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Antimicrobial Effects of Natural Plant and Mushroom, Dicyophora indusiata Extracts on Fish Pathogenic Bacteria

어류질병세균에 대한 천연식물 및 망태버섯 (Dicyophora indusiata) 추출물의 항균활성

  • Jo Mi Ra (Dept. of Food Science & Technology, Kyongsung University) ;
  • Kim Jin Woo (Pathology Division, National fisheries Research In Development Institute) ;
  • Kim Dong Soo (Dept. of Food Science & Technology, Kyongsung University)
  • Published : 2002.11.01

Abstract

Ethanol extract obtained from bark, roots, stem, leaves and seeds of 30 species of plants and mushroom, Dicyophora indusiata were examined antimicrobial effect on fish pathogenic bacteria, Listoneria anguillamm, Lactococcus garvieae, Streptococcus iniae by disk method. Ethanol extract of D. indusiata was found to be the most active against all fish pathogenic bacteria in test system. Ethyl acetate fraction from ethanol extract of D. indusiata showed the strongest compared with those from other solvent fractions such as dichloromethane, n-buthanol and water. The antimicrobial effect of ethyl acetate fraction was particularly evident against S. iniae.

양식어류 질병 세균에 대한 31종의 천연물을 $70\%$ ethanol로 추출하여 항균효과를 조사하였다. 그 중에서 망태버섯 ethanol 추출물이 비교적 높은 활성을 나타내었으며, 망태버섯을 극성이 낮은 dichlorornethane, ethyl acetate, n-buthanol, water의 순서로 분획하여 항균효과를 본 결과 ethyl acetate 추출물에서 모든 균주에대한 clear zone을 형성하여 항균효과가 보였다. 또한, 망태버섯로부터의 ethyl acetate 추출물을 Si-chromatography를 이용하여 fraction별 7개로 분획하여 항균효과를 조사한 결과 Fraction 2 (Hx :EtAOc, 3: 1)에서는 L. anguillarum에 대해 가장 항균효과가 뛰어났으며, Fraction 5 (DCM:MeOH, 5: 1)에서 5. iniae가 가장 높았다. 그 중에서 세 균주에 대해서 공통적으로 항균활성이 높은 것은 Fraction 5로 나타났다.

Keywords

References

  1. Ahn, E.Y., D.H. Shin, N.I. Baek and J.A. Oh. 1998a. Isolation and identification of antimicrobial active substance from Glycyrrgiza uralensis FISCH. Korean J. Food Sci. Technol., 30, 680-687 (in Korean)
  2. Ahn, Y.J., C.O. Lee, J.H. Kweon, J.W. Ahn and J.H. Park. 1998b. Growth-inhibitory effects of Galla rhois-denved tannins on intestinal bacteria. J. Appl. Microb., 84, 439-443 https://doi.org/10.1046/j.1365-2672.1998.00363.x
  3. Arora, D.S. and J. Kaur. 1999. Antimicrobial activity of spices. Internat. J. Antimicrob. Agents, 12, 257-262 https://doi.org/10.1016/S0924-8579(99)00074-6
  4. Bae, E.A., M.J. Han, N.J. Kim and D.H. Kim. 1998, Anti-Helicobacter pylori activity of herbal medicines. Biol. Phannaceut Bull., 21, 990-992 https://doi.org/10.1248/bpb.21.990
  5. Hara, C., T. Kiho and S. Ukai. 1982. Anti-imflammatory activity and confonnational behavior of a branched (I leads to 3)-beta-D- glucan from an alkaline extract of Dicytophora indusiata Fisch, Carbohydrate Research, 110, 77-87 https://doi.org/10.1016/0008-6215(82)85027-1
  6. Hwang, Y.J. 2000. Treatment of vibriosis in juvemle rockfish (Sebastes schlegeli) and enhancement of disease resistance in olive flounder (Paralichthys olivaceus) through feeding of aloe-supplemented diets. Master Thesis, Pukyong National University, pp. 1-32
  7. Jung, S.H., Y.C. Sohn and Y.C. Kirn. 2001. In vitro effect of water extract of medicinal herbs on antimicrobial activity against fish pathogenic bacteria and superoxide production of kidney phagocytes in olive flounder, Paralichthys olivaceus. J. Fish Pathol., 14, 3-10 (in Korean)
  8. Kim, Y.G., B.J. Rho and K.K. Lee. 1994. Antimicrobial activity of Artemisia princeps var. orientalis essential oil against fish pathogenie bacteria. J. Fish Pathol., 7, 113-117 (In Korean).
  9. Kwon, M.K., Y.C. Kim, Y.C. Sohn and S.I. Park. 1999. The dietary supplementing effects of Kugija, Lycium chinense, on immune responses of Nile tilapia, Oreochromis niloticus, to Edwardsiella tarda. J. Fish Pathol., 12, 73-81 (in Korean)
  10. Lim, H., K. Kubota, A. Kobatashi and F. Sugawara. 1998. Sulfurcontaining compounds from Scorodocarpus borneensis and their antimicrobial activity. Phytochemistry, 48, 787-790 https://doi.org/10.1016/S0031-9422(97)00961-8
  11. Mau, J.L, H.C. Lin and S.F. Song. 2002. Antioxidant properties of several specialty mushrooms. Food Res. Internal., 35, 519-526 https://doi.org/10.1016/S0963-9969(01)00150-8
  12. Mok, J.S., U.Y. Park, Y.M. Kim and D.S. Chang. 1994. Effects of solvents and extracting condition on the antimicrobial activity of Salviae miltioirhizae Radix (Salvia miltionrgiza) extract. J. Korean Soc. Food Nutr., 23, 1001-1007 (in Korean)
  13. Park, S.M., S.I. Park, M.D. Huh and Y.K. Hong. 1999. Inhibitory effect of green tea extract on collagenase activity and growth of fish pathogenic bacteria. J. Fish Pathol., 12, 83-88 (in Korean)
  14. Park, U.Y, S.H. Kim, J.H. Kim, Y.G. Kim and D.S. Chang. 1995. Purification of antimicrobial substance for the extract from the root bark of Morus alba. J. Food Hyg. Safety, 10, 225-230 (in Korean)
  15. Rabe, T. and J. van Staden. 2000. Isolation of an antibacteiial sesquiterpenoid from Warburgia salutaris. J. of Ethnopharm., 73, 171-174 https://doi.org/10.1016/S0378-8741(00)00293-2
  16. Sohn, Y.C. 1999. Effects of medical herb stuff extracts and mitogens on the activation of kidney macrophage in nile tilapia, Oreochmmis niloticus. Master Thesis, Pukyong National University, Korea, pp. 1-63
  17. Tereschuk, M.L., M.V.Q. Riera, G.R. Castro and L.R. Abdala. 1997. Antimicorbial activity of flavonoids from leaves of Tagetes minuta. J. of Ethnopharm., 56, 227-232 https://doi.org/10.1016/S0378-8741(97)00038-X
  18. Ukai, S., T. Kiho, C. Hara, M. Morita, A. Goto, N. Imaizumi and Y. Hasegawa. 1983. Polysaccharides in fungi. VIII. Antitumor activity of various polysaccharides isolated from Dictyophora indusiata Ganocderma faponicum, Cordyceps cicadae, Auricularia auriculajudae and Auricularia species. Chem. Pharmaceut. Bull., 31, 741-744 https://doi.org/10.1248/cpb.31.741

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