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Statistical Treatment on Amylose and Protein Contents in Rice Variety Germplasm Based on the Data Obtained from Analysis of Near-Infrared Reflectance Spectroscopy (NIRS)

NIRS 분석 Data에 의한 국내외 육성품종 벼 유전자원의 아밀로스 및 단백질 성분에 대한 통계분석

  • Oh, Sejong (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Chae, Byungsoo (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Lee, Myung Chul (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Choi, Yu Mi (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Lee, Sukyeung (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Ko, Ho Cheol (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Rauf, Muhammad (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA) ;
  • Hyun, Do Yoon (National Agrobiodiversity Center, National Institute of Agricultural Sciences, RDA)
  • 오세종 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • 채병수 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • 이명철 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • 최유미 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • 이수경 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • 고호철 (농촌진흥청 국립농업과학원 농업유전자원센터) ;
  • ;
  • 현도윤 (농촌진흥청 국립농업과학원 농업유전자원센터)
  • Received : 2018.04.26
  • Accepted : 2018.07.08
  • Published : 2018.10.31

Abstract

A statistical analysis for 3651 genetic resources collected from China (1,542), Japan (1,409), Korea (413), and India (287) was conducted using normal distribution, variability index value (VIV), analysis of variation (ANOVA) and Ducan's multiple range test (DMRT) based on a data obtained from NIRS analysis. In normal distribution, the average protein content was 8.0%, whereas waxy type amylose and common rice amylose were found to be 8.7% and 22.7%, respectively. The protein contents ranged from 5.4 to 10.6% at the level of 95%. The waxy amylose and common rice amylose ranged from 5.9 to 11.5%, and from 16.9 to 28.5% at 95% confidence level, respectively. The VIV was 0.59 for protein, 0.64 for low amylose, and 0.81 for high amylose contents. The average amylose contents were 18.85% in Japanese, 19.99% in Korean, 20.27% in Chinese, and 25.46% in Indian resources, while the average protein contents were found to be 7.23% in Korean, 7.73% in Japanese, 8.01% in Chinese, and 8.17% in Indian resources. The ANOVA of amylose and protein content showed significant differences at the level of 0.01. The F-test for amylose content was 158.34, and for protein content 53.95 compared to critical value 3.78. The DMRT of amylose and protein content showed significant difference (p<0.01) between resources of different countries. Japanese resources had the lowest level of amylose contents, whereas, the lowest level of protein content was found in Korean resources compared to other origins. Indian resources showed the highest level of amylose and protein contents. It is recommended these results should be helpful to future breeding experiments.

본 연구는 선행연구에서 개발된 근적외선 분광분석(NIRS) 예측모델을 활용하여 측정된 국내외 육성품종 벼 유전자원의 아밀로스 및 단백질 함량 자료를 통계처리 하여 자원의 지리적 특성과 함량에 대한 정확한 정보를 제공하기 위해 실시하였다. 정규분포분석 결과 육성품종 벼 자원의 단백질 평균은 8.0%였고, 찰벼 아밀로스 평균은 8.8%였고, 메벼 아밀로스 평균은 22.7%였다. 전체자원의 95%를 차지하는 자원들의 함량범위는 단백질의 경우 5.4-10.6%, 찰벼 아밀로스는 5.9-11.5%, 메벼 아밀로스는 16.9-28.5%였다. 자원의 다양성지수는 단백질의 경우 0.59, 찰벼 아밀로스는 0.81, 메벼 아밀로스는 0.64였다. ANOVA, DMRT 처리 자원 수는 중국 자원의 경우 1,542, 일본은 1,409, 한국은 413, 인도는 287자원이었다. 국가별 아밀로스 평균함량은 일본 자원의 경우 18.85%, 한국 자원은 19.99%, 중국 자원은 20.27%, 인도 자원은 25.46%였다. 단백질 평균함량은 한국 자원의 경우 7.23%, 일본 자원은 7.73%, 중국 자원은 8.01%, 인도 자원은 8.17%였다. ANOVA 분석결과 벼 유전자원의 아밀로스 및 단백질 함량은 국가별 차이가 있었고 1% 유의수준에서 차이가 인정되었다. DMRT 분석결과 국가별 아밀로스 함량은 일본, 중국과 한국, 인도의 세 집단으로 나눌 수 있었으며 각 집단 간 아밀로스 함량차이는 1% 유의수준에서 차이가 인정되었다. 단백질 함량의 경우 한국, 일본, 인도와 중국의 세 집단으로 나눌수 있었으며, 각 집단 간 단백질 함량차이는 1% 유의수준에서 차이가 인정되었다. 일본 자원은 가장 낮은 아밀로스 평균함량을 나타냈고, 한국 자원은 가장 낮은 단백질 평균함량을 나타냈다. 이에 비해 인도 자원은 가장 높은 아밀로스와 단백질 평균함량을 나타냈다. 이러한 지리적 분포에 따른 육성품종 벼 자원 간 함량 차이는 각 지역별 자원 선호도와 육종 방향이 반영된 결과라고 할 수 있다.

