on yield of wheat. Sarhad J. Agr., 6,6, 615-618.

Narimani, H., Rahimi, M.M., Ahmadikhan, A., Vaezi, B., 2010. Study on the effects of foliar spary of micronutrient on yield and yield components of durum wheat. Appl. Sci. Res., 2(6), 168-176.

Pradeep, P.R.T., 2012. Effect of manoscale zinc oxide particles on the germination, growth and yield of peanut. J. Plant Nutr., 35, 905-927.

Prasad, T.N.V., Sudhakar, K.V.P., Sreenivasulu, Y., Latha, P., Munaswamy, V., Raja Reddy, K., Sreeprasad, T.S., Sajanlal, P.R., Pradeep, T., 2012. Effect of nanoscale zinc oxide particles on the germination, growth and yield of peanut. J. Plant Nutr., 35(6), 905-927.

Rajaie, M., Ziaeyan, A.H., 2009. Combined effect of zinc and boron on yield and nutrients accumulation in corn. Int. J. Plant Product., 3(3), 35-440.

Schonherr, J., Fernandez, V., Schreiber, L., 2005. Rates of cuticular penetration of chelated Fe(III), Role of humidity, concentration, adjuvants, temperature and type of chelate. J. Agr. Food Chem., 53, 4484- 4492.

Sheykhbaglou, R., Sedghi, M., Tajbakhsh shishevan, M., Sharifi, S.R., 2010. Effects of nano-iron oxide particles on agronomic traits of soybean. Notulae Sci. Bio., 2,112-113.

Tahir, M., Fiaz, N., Nadeem, M.A., Khalid, F., Ali, M., 2009. Effect of different chelated zinc source on the growth and yield of maize (zea mays L.). Soli Env., 28(2), 179-183.

Trehan, S.P., Sharma, R.C., 2000. Phosphorus and zinc uptake efficiency of potato (Solanum tuberosum L.) in comparison to wheat (Triticum aestivum L.), maize (Zea mays L.) and sunflower (Helianthus annus L.) . Int. J. Plant Product., 30(4), 485-488.

Welch, R.M., Graham, R.D., 2002. Breeding crops for enhanced micronutrient content. Plant Soil. 245, 205–214. Yip P, 1997. Submitted to the faculty of graduate studies in partial fulfillment of the degree of master of arts. M. S. Thesis, Calgary, Alberta, Canada.

Yip, P., 1997. Submitted to the faculty of graduate studies in partial fulfillment of the degree of master of arts. M. S. Thesis, Calgary, Alberta, Canada.

Zeidan, M.S., Manal, F., Hamouda, H.A., 2010. Effect of foliar fertilization of Fe, Mn and Zn on wheat yield and quality in low sandy soils fertility. World J. Agr. Sci., 6, 696-699.

Published

2014-04-28

How to Cite

Ghazi Harsini, M. ., Habibi, H. ., & Hosein Talaei, G. . (2014). Effect of nano iron foliar application on quantitative characteristics of new line of wheat. Scientific Journal of Crop Science, 3(4), 37-42. Retrieved from http://sjournals.com/index.php/sjcs/article/view/1208

Issue

Section

Original Article