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적변에 따른 연근별 산양삼 생육특성과 진세노사이드 함량

The Growth Characteristics and Ginsenoside Contents of Wild-simulated Ginseng (Panax ginseng C.A. Meyer) with Different Years by Rusty Roots

  • 김기윤 (국립산림과학원 산림약용자원연구소) ;
  • 어현지 (국립산림과학원 산림약용자원연구소) ;
  • 김현준 (국립산림과학원 산림약용자원연구소) ;
  • 엄유리 (국립산림과학원 산림약용자원연구소) ;
  • 정대희 (국립산림과학원 산림약용자원연구소) ;
  • 허정훈 (국립산림과학원 산림약용자원연구소) ;
  • 전권석 (국립산림과학원 산림약용자원연구소)
  • Kim, Kiyoon (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Eo, Hyun-Ji (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Kim, Hyun-Jun (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Um, Yurry (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Jeong, Dae-Hui (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Huh, Jeong-Hoon (Forest Medicinal Research Center, National Institute of Forest Science) ;
  • Jeon, Kwon-Seok (Forest Medicinal Research Center, National Institute of Forest Science)
  • 투고 : 2021.06.01
  • 심사 : 2021.06.23
  • 발행 : 2021.10.01

초록

본 연구는 산양삼 7년근과 13년근을 대상으로 적변 유무에 따라 분류하고 적변에 따른 이들의 생육특성과 진세노사이드 함량을 조사하기 위해 수행되었다. 산양삼 재배지 9개소의 산양삼 지하부의 생육특성을 분석한 결과, 7년근과 13년근의 생육특성은 적변에 따른 유의적인 차이는 확인되지 않았다. 적변에 따른 연근별 산양삼의 진세노사이드 함량을 비교 분석한 결과, 7년근은 Rb1과 Rg1의 함량이 일반 산양삼에 비해 적변 산양삼에서 높았고, Rc, Rd, Re, Rg2는 적변 산양삼에 비해 일반 산양삼에서 유의적으로 높은 것을 확인하였으나 13년근의 진세노사이드 함량은 유의적인 차이를 확인할 수 없었다. 산양삼 생육특성과 진세노사이드 함량 간의 상관관계를 분석한 결과, 일반 산양삼의 경우 진세노사이드 Rb2, Rc, Rd, Rf, Rg1이 산양삼의 지하부 길이와 유의적인 정의 상관관계를 보였고, 적변 산양삼은 진세노사이드 Rd가 지하부 길이와는 유의적인 정의 상관관계, 주근직 경과는 유의적인 부의 상관관계를 보였다. 본 연구에서는 7년근과 13년근 모두 적변 여부에 따른 생육특성의 차이는 확인되지 않았고, 7년근의 진세노사이드 함량은 적변에 따라 유의적인 차이를 보였지만 13년근은 유의적인 차이가 없는 것을 확인하였다. 임가에서 산양삼은 7년근에 비해 13년근이 보다 고가에 거래되는 만큼 본 연구의 결과를 통해 적변 산양삼에 대한 소비자들의 인식을 개선하여 산양삼 재배농가의 소득증대에 도움을 주고, 향후 산양삼의 품질규격을 정립하고 유통체계를 수립함에 유용한 정보를 제공할 수 있을 것으로 사료된다.

The aim of this study was to investigate the growth characteristic and ginsenoside contents of 7 and 13 year-old wild-simulated ginseng (Panax ginseng C.A. Meyer) according to rusty root. The root growth characteristics of wild-simulated ginseng were did not shows significant difference according to the rusty root. The results of ginsenoside contents of wild-simulated ginseng according to rusty root, ginsenoside Rb1 and Rg1 of 7 year-old wild-simulated ginseng were had shows a significantly higher in rusty root compare to general root. On the other hand, ginsenodie Rc, Rd, Re and Rg2 were significantly higher in gerneral root. In the case of 13 year-old wild-simulated ginseng, the contents of ginsenoside did not shows to significant difference according to rusty root. The results of correlation analysis between growth characteristics and ginsenoside content of general root, the ginsenoside Rb2, Rc, Rd, Rf, Rg1 were positive correlation with root length, while as the ginsenoside Rd of rusty root was shows significantly negative correlation with root length. The results of this study was might be able to improve awareness of consumer related to rusty root of wild-simulated ginseng. Moreover, might be help to provide useful information on the establish quality standard and distribution system of wild-simulated ginseng.

