An International Open Access Journal
News Scroll
E-mail Alerts
Subscribe for TOC Alerts
Search Articles
sidebar
Creative Commons License

References


Alloway  BJ (2008a) Micronutrients and crop production. In:  Alloway BJ (Ed.) Micronutrient deficiencies in global crop production, Springer, Dordrecht:  Pp. 1–40.

Alloway BJ (2008b) Zinc in Soils and Crop Nutrition, IZA and IFA, Brussels, Belgium and Paris France.

Anonymous (2013) Pocket book on agricultural Statistics. Government of India, Ministry of Agriculture, Department of Agriculture and Cooperation. Directorate of Economics and Statistics, New Delhi.

Barry G (2006) High-iron and zinc rice. Available on http://www.knowledgebank.irri.org/rkb/health-andnutrition/high-ironand-zinc-rice.html access on 20.01.2014, IRRI.

Black RE (2003) Zinc deficiency, infectious disease and mortality in the developing world. Journal of  Nutrition 133: 1485–1489.

Bouis HE, Welch RM (2010) Biofortification- a sustainable agricultural strategy for reducing micronutrient malnutrition in the global South. Crop Science 50: 20–32.

Broadley M, Brown P, Cakmak I, Rengel Z, Zhao F (2012) Function of nutrients: micronutrients. In: Marschner P (Ed.) Mineral Nutrition of Higher Plants, 3rd Edn, Academic Press London pp. 191–248.

Brouwer G (2010) Zinc essential for life. Director, Zinc Nutrient Initiative, Seminário de Micronutrientes, Sao Paulo Brasil November.

Cakmak  I  (2004) Identification and correction of widespread zinc deficiency in Turkey, A success story. In IFS Proceedings No. 552, International Fertiliser Society York UK pp. 1–28.

Cakmak  I (2002) Plant nutrition research: Priorities to meet human needs for food in sustainable ways. Plant and Soil 247: 3–24.

Cakmak  I (2010)  Biofortification of cereals with zinc and iron through fertilization strategy. 19th World Congress of Soil Science, Soil Solutions for a Changing World, 1 – 6 August, Brisbane, Australia.

Cakmak  I, Kalayci M, Kaya Y, Torun AA, Aydin N, Wang Y, Arisoy Z, Erdem H, Yazici A, Gokmen O, Ozturk L, Horst WJ (2010)  Biofortification and Localization of Zinc in Wheat Grain. Journal of Agricultural and Food Chemistry 58: 9092–9102.

Cakmak I (2000) Role of zinc in protecting plant cells from reactive oxygen species. New Phytologist 146: 185–205.

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

Cakmak I, Gulut KY, Marschner H,  Graham  RD (1994) Effect of zinc and iron deficiency on phytosiderophore release in wheat genotypes differing in zinc deficiency. Journal of Plant Nutrition 17: 1–17.

Cunnane SC (1988) Role of zinc in lipid and fatty acid metabolism and in membranes. Progress in Food & Nutrition Science 12: 151-88.

Das, S, Green, A. (2013) Importance of zinc in crops and human health. Journal of the SAT Agricultural Research 11, 1-7.

FAO (2009) Food Insecurity in the World. Economic Crises – Impacts and Lessons Learned. Food and Agriculture Organization of the United Nations Rome.

Flanagan PR (1984) A model to produce pure zinc deficiency in rats and its use to demonstrate that dietary phytate increases the excretion of endogenous zinc. Journal of Nutrition 114: 493–502.

Galera SG, Rojas E, Sudhakar D, Zhu C, Pelacho AM, Capell T, Christou P (2010) Critical evaluation of strategies for mineral fortification of staple food crops. Transgenic Research 19: 165–180.

Gartler  J, Robinson  B, Burton  K, Clucas  L (2013) Carbonaceous soil amendments to biofortify crop plants with zinc. Science of the Total Environment 465: 308–313.

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. 

Graham RD, Welch RM (1996) Breeding for staple-food crops with high micronutrient density: Working Papers on Agricultural Strategies for Micronutrients, No.3. International Food Policy Institute, Washington DC.

Gregorio GB, Senadhira D, Htut  H, Graham  RD (2000)  Breeding for trace mineral density in rice. Food and Nutrition Bulletin  21: 382–386.

Guerinot ML (2000) The ZIP family of metal transporters, BBA-Biomembranes 1465: 190–198.

Hafeez B, Khanif YM, Saleem M (2013) Role of zinc in plant nutrition – A review. American Journal of Experimental Agriculture 3 : 374-391.

