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http://dx.doi.org/10.7745/KJSSF.2015.48.5.464

Effect of Customized Fertilizer Application and Soil Properties on Amino Acids Composition in Rice Grain  

Sung, Jwakyung (Division of Soil and Fertilizer, NAAS, RDA)
Lee, Yejin (Division of Soil and Fertilizer, NAAS, RDA)
Chun, Hyenjung (Division of Crop Production Technology, NICS, RDA)
Ha, Sangkeun (Division of Soil and Fertilizer, NAAS, RDA)
Sonn, Yeonkyu (Division of Soil and Fertilizer, NAAS, RDA)
Lee, Jongsik (Division of Climate Change and Agroecology, NAAS, RDA)
Publication Information
Korean Journal of Soil Science and Fertilizer / v.48, no.5, 2015 , pp. 464-468 More about this Journal
Abstract
Our government has performed to support the nation-wide application of customized fertilizer based on soil-testing results and crop nutrient balance in order to promote the environment-friendly agriculture and to respond the global environment guide-line since 2010. This study was performed at the selected local paddy fields (Hwaseong-si, Uiseong-gun and Miryang-si) with different soil chemical properties in 2012. The contents of amino acids measured showed an increasing trend with fertilization, and glutamic acid was the most abundant amino acid followed by aspartic acid, leucine and alanine. However, valine, isoleusine, tyrosine and lysine were not significantly affected by fertilization. The significant differences in grain N, expressed as a crude protein, and amino acids dose was observed between experimental sites (p<0.001), treatments (p<0.01 to 0.001) and interaction of both factors (p<0.01 to 0.001). In our experiment the following order of carbon skeleton backbones to produce amino acids was observed irrespective of experiment sites and fertilization: ${\alpha}$-ketoglutarate > oxalate > pyruvate > 3-phosphoglycerate > phosphoenolpyruvate. In conclusion, customized fertilizer had no difference in amino acids compared to the conventional-NPK practice which was higher than in no fertilization, and also the normal paddy represented slightly higher amino acids compared to the reclaimed. Further study based on the present results is required to investigate what is main factor to amino acids between genetic and environmental factors.
Keywords
Amino acids; Customized fertilizer; Rice grain;
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1 Borrell, A. K., A. L. Garside, S. Fukai, and D. J. Reid. 1999. Grain quality of flooded rice is affected by season, nitrogen rate, and plant type. Aust. J. Agric. Res. 50:1399-1408.   DOI
2 Chang, E. H., S. F. Zhang, Z. Q. Wang, X. M. Wang, and J. C. Yang. 2008. Effect of nitrogen and phosphorus on the amino acids in root exudates and grains of rice during grain filling. Acta Agron. Sin. 34:612-618.
3 Eggum, B. O., B. O. Juliano, and C. C. Maningat. 1982. Protein and energy utilization of rice milling fractions by rats. Qual. Plant Foods Hum. Nutr. 31:371-374.   DOI
4 Hong, S. D. 1998. Fertilizer recommendation based on soil testing for tomato in plastic film house. Korean J. Soil Sci. Fert. 31:350-358.
5 Hong, S. Y., Y. S. Zhang, B. K. Hyun, Y. K. Sonn, Y. H. Kim, S. J. Jung, C. W. Park, K. C. Song, B. C. Jang, E. Y. Choe, Y. J. Lee, S. K. Ha, M. S. Kim, J. S. Lee, G. B. Jung, B. G. Ko and G. Y. Kim. 2009.An introduction of Korean soil information system. Korean J. Soil Sci. Fert. 42:21-28.
6 Kaul, A. K., and P. Raghaviah. 1975. Influence of nitrogen fertilization on some nutritional quality characters in rice. Plant Foods Hum. Nutr. 24:391-403.   DOI
7 Kennedy, G. and B. Burlingame. 2003. Analysis of food composition data on rice from a plant genetic resources perspective. Food Chem. 80:589-596.   DOI
8 Ko, B. G., J. S. Lee, W. I. Kim, S. G. Yun, M. H. Park, Y. G. Jung, J. T. Lee, and D. B. Lee. 2009. Monitoring project on agri-environment quality in Korea. Research report of National Academy of Agricultural Science. pp. 9-60.
9 Kim, M. S., W. I. Kim, J. S. Lee, G. J. Lee, G. L. Jo, M. S. Ahn, S. C. Choi, H. J. Kim, Y. S. Kim, M. T. Choi, Y. H. Moon, B. K. Ahn, H. W. Kim, Y. J. Seo, Y. H. Lee, J. J. Hwang, Y. H. Kim, and S. K. Ha. 2010a. Long-term monitoring study of soil chemical contents and quality in paddy fields. Korean J. Soil Sci. Fert. 43:930-936.
10 Lee, C. S., J. Y. Lee, S. E. Lee, and B. L. Huh. 1994. Revised rate of NPK fertilizers based on soil testing for sesame and peanut. Korean J. Soil Sci. Fert. 27:92-97.
11 Mosse, J., and J. C. Huet. 1990. Amino acid composition and nutritional score for ten cereals and six legumes of oilseeds: causes and ranges of variations according to species and to seed nitrogen content. J. Sci. Aliment. 10:151-173.
12 Seebauer, J. R., S. P. Moose, B. J. Fabbri, L. D. Crossland, and F. E. Below. 2004. Amino acid metabolism in maize earshoots. Implications for assimilate preconditions and nitrogen signaling. Plant Physiol. 136:4326-4334.   DOI
13 Ning, H., J. Qiao, Z. Liu, Z. Lin, G. Li, Q. Wang, S. Wang, and Y. Ding. 2010. Distribution of proteins and amino acids in milled and brown rice as affected by nitrogen fertilization and genotype. J. Cereal Sci. 52:90-95.   DOI
14 Pedersen, B., and B. O. Eggum. 1983. The influence of milling on the nutritive value of flour from cereal grains. Qual. Plant Foods Hum. Nutr. 33:267-278.   DOI
15 Perez, C. M., B. O. Juliano, S. P. Liboon, J. M. Alcantara, and K. G. Cassman.1996. Effects of late nitrogen fertilizer application on head rice yield, protein content, and grain quality of rice. Cereal Chem. 73:556-560.
16 Shimamoto, K. 1995. The molecular biology of rice. Science. 270:1772-1773.   DOI   ScienceOn
17 Song, Y. S., C. S. Lee, H. K. Han, and Y. D. Park. 1993. Recommendation of NPK fertilizers for Chinese cabbage and spinach based on soil testing. Korean J. Soil Sci. Fert. 26:25-30.