Browning Inhibition and Quality Characteristics of Minimally Processed Mushroom (Agaricus bisporus Sing) Using Extracts from Natural Materials during Storage

천연 추출물을 이용한 최소가공 양송이버섯 (Agaricus bisporus Sing)의 갈변저해 및 저장 중 품질특성

  • Published : 2003.03.01

Abstract

Various quality characteristics of minimally processed mushroom were measured to select appropriate browning inhibitor. The treatment of extracts from Asparagi radix, cassia and kiwi on mushrooms have a high effectiveness like ascorbic acid or cysteine, known as a good chemical antibrowning agent. As a results of physical quality characteristics of minimally processed mushroom during storage, 1% cysteine and Asparagi radix were highly effective on degree of browning. Total phenol content and polyphenol oxidase activity showed slight differences among the mushroom treated with each browning inhibitors, but it has gradually increased during storage. Thus, these results suggest browning inhibitors from natural materials can be alternatives to prevent browning on mushrooms instead of chemical browning inhibitors including ascorbic acid or cysteine, has been widely used for antibrowning agent.

고품질의 최소가공 버섯을 제조하기 위해 여러 가지 천연 갈변저해제를 양송이버섯에 적용하여 최적의 천연 갈변저해제를 선발하고 선발된 천연 갈변저해제를 처리한 최소가공 버섯의 저장 중 품질특성 변화를 조사하였다. 천연 갈변저해제 중 천문동, 계피 및 키위 추출물이 우수하였다. 이들 선발된 갈변저해제를 처리한 최소가공 버섯의 저장 중 물리적 품질특성을 조사한 결과 갈변도에서는 1% cysteine과 천문동 추출물이 높은 저해효과를 나타내었다. 천연갈변저해 제를 처리한 버섯의 PPO 활성이 저장 초기부터 높게 나타난 것은 갈변저해제가 양송이버섯의 조직 내부로 흡수되지 못하기 때문으로 보여지며, 갈변저해제에 따른 총 페놀 함량의 유의적인 차이는 나타나지 않았으나, 저장기간이 증가함에 따라 양송이버섯의 총 페놀 함량이 증가하였다. 이러한 결과는 현재까지 갈변저해에 주로 이용되던 화학물질을 천연물 유래 갈변저해제로 대체 할 수 있음을 시사하는 것이다.

Keywords

References

  1. Sapers, G.M. (1993) Prevention of enzymatic browning in pre-peeled potatoes and minimally processed mushrooms. Food Tech. 47(10), 75-83
  2. Braaksma, A., Schaap, D.J., Schipper, C.M.A. (1999) Time of harvest determines the postharvest quality of the common mushroom Agaricus bispours. Postharvest Bioloby and Technol. 16, 195-198 https://doi.org/10.1016/S0925-5214(99)00019-8
  3. Sapers, G.M., Miller, R.L., Miller, F.C., Cooke, P.H. and Chio, S.W. (1994) Enzymatic browning control in minimally processed mushrooms. J. Food Sci, 59(5), 1042-1047 https://doi.org/10.1111/j.1365-2621.1994.tb08185.x
  4. Hong, J.S, Kim, Y.H., Lee, K.R., Kim, M.K., Cho, C.I., Park, K.H., Choi, Y.H. and Lee, J.B. (1988) Composition of organic acid and fatty acid in Pleurotus ostreatus, Lentinus sedodes and Agaricus bisporus. Korean J. Food Sci. Tech. 20(1), 100-105
  5. Hong, J.S. and Kim, T.Y. (1988) Contents of free-sugars & fre-sugaralcohois in Pleurotus ostreatus, Lentinus sedodes and Agaricus bisporus. Korean J. Food Sci. Tech. 20(4), 459-462
  6. Beelman, R.B., Barden, C.L. and Edwards, C.G. (1988) Total sulfur dioxide residuals in fresh mushrooms washed in sulfite solutions. J. Foo Protection, 51, 903-909
  7. Mccord, F. D. and Kilara, A. (1983) Control of enzymatic browning in processed mushrooms Agaricus bisporus. J. Food Sci. 48, 1479-1483 https://doi.org/10.1111/j.1365-2621.1983.tb03521.x
  8. Coseteng, M.Y. and Lee, C.Y. (1987) Changes in apple poly-