Hambidge KM, Miller LV, Westcott JE, Sheng X, Krebs NF (2010)  Zinc bioavailability and homeostasis. American Journal of Clinical Nutrition 91: 1478S–1483S.

Harland BF, Morris ER (1995) Phytate: a good or a bad food component? Nutrition Research 15: 733-754.

Harvest Plus (2009) Breeding crops for better nutrition, International Food Policu Research Institute, Washington DC, USA.

Harvest Plus (2012) Harvest Plus Extends Reach in Latin America & the Caribbean, International Food Policu Research Institute, Washington DC, USA.

Hussain S, Maqsood  MA, Rengel  Z, Aziz  T (2012)  Biofortification and estimated human bioavailability of zinc in wheat grains as influenced by methods of zinc application. Plant Soil 361: 279–290.

Imran  M, Kanwal S, Hussain S,  Aziz T, Maqsood MA (2015) Efficacy of zinc application methods for concentration and estimated bioavailability of zinc in grains of rice grown on a calcareous soil. Pakistan Journal of Agricultural Sciences 52 : 169-175.

INSTAPA  (2015) Novel staple food-based strategies to improve micronutrient status for better health and development in sub-SaharanAfrica, available on http://www.instapa.org/everyone/ 2195 /5/0/20 access on 29 May 2010.

International Zinc Nutrition Consultative Group (IZiNCG) (2004) Assessment of the risk of zinc deficiency in populations and options for its control. In: Hotz C, Brown KH (Eds.) Food and Nutrition Bulletin 25United Nations University Press, Tokyo pp. S91-204.

Ishimaru Y, Suzuki M, Tsukamoto T, Suzuki  K, Nakazono  M, Kobayashi T (2006) Rice plants take up iron as an Fe3+−phytosiderophore and as Fe2+. The Plant Journal 45: 335–46.

Jiang W, Struik  PC, Lingna J, Keulen  HV, Ming  Z, Stomph TJ  (2007) Uptake and distribution of root-applied or foliar applied 65Zn after flowering in aerobic rice. Annals of Applied Biology 150: 383–391.

Kennedy G, Nantel G, Shetty P (2003) The scourge of ‘‘hidden hunger’’: global dimensions of micronutrient deficiencies. Food Nutrition  & Agriculture 32: 8–16.

Krishnan S, Dayanandan P (2003) Structural and histochemical studies on grain-filling in the caryopsis of rice (Oryza sativa L.). Journal of Biosciences 28, 455–469.

Kutman UB, Yildiz  B, Ozturk  L, Cakmak  I (2010) Biofortification of durum wheat with zinc through soil and foliar applications of nitrogen. Cereal Chemistry 87: 1-9.

Liang J (2007) Iron, Zinc and Phytic Acid in Rice from China: Wet and Dry Processing towards Improved Mineral Bioavailability. Ph.D. thesis submitted to the University of Wageningen University, Wageningen, The Netherlands.

Lindsay WL (1972) Zinc in soils and plant nutrition. Advance in Agronomy 24: 147–186.

Lindsay WL (1979) Chemical Equilibria in Soils, John Wiley & Sons, New York.

Lopez HW, Leenhardt F, Coudray C, Remesy C (2002) Minerals and phytic acid interactions: is it a real problem for human nutrition? International Journal of Food Science & Technology 37: 727–739.

Lott JNA, Ockenden I, Raboy V, Graeme D, Batten GD (2000) Phytic acid and phosphorus in crop seeds and fruits: a global estimate. Seed Science Research 10 : 11 – 33.

Lu L, Tian S, Liao H, Zhang J, Yang X, Labavitch JM, Chen  W (2013) Analysis of Metal Element Distributions in Rice (Oryza sativa L.) Seeds and Relocation during Germination Based on X-Ray Fluorescence Imaging of Zn, Fe, K, Ca and Mn. PLoS ONE 8: 1-9.

Mabesa RL, Impa SM, Grewal  D, Beebouta  SEJ (2013) Contrasting grain-Zn response of biofortification rice (Oryza sativa L.) breeding lines to foliar Zn application. Field Crops Research 149: 223–233.

Marschner H (1995) Mineral nutrition of higher plants, 2nd ed., London: Academic Press.

Mayer JE, Pfeiffer WH, Beyer P (2008) Biofortified crops to alleviate micronutrient malnutrition. Current Opinion in Plant Biology 11: 166–170.

