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Original Articles

Influence of Sulfur Supply on the Iron Accumulation in Rice Plants

, &
Pages 1149-1161 | Received 11 Nov 2012, Accepted 12 Feb 2013, Published online: 23 Apr 2014

References

  • Bacha, R. E., and L. R. Hossner. 1977. Characteristics of coatings formed on rice roots as affected by iron and manganese additions. Soil Science Society of America Journal 41:931–935.
  • Barikmoa, I., E. Ouattara, and A. Oshaug. 2007. Diferences in micronutrients content found in cereals from various parts of Mali.Journal of Food Composition and Analysis 20: 681–687.
  • Bienfait, H. F. 1989. Prevention of stress in iron metabolism of plants. Acta Botanica Neerlandica 38:105–129.
  • Butters, B., and E. M. Chenery. 1959. A rapid method for the determination of total sulphur in soils and plants. Analyst 84:239–245.
  • Cao, H., Z. H. Han, X. F. Xu, and Y. Zhang. 2002. Iron nutrition in higher plants. Plant Physiology Communications 38 (2): 180–186.
  • Chen, C. C., J. B. Dixon, and F. T. Turner. 1980. Iron coating on rice roots: Morphology and models of development. Soil Science Society of American Journal 44:1113–1119.
  • Chen, H. M., and C. R. Zheng. 1996. Cadmium. In Heavy metals pollution in soil–plant systems. ed. H. M. Chen, 71–125. Beijing: Science Press.
  • Dent, D. 1986. Acid sulphate soils: A baseline for research and development. Wageningen, The Netherlands: International Institute for Land Reclamation and Improvement.
  • Fan, J. L., Z. Y. Hu, N. Ziadi, X. Xia, and C. Y. H. Wu. 2010. Excessive sulfur supply reduces cadmium accumulation in brown rice (Oryza sativa L.). Environmental Pollution 158:409–415.
  • Gao, M. X., Z. Y. Hu, and G. D. Wang. 2007. The extraction and elemental analysis of iron plaque from the surface of rice roots. Environmental Chemistry 26 (3): 331–334.
  • Gao, M. X., Z. Y. Hu, and G. D. Wang. 2010. Effect of elemental sulfur supply on cadmium uptake into rice seedlings when cultivated in low and excess cadmium soils. Communications in Soil Science and Plant Analysis 41:990–1003.
  • Gregorio, G. B., D. Senadhira, T. Htut, and R. D. Graham. 1999. Improving iron and zinc value of rice for human nutrition. Agriculture et developpement 23:68–81.
  • Guo, S. W., C. Q. Zou, R. F. Jiang, and F. S. Zhang. 2000. Advances in improving iron reutilization efficiency of higher plant. Journal of China Agricultural University 5 (3): 80–86.
  • Hansel, C. M., S. Fendorf, S. Sutton, and M. Newville. 2001. Characterization of Fe plaque and associated metals on the roots of mine-waste-impacted aquatic plants. Environmental Science and Technology 35:3863–3868.
  • Higuchi, K., K. Suzuki, H. Nakanishi, H. Yamaguchi, N. K. Nishizawa, and S. Mori. 1999. Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores. Plant Physiology 119:471–479.
  • Holden, M. J., D. G. Luster, R. L. Chaney, T. J. Buckout, and C. Robinson. 1991. Fe3+-chelate reducates activity of plasma membranes isolated from tomato (Lycopersicon esculentum Mill.) roots. Plant Physiology 197:537–544.
  • Howeler, R. H. 1973. Iron-induced oranging disease of rice in relation to physiochemical changes in a flooded oxisol. Soil Science Society of America Journal 37:899–903.
  • Hu, Z. Y., and C. K. Xu. 2002. Soil sulfur and environmental quality. In Behaviors of chemical substances in soils and environmental quality, ed. H. M. Chen, 283–307. Beijing, China: Science Press.