키워드

과제정보

본 연구는 국립산림과학원 일반연구사업 "고품질 산양삼 생산을 위한 친환경 재배기술 개발(Project No. FP0802-2017-01)"의 지원에 의해 수행된 결과로서 이에 감사드립니다.

참고문헌

  1. Han, S.H., D.K. Ryu, S.H. Choi, J.E. Choi and G.H. An. 2010. Screening and identification of antibacterial actinomycetes against bacteria causing rusty root on ginseng. J. Agric. Sci. 37(2):255-260 (in Korean).
  2. Kang, K.S., N. Yamabe, H.Y. Kim, J.H. Park and T. Yokozawa. 2008. Therapeutic potential of 20(S)-ginsenoside Rg(3) against streptozotocin-induced diabetic renal damage in rats. Eur. J. Pharmacol. 591:266-272 (in Korean). https://doi.org/10.1016/j.ejphar.2008.06.077
  3. Kim, J.H. and J.K. Kim. 2005. Effect of extracting conditions on chemical composition of Korean mountain ginseng extract. J. Korean Soc. Food Sci. Nutr. 34:862-868. https://doi.org/10.3746/JKFN.2005.34.6.862
  4. Kim, K., Y.S. Choi, J.C. Joo and G. Moon. 2011. A case report for lung cancer patient showing remission treated with cultivated wild ginseng pharmacopuncture. J. Pharmacopuncture 14:33-37. https://doi.org/10.3831/KPI.2011.14.4.033
  5. Kim, K.Y. Y.R. Um, Y.J. Eo, H.W. Park, K.S. Jeon and H.J. Kim. 2020a. Study on the correlation between the ginsenoside contents and growth characteristics of wild-simulated ginseng with different year-roots (Panax ginseng C.A. Meyer). Korean J. Plant Res. 33(4):255-262 (in Korean). https://doi.org/10.7732/KJPR.2020.33.4.255
  6. Kim, K.Y., D.H. Jeong, H.J. Kim, K.S. Jeon, M.J. Kim and Y.R. Um. 2019. A study on growth characteristics of wild-simulated ginseng (Panax ginseng C.A. Meyer) by direct seeding and transplanting. Korean J. Plant Res. 32(2):160-169 (in Korean). https://doi.org/10.7732/KJPR.2019.32.2.160
  7. Kim, K.Y., J.H. Huh, Y.R. Um, K.S. Jeon and H.J. Kim. 2020b. The comparative of growth characteristics and ginsenoside contents in wild-simulated ginseng (Panax ginseng C.A. Meyer) on different years by soil properties of cultivation regions. Korean J. Plant Res. 33(6):651-658. https://doi.org/10.7732/KJPR.2020.33.6.651
  8. Korea Seed and Variety Service (KSVS). 2014. Know-how of characteristics investigation of the crops: ginseng (Panax ginseng Meyer), Korea Seed and Variety Service. Gimcheon, Korea. pp. 6-13.
  9. Lee, G., G.S. Choi, J.Y. Lee, S.J. Yun, W. Kim, H. Lee, M.Y. Baik and J.K. Hwang. 2017. Proximate analysis and antioxidant activity of cultivated wild Panax ginseng. Food Eng. Prog. 21(3):208-214 (in Korean). https://doi.org/10.13050/foodengprog.2017.21.3.208
  10. Lee, S.S., M.G. Lee and K.T. Choi. 1999. Rusty-root tolerance and chemical components in 4-year old ginseng superior lines. J. Ginseng Res. 23(2):61-66 (in Korean).
  11. Lee, S.S., M.G. Lee, K.T. Choi, Y.O. Ahn, S.Y. Kwon, H.S. Lee and S.S. Kwak. 2000. Studies on the causal componet of rusty-root on Panax ginseng I. antioxidative activity oriented. J. Ginseng Res. 24(3):113-117 (in Korean).
  12. Lee, S.W., C.G. Kim, B.Y. Yeon, D.Y. Hyun, Y.S. Shin, S.W. Kang and S.W. Cha. 2008. Varietal difference in growth tesponse and ginsenoside contents of two-year-old ginseng grown in paddy field with different drainage conditions. Korean J. Crop Sci. 53(4):401-406 (in Korean).