Keywords

References

  1. Ahn, H.G. and Y.H. Kim. 2012. Discrimination of Korean domestic and foreign soybeans using near-infrared reflectance spectroscopy. Korean J. Crop Sci. 57(3):296-300 (in Korean). https://doi.org/10.7740/kjcs.2012.57.3.296
  2. Champagne, E.T., K.L. Aett, B.T. Vinyard, B.D. Webb, A.M. McClung and F.E. Barton. 1997. Effects of drying conditions, final moisture content and degree of milling on rice flavor. J. of Cereal Chemistry 74:566-570. https://doi.org/10.1094/CCHEM.1997.74.5.566
  3. Choi, K.S. and G.H. Jung. 2017. Study on vinyl coating cultivation of potatoes under low temperature conditions. Korean J. Plant Res. 30(5):556-564 (in Korean). https://doi.org/10.7732/KJPR.2017.30.5.556
  4. Jang, M.R., H.K. Moon, T.R. Kim, D.H. Yuk, E.H. Kim, C.K. Hong, C.M. Choi, I.S. Hwang, J.H. Kim and M.S. Kim. 2011. The survey on pesticide residues in vegetables collected in Seoul. Korean J. Pesticide Sci. 15(2):114-124 (in Korean).
  5. Jeong, J.M., J.U. Jeung, S.B. Lee, M.K. Kim, B.K. Kim and J.K. Sohn. 2013. Physicochemical properties of rice endosperm with different amylose contents. Korean J. Crop Sci. 58(3):274-282 (in Korean). https://doi.org/10.7740/kjcs.2013.58.3.274
  6. Juliano, B.O. 2003. Rice: In Caballero, B., L. Trugo and P. Finglas (eds.), Encyclopedia of Food Sciences and Nutrition (2nd ed.), Academic Press, London, UK. pp. 4995-5001.
  7. Kim, D.J., S.K. Oh, J.H. Lee, M.R. Yoon, I.S. Choi, D.H. Lee and Y.G. Kim. 2012. Changes in quality properties of brown rice after germination. Korean J. Food Sci. Technol. 44(3):300-305 (in Korean). https://doi.org/10.9721/KJFST.2012.44.3.300
  8. Kim, H.I. 2004. Comparison of Korean and Japanese rice by NIR and chemical analysis. J. East Asian Soc. Dietary Life 14(2):135-144 (in Korean).
  9. Kim, K.H., M.H. Heu, S.Z. Park, and H.J. Koh. 1991. New mutants for endorsperm and embryo characters in rice. Korean J. Crop Sci. 36(3):197-203 (in Korean).
  10. Kim, M.K., M.Y Kim, C.H. Choi, B.G. Ko, S.I. Kwon and H.Y. Weon. 2010. Pathogenic E. coli inactivation in upland soils to a change of soil moisture content and temperature. Korean J. Soil Sci. Fert. 43(1):90-95.
  11. Kim, S.J. 2016. Analysis of freshness of rice depending on packing material using MANOVA. Korean J. Applied Statistics 29(7):1421-1428 (in Korean). https://doi.org/10.5351/KJAS.2016.29.7.1421
  12. Kim, S.S. and H.C. Cha. 2017. Comparison of the total phenolic and flavonoid contents and antioxidant activities of four kinds of sand dune plants living in Taean, Korea. Korean J. Plant Res. 30(1):8-16 (in Korean). https://doi.org/10.7732/kjpr.2016.30.1.008
  13. Lee, C.K., J.H. Kim, M.K. Choi, K.S. Kwak and J.C. Shin. 2010. Nitrogen application method for high quality and labor saving in rice production under amended standard N application level. Korean J. Crop Sci. 55(1):70-75 (in Korean).
  14. Lim, H.I., G.N. Kim, K.H. Jang and W.G. Park. 2015. Effect of wet cold and gibberellin treatments on germination of dwarf stone pine seeds. Korean J. Plant Res. 28(2):253-258 (in Korean). https://doi.org/10.7732/kjpr.2015.28.2.253