  • Hu, Z. Y., S. Haneklaus, S. P. Wang, C. K. Xu, Z. H. Cao, and E. Schnug. 2003. Comparison of mineralization and distribution of soil sulfur fractions in the rhizosphere of oilseed rape and of rice. Communications of Soil Science and Plant Analysis 34:2234–2257.
  • Hu, Z. Y., Y. G. Zhu, M. Li, L. G. Zhang, Z. H. Cao, and F. A. Smith. 2007. Sulfur (S)–induced enhancement of iron plaque formation in the rhizosphere reduces arsenic accumulation in rice (Oryza sativa L.) seedlings. Environmental Pollution 147:387–393.
  • Jin, C. W., X. H. Yu, and S. J. Zhao. 2005. Latent function of microorganisms on plant iron acquisition. Plant Nutrition and Fertilizer Science 11:688–695.
  • Li, C., C. Y. Tu, J. Liu, D. J. Pan, H. O. Zhou, and Z. L. Fan. 2004. Discovery of a new iron-rich rice germplasm. Guangdong Agricultural Sciences 5:67–68.
  • Li, M., L. G. Zhang, and Z. Y. Hu. 2007. Elemental sulphur oxidation in the rhizosphere of rice and its impact on iron, manganese, phosphorus, and sulphur uptake in rice. Journal of Anhui Agricultural University 34:426–431.
  • Liu, W. J., Y. G. Zhu, F. A. Smith, and S. E. Smith. 2004a. Do iron plaque and genotypes affect arsenate uptake and translocation by rice seedlings (Oryza sativa L.) grown in solution culture. Journal of Experimental Botany 55 (403): 1707–1713.
  • Liu, W. J., Y. G. Zhu, F. A. Smith, and S. E. Smith. 2004b. Do phosphorus nutrition and iron plaque alter arsenate (As) uptake by rice seedlings in hydroponic culture. New Phytologist 162:481–488.
  • Liu, W. J., and Y. G. Zhu. 2005. Iron and Mn plaques on the surface of roots of wetland plants. Acta Ecologica Sinica 25:358–363.
  • Lu, R. K. 1999. Physico-chemistry analysis of soil. Beijing: China Agricultural Scientific and Technological Press.
  • Mendelssohn, I. A., B. A. Kleiss, and J. S. Wakeley. 1995. Factors controlling the formation of oxidized root channels: A review and annotated bibliography. Wetlands 15:37–46.
  • Mengel, K., and G. Geurtzen. 1988. Relationship between iron chlorosis and alkalinity in Zea mays. Physiologia Plantarum 72:460–465.
  • Mengel, K. 1994. Iron availability in plant tissues: Iron chlorosis on calcareous soils. Plant and Soil 165:275–283.
  • Murase, J., and M. Kimura. 1997. Anaerobic reoxidation of Mn2+, Fe2+, S0, and S2– in submerged paddy soil. Biology and Fertility of Soils 25:302–306.
  • Na, G. N., and D. E. Salt. 2011. The role of sulfur assimilation and sulfur-containing compounds in trace element homeostasis in plants. Environmental and Experimental Botany 72 (1): 18–25.
  • Qu, D., Y. P. Zhang, S. Schnell, and R. Conrad. 2003. Reduction of iron oxides and its effect on microbial processes in anaerobic paddy soil. Acta Pedologica Sinica 40 (6): 858–863.
  • Rengel, Z., G. D. Batten, and D. E. Crowley. 1999. Agronomic approaches for improving the micronutrient density in edible portions of field crops. Field Crops Research 60:27–40.
  • Schmidt, H., T. Eickhorst, and R. Tippkötter. 2011. Monitoring of root growth and redox conditions in paddy soil rhizotrons by redox electrodes and image analysis. Plant and Soil 341:221–232.
  • Soil Survey Staff. 2010. Keys to soil taxonomy, 11th ed. Washington, DC: USDA and Soil Survey Division Agriculture Department and US Natural Resources Conservation Service.