  13. Lee, S.W., G.S. Kim, B.Y. Yeon, D.Y. Hyun, Y.B. Kim, S.W. Kang and Y.C. Kim. 2009. Comparison of growth chracterisitics and ginsenoside contents by drainage classes and varieties in 3-year-old ginseng (Panax ginseng C.A. Meyer). Korean J. Medicinal Crop Sci. 17(5):346-351 (in Korean).
  14. Lee, S.W., K.C. Park, S.H. Lee, G.S. Kim, I.B. Jang, Y.B. Kim and S.W. Cha. 2013. Growth characteristics and ginsenoside contents of 6-year-old ginseng (Panax ginseng C.A. Meyer) by shade materials in paddy field. Korean J. Medicinal Crop Sci. 21(2):118-123 (in Korean). https://doi.org/10.7783/KJMCS.2013.21.2.118
  15. Lee, S.W., S.W. Cha, D.Y. Hyun, Y.C. Kim, S.W. Kang and N.S. Seong. 2005. Comparison of growth characteristics and extract and crude saponin contents in 4-uear-old ginseng cultured by direct seeding and transplanting cultivation. Korean J. Medicinal Crop. Sci. 13(6):241-244 (in Korean).
  16. Lee, T.S., S.K. Mok, S.K. Cheon, J.H. Yoon, N.I. Baek and J. Choe. 2004. Accumulation of crude lipid, phenolic compound and iron in rusty ginseng root epidermis. J. Ginseng Res. 28(3):157-164 (in Korean). https://doi.org/10.5142/JGR.2004.28.3.157
  17. Lee, Y.D. 2020. Immune functional properties of Korean (Red) ginseng as a traditional food. Food Industry and Nutrition 25(1):1-10. (in Korean).
  18. Li, X., S.J. Kang, J.S. Han, J.S. Kim and J.E. Choi. 2009. Effects of root diameter within different root parts on ginsenoside composition of Yunpoong cultivar in Panax ginseng C.A. Meyer. Korean J. Medicinal Crop Sci. 17(6):452-457 (in Korean).
  19. Park, H.W., T.K. Lim, C.H. Choi and J.E. Choi. 2006. Factor and cause of rusty-ginseng occurrence. Korean J. Crop Sci. 51(5):396-400 (in Korean).
  20. Park, S.B., G.H. Park, Y. Um, H.N. Kim, H.M. Song, N. Kim, H.S. Kim and J.B. Jeong. 2018. Wood-cultivated ginseng exerts anti-inflammatory effect in LPS-stimulated RAW 264.7 cells. Int. J. Biol. Macromol. 116:327-334. https://doi.org/10.1016/j.ijbiomac.2018.05.039
  21. Um, Y.R., H.J. Eo, H.J. Kim, K.Y. Kim, K.S. Jeon and J.B. Jeong. 2020. Wild simulated ginseng activates mouse macrophage, RAW264.7 cells through TRL2/4-dependent activation of MAPK, NF-κB and PI3K/ AKT pathways. Journal of Ethnopharmacology 263. doi: 10.1016/j.jep.2020.113218.
  22. Xu, X.F., X.L. Cheng, Q.H. Lin, S.S. Li, Z. Jia, T. Han, R.C. Lin, D. Wang, F. Wei and X.R. Li. 2016. Identification of mountain-cultivated ginseng and cultivated ginseng using UPLC/oa-TOF MSE with a multivariate statistical sample-profiling strategy. J. Ginseng Res. 40:344-350. https://doi.org/10.1016/j.jgr.2015.11.001
  23. Yang, D.C., Y.H. Kim, K.Y. Yun, S.S. Lee, J.N. Kwon and H.M. Kang. 1997. Red-colored phenomera of ginseng (Panax ginseng C.A. Meyer) root and soil environments. Korean J. Ginseng Sci. 21(2):91-97 (in Korean).
  24. Yoon, K.Y and D.C. Yang. 2000. Red-colored phenomera and morphochemical characteristics of red-colored substances in ginseng roots (Panax ginseng C.A. Meyer). J. Ginseng Res. 24(3):107-112 (in Korean).