McNulty TJ, Taylor, CW (1999) Extracellular heavy metal ions stimulate Ca2+ mobilization in hepatocytes. Biochemical Journal 339 : 555-561.

Meenakshi JV, Johnson N, Manyong VM, De Groote, H, Javelosa J, Yanggen D, Naher F, Gonzalez C, Garcia J, Meng E (2007) How cost effective is biofortification in combating micronutrient malnutrition? An ex-ante assessment. Harvest Plus 188–209.

Miller LV, Krebs  NF, Hambidge  KM (2007) A mathematical model of zinc absorption in humans as a function of dietary zinc and phytate. Journal of Nutrition 137: 135–141.

Miller WJ, Blackmon, DM, Gentry RP, Pitts WJ, Powell GW (1967) Absorption, excretion, and retention of orally administered zinc-65 in various tissues of zinc-deficient and normal goats and calves. Journal of   Nutrition 92:71-8.

Moreau S, Thomson RM, Kaiser BN, Trevaskis B, Guerino, ML, Udvardi MK, Puppo A, Day D A (2002) GmZIP1 encodes a symbiosis-specific zinc transporter in soybean. Journal of Biological Chemistry 15: 4738–46.

Mortvedt JJ, Gilkes RJ (1993) Zinc fertilisers. In: Robson AD (Ed.) Zinc in soils and plants. Kluwer Academic Publishers, Dordrecht, Pp. 33–44.

Muthukumararaja TM, Sriramachandrasekharan  MV (2012) Effect of zinc on yield, zinc nutrition and zinc use efficiency of lowland rice. Journal of Agricultural Sciences and Technology 8 : 551-561.

Nestel P, Bouis HE, Meenakshi  JV,  Pfeiffer W (2006) Biofortification of staple food crops. Journal of Nutrition 136: 1064–1067.

Ozturk L, Yazici  MA, Yucel C, Torun  A, Cekic C, Bagci A, Ozkan H, Braun HJ, Sayers Z, Cakmak I (2006) Concentration and localization of zinc during seed development and germination in wheat. Physiology Plantarum 128: 144–152.

Pfeiffer WH, McClafferty  B (2007) Harvest Plus: breeding crops for better nutrition. Crop Science 47: S88–S105.

Phattarakul N,  Rerkasem B, Li  LJ, Wu L, H,  Zou CQ  Ram H, 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 Soil 361: 131–141.

Prasad AS (1985) Clinical manifestations of zinc deficiency. Annual Review of Nutrition 5: 341-363.

Press release, Times of India, May 22, (2015). http:// timesofindia.indiatimes. com/india /Scientists-in-Chhattisgarh-develop-high-zinc-rice-that-may-play-crucial-role-in-fighting-malnutrition access on 29 May 2015.

Ramesh SA, Shin R, Eide  DJ, Schachtman DP (2003) Differential metal selectivity and gene expression of two zinc transporters from rice. Journal of Plant Physiology 133: 126–34.

Rosado JL, Hambidge  KM, Miller LV, Garcia OP, Westcott J, Gonzalez  K, Conde  J, Hotz C, Pfeiffer W, Ortiz MI, Krebs NF (2009) The quantity of zinc absorbed from wheat in adult women is enhanced by biofortification. Journal of Nutrition 139: 1920–192.

Saha B, Saha S, Roy PD, Hazra GC, Das A (2013) Zinc fertilization effects on agromorphological and quality parameters of commonly grown rice. SAARC Journal of Agriculture 11(1): 105-120.

Shukla AK, Behera SK, Pakhare A, Chaudhari SK (2018) Micronutrients in soils , plants , animals and humans. Indian Journal of Fertilizers 14 : 30-54.

Singh A, Shivay YS (2013) Residual effect of summer green manure crops and Zn fertilization on quality and Zn concentration of durum wheat (Triticum durum Desf.) under a Basmati rice–durum wheat cropping system. Biological Agriculture and  Horticulture 29 : 271-287.

Singh MV (2009) Micronutrient nutritional problems in soils of India and Improvement for human and animal health. Indian Journal of Fertilizers 5: 11-26.          

Singh MV (2010) Detrimental effect of zinc deficiency on crops productivity and human health. First Global Conference on Biofortification, Harvest Plus Washington USA.

Stein AJ, Nestel P, Meenakshi JV, Waim M, Sachdev  HPS, Bhutta  ZA (2007) Plant breeding to control zinc deficiency in India: how cost-effective is biofortification? Public Health Nutrition 10: 492–501.

