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Agronomy & Crop Ecology

Suppressive Effect of Sulfate on Establishment of Rice Seedlings in Submerged Soil May be Due to Sulfide Generation around the Seeds

Pages 50-60 | Received 11 Jun 2012, Accepted 17 Jul 2012, Published online: 03 Dec 2015

  • Akamatsu, S., 1969. Studies of direct-sowing culture by broadcasting seeds on a submerged paddy field. No. 9. Relation between germination-and-growing of young plants and the rice yield, impediment of germination and the preventive measure. Sci. Rep. Fac. Agric. Okayama Univ. 33: 95-104**.
  • Asami, T., and Kumada, K. 1959. A new method for determining free iron in paddy soils. Soil Plant Food 5: 141-146.
  • Furuhata, M., 2009. Improvement of seedling emergence and establishment of rice direct seeded in flooded paddy fields. Jpn. J. Crop Sci. 78: 153-162*.
  • Furusaka, C., 1968. Studies on the activity of sulfate reducer in paddy soil. Bull. Inst. Agr. Res. Tohoku Univ. 19: 101-184**.
  • Goto, E., Miura, S., Nomura, M., and Inatsu, O., 2003. The present condition of chemical properties of paddy soils in Hokkaido. Jpn. J. Soil Sci. Plant Nutr. 74: 475-483**.
  • Hagiwara, M., Imura, M., and Mitsuishi, S., 1987. Oxidationreduction state in the vicinity of the paddy rice seed sown into flooded soil. Jpn. J. Crop Sci. 56: 356-362**.
  • Hagiwara, M. and Imura, M., 1993. Seedling emergence and establishment of direct-sown paddy rice in soils incorporated with substances produced in reductive paddy soil. Jpn. J. Crop Sci. 62: 609-613.
  • Hara, Y., and Toriyama, K., 1998. Ammonium nitrogen in soil solution and seed nitrogen affect the percentage of establishment of rice plants in submerged soil. Soil Sci. Plant Nutr. 44: 415-422.
  • Hara, Y., 2013. Improvement of rice seedling establishment in sulfateapplied submerged soil by application of molybdate. Plant Prod. Sci. 16: 61-68.
  • Japanese Industrial Standards 2008. Sulfide ion (S2-). In Testing methods for industrial wastewater (JIS K 0102). Japanese Standards Association, Tokyo. 135-138***.
  • Kanno, C, Sato, K., and Sakai, H., 1999. Effects of ammonium nitrogen concentration of soil solution on emergence of direct sowing in flooded paddy field. Tohoku J. Crop Sci. 42: 5-7***.
  • Kawaguchi, K., and Yamamoto, K., 1942. Linkage study on the upland condition soil and paddy condition soil. Part 1: On the deprivation of reduction ability of soil. Agronomy Research (Nougaku kenkyu) 34: 377-397***. (titles of paper and journal translated by the present author.)
  • Kawaguchi, K., 1944. Adverse effect of ammonium sulfate on seedling and seed germination in soil under paddy conditions. Agronomy Research (Nougaku kenkyu) 36: 484-496***. (titles of paper and journal translated by the present author.)
  • Kumada, K., 1949. Investigation on the rhizosphere of rice seedling. Part 1: On the microscopic structure of the rhizosphere and oxidative power of root. Jpn. J. Sci. Soil Manure 19: 119-124***.
  • Marschner, H., 1995. Waterlogged and flooded soils. In Mineral Nutrition of Higher Plants. 2nd ed. Academic Press, London, pp 626-641.
  • Murakami, D., and Kasubuchi, T., 2007. Reaction of a platinum electrode for the measurement of redox potential of paddy soil. J. Jpn. Soc. Soil Phys. 106: 3-10*.
  • Okajima, H., and Takagi, S., 1959. Harmful effect of hydrogen sulfide on the rice plant growth. Jpn. J. Sci. Soil Manure 29: 577-582***.
  • Osugi, S., and Kawaguchi, K., 1938. On the reduction of sulfates in paddy field soil. Jpn. J. Sci. Soil Manure 12: 453-462*.
  • Patrick, W. H. Jr., and Jugsujinda, A., 1992. Sequential reduction and oxidation of inorganic nitrogen, manganese, and iron in flooded soil. Soil Sci. Soc. Am. J. 56: 1071-1073.
  • Ponnamperuma, F. N., 1972. The chemistry of submerged soils. Adv. Agron. 24, 29-96.
  • Sato, I. and Yamane, I., 1959. The role of soil organic matter in the evolution of free hydrogen sulphide in flooded soil. Bull. Inst. Agric. Res. Tohoku Univ. 11: 145-157.
  • Suzuki, A. 1977. Influence of sulfur nutrition on some aspects of amino acid metabolism and diagnosis of sulfur deficiency of crop plants. Bull. Natl. Inst. Agric. Sci. B29: 49-106**.
  • Yamamoto, A., Hatanaka, A., and Ito, O., 2004. Inhibition of seedling establishment by nitrogen application in direct sowing culture of paddy rice in cold region. Soil Sci. Plant Nutr. 50: 103-107.
  • Yamauchi, M. 1997. Rice crop establishment in flooded soil. Jpn. J. Soil Sci. Plant Nutr., 68: 467-476***.