  15. Lee, I., J.C. Joo, C.S. Lee, G.Y. Kim, D.Y. Woo and J.H. Kim. 2017. Evaluation of the water quality changes in agricultural reservoir covered with floating photovoltaic solar-tracking system. J. Korean Soc. Environ. Eng. 39(5):255-264 (in Korean). https://doi.org/10.4491/KSEE.2017.39.5.255
  16. Nam, J.I., G.E. Choi, Y.M. Kim and J.I. Park. 2015. Analysis of morphological characteristics and variation among six populations of Pourthiaea villosa (Thunb.) Decne. var. villosa in Korea. Korean J. Plant Res. 28(1):26-34 (in Korean). https://doi.org/10.7732/kjpr.2015.28.1.026
  17. Oh, H.S., Y.H. Park and J.H. Kim. 2002. Isoflavone contents, antioxidative and fibrinolytic activities of some commercial cooking-with-rice soybeans. Korean J. Food Sci. Technol. 34(3):498-504 (in Korean).
  18. Oh, S.J., M.C. Lee, Y.M. Choi, S.K. Lee, M. Rauf, B.S. Chae and D.Y. Hyun. 2017. Fast systemic evaluation of amylose and protein contents in collected rice landrace germplasm using near-infrared reflectance spectroscopy (NIRS). Korean J. Plant Res. 30(4):450-465 (in Korean). https://doi.org/10.7732/KJPR.2017.30.4.450
  19. Pak, S.I. and T.H. Oh. 2010. The Application of analysis of variance (ANOVA). J. Vaterinary Clinics 27(1):71-78 (in Korean).
  20. Park, S.Z., W.S. Hahn and N.J. Chung. 2016. Comparison of several groups In Biostatistics, KNOU Press, Seoul, Korea. pp. 230-250 (in Korean).
  21. Sim, M.O., H.J. Lee, J.H. Jang, H.E. Lee, H.K. Jung, T.M. Kim, J.H. No, J. Jung, D.E. Jung and H.W. Cho. 2017. Anti-inflammatory and antioxidant effects of Spiraea prunifolia Sieb. et Zucc. var. simpliciflora Nakai in raw 264.7 cells. Korean J. Plant Res. 30(4):335-342 (in Korean). https://doi.org/10.7732/KJPR.2017.30.4.335
  22. Son, J.R., J.H. Kim, J.I. Lee, J.K. Kim, H.G. Hwang and H.P. Moon. 2002. Trend and further of rice quality evaluation. Korean J. Crop Sci. 47:33-54 (in Korean).
  23. Son, K.A., G.J. Im, S.M. Hong, C.S. Kim, G.H. Gil, Y.D. Jin, J. Kim, Y.B. Ihm, H.S. Ko and J.E. Kim. 2013. The extrapolations to reduce the need for pesticide residues trials on continuous harvesting leafy vegetables. Korean J. Pesticide Sci. 17(4):293-301 (in Korean). https://doi.org/10.7585/kjps.2013.17.4.293
  24. Song, J., J.H. Kim, D.S. Kim, C.K. Lee, J.T. Youn, S.L. Kim and S.J. Suh. 2008. Physicochemical properties of starches in japonica rices of different amylose content. Korean J. Crop Sci. 53(3):285-291 (in Korean).
  25. Song, J.H. 2015. Effect of pretreatment methods on seed germination of honey plant, Phellodendron amurense. J. Apic. 30(4):337-341 (in Korean). https://doi.org/10.17519/apiculture.2015.11.30.4.337
  26. Sung, M.K., S.J. Han, H.J. Seo, S.W. Choi, S.H. Nam and J.I. Chung. 2014. Genotype and environment influence on raffinose and stachyose content of soybean seed. Korean J. Crop Sci. 59(3):319-324 (in Korean). https://doi.org/10.7740/kjcs.2014.59.3.319
  27. Williams, P. and Norris, K. 1987. Near-Infrared Technology in Agricultural and Food Industries. American Association of Cereal Chemists, Inc., MN (USA). p. 330.
  28. Yang, C.I., S.J. Yang, Y.P. Jeoung, H.C. Choi and Y.B. Shin. 2001. $Genotype{\times}environment$ interaction of rice yield in multi-location trials. Korean J. Crop. Sci. 46(6):453-458 (in Korean).