Stomph TJ, Jiang W, Struik PC (2009) Zinc biofortification of cereals: rice differs from wheat and barley. Trends in Plant Science 14: 123-124.

Underwood BA, Smitasiri S (1999) Micronutrient malnutrition: policies and programmes for control and their implications. Annual Review of Nutrition 19: 303-324.

Vidyavati SD, Sneha A, Katti SM (2016) Zinc- The Importance in Human Life. International Journal of Healthcare and Biomedical Research 4: 18-20.

Virk R, Senadhira D, Bebe S (2009) Iglesias, C. and Monasterio, I., Breeding for micronutrient density in edible portions of staple food crops: conventional approaches. Field Crop Research 60: 57–80.                                                                         

Wang Y, Wei Y, Dong L, Lu L, Feng Y, Zhang J, Pan F, Yang Y (2014) Improved yield and Zn accumulation for rice grain by Zn fertilization and optimized water management. Journal of Biomedicine and Biotechnology 15: 365-374.

Waters BM, Renuka PS (2011) Moving micronutrients from the soil to the seeds: Genes and physiological processes from a biofortification perspective. Plant Science 180: 562–574.

Wei Y, Shohag  MJI,  Yang  X (2012) Biofortification and Bioavailability of Rice grain zinc as affected by different forms of foliar zinc fertilization. PLoS ONE 7: e45428.

Welch RM (1995) Micronutrient nutrition of plants. Critical Reviews in Plant Sciences 14: 49–82.

White  PJ,  Broadley  MR (2005) Biofortifying crops with essential mineral elements. Trends in Plant Science 10: 586–593.

White  PJ,  Broadley  MR (2009) Biofortification of crops with seven mineral elements often lacking in human diets–iron, zinc, copper, calcium, magnesium, selenium and iodine. New Phytologist 182: 49–84.

WHO (1996) Food and Agriculture Organization (FAO), International Atomic Energy Association (IAEA). Trace elements in human nutrition and health. Geneva, WHO.

WHO (2007) UNICEF India, Children Issues. Global Database on Child Growth and Malnutrition in United Nations Administrative Committee on Coordination/Sub-Committee on Nutrition, Low Birth Weight, Nutrition Policy, Paper 18. http://www.who.int/nutgrowthdb/en/

Widodo Broadley, MR, Rose T, Frei M, Pariasca-Tanaka J, Yoshihashi T, Thomson M, Hammond JP, Aprile A, Close TJ, Ismail AM, Wissuwa M (2010) Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity. New Phytologist 186: 400–14.

Wing KR, Wing AM, Sjöström R, Lönnerdal  B (1997) Efficacy of a Michaelis-Menton model for the availability of zinc, iron and cadmium from an infant formula diet containing phytate. In: Fischer PWF, L’Abbé MR, Cockell KA, Gibson RS, (Eds.) Trace elements in man and animals 9: Proceedings of the Ninth International Symposium on Tracer Elements in Man and Animals; 1996, May 19–24; Banff, Alberta, Canada. Ottawa: NRC Research Press p. 31-2.

Wissuwa M, Ismail  AM, Graham  RD (2008) Rice grain zinc concentrations as affected by genotype, native soil-zinc availability, and zinc fertilization. Plant Soil 306: 37–48.

Yilmaz  A,  Ekiz  H, Torun  B, Gultekin  I, Karanlik  S, Bagci SA, Cakmak I (1997) Effect of different zinc application methods on grain yield and zinc concentration in wheat grown on zinc-deficient calcareous soils in Central Anatolia. Journal of  Plant Nutrition 20: 461–471

Yoshida S, Tanaka A (1969) Zinc deficiency of the rice plant in calcareous soils. Soil Science and Plant Nutrition 15: 75-80.

Zalewski  PD, Forbes IJ,  Betts WH (1993) Correlation of apoptosis with change in intracellular labile Zn (II) using zinquin [(2-methyl-8-p-toluenesulphonamido-6-quinolyloxy)acetic acid], a new specific fluorescent probe for Zn(II). Biochemical Journal 296: 403-408.

Zhang  F, Romheld V, Marschner H (1989) Effect of zinc deficiency in wheat on the release of zinc and iron mobilizing root exudates. Z. Pflanzenernahr. Bodenk 152: 205–210.

Editorial Board
Indexed & Listed In
Scimago Journal Rank
Track manuscript
Manuscript Statistics
Articles Statistics
Publication Statistics