  • Taylor, G. J., and A. A. Crowder. 1983. Uptake and accumulation of heavy metals by Typha latifolia in wetlands of the Sudbury, Ontario region. Canadian Journal of Botany 61:63–73.
  • Taylor, G. J., A. A. Crowder, and R. Rodden. 1984. Formation and morphology of an iron plaque on the roots of Typha latifolia L. grown in solution culture. American Journal of Botany 71:666–675.
  • Toulon, V., H. Sentenac, J. C. Davidian, C. Moulineau, and C. Grignon. 1992. Role of apoplast acidification by the H+ pump: Effect on the sensitivity to pH and CO2 of iron reduction by roots of Brassica napus L. Planta 186:551–556.
  • van Goor, B. J., and D. Wiersma. 1976. Chemical forms of manganese and zinc in ploem exudates. Physiologia Plantarum 36:213–216.
  • Vasconcelos, M., K. Datta, N. Oliva, M. Khalekuzzaman, L. Torrizo, S. Krishnan, M. Oliveira, F. Goto, and S. K. Datta. 2003. Enhanced iron and zinc accumulation in transgenic rice with the ferritin gene. Plant Science 164:371–378.
  • Verma, B. C., K. Swaminathan, and K. C. Sud. 1977. An improved turbidimetric procedure for the determination of sulphate in plants and soils. Talanta 24:49–50.
  • Wang, T. J., Z. Y. Hu, M. Xie, Y. Zhang, C. K. Xu, and Z. H. Cao. 2004. Atmospheric sulfur deposition onto different ecosystems over China. Environmental Geochemistry and Health 26:169–177.
  • Warman, P. R., and H. G. Sampson. 1992. Evaluation of soil sulfate extractants and methods of analysis for plant available sulfur. Communications in Soil Science and Plant Analysis 23:793–803.
  • Weiss, J. V., D. Emerson, S. M. Backer, and J. P. Megonigal. 2003. Enumeration of Fe(II)-oxidizing and Fe(III)-reducing bacteria in the root zone of wetland plants: Implications for a rhizosphere iron cycle. Biogeochemistry 64:77–96.
  • Welch, R. M., and R. D. Graham. 2004. Breeding for micronutrients in staple food crops from a human nutrition perspective. Journal of Experimental Botany 55:353–364.
  • Wen, J. C., Z. L. Zhang, S. L. Jin, L. Tang, J. Xu, and X. L. Tan. 2005. Iron and zinc contents in Iaponica hybrid rice based on CMS-D1 system. Scientia Agricultura Sinica 38:l182–1187.
  • World Health Organization (WHO). 1992. National strategies for overcoming micronutrient malnutrition ( Document A45/3). Geneva, Switzerland: WHO.
  • Yehuda, Z., M. Shenker, V. Romheld, H. Marschner, Y. Hadar, and Y. Chen. 1996. The role of ligand exchange in the uptake of iron from microbial siderophores by gramineous plants. Plant Physiology 112:1273–1280.
  • Zhai, C. K., C. M. Lu, X. Zhang, G. J. Sun, and K. J. Lorenz. 2001. Comparative study on nutritional value of Chinese and North American wild rice. Journal of Food Composition and Analysis 14:371–382.
  • Zhang, F. S. 1992. Root exudates and their role in plant nutrition. Acta Agriculturae Universitatis Pekinensis 18:353–357.
  • Zhao, X., X. J. Liu, S. H. Lu, and F. S. Zhang. 2003. Effects of water and fertilization conditions on Fe movement and its uptake by rice. Journal of China Agricultural University 8 (5): 74–78.
  • Zhu, W., and S. F. Qian. 2004. Iron and human health. Food and Nutrition in China 3:47–49.
  • Zuo, Y. M., and F. S. Zhang. 2011. Soil and crop management strategies to prevent iron deficiency in crops. Plant and Soil 339:83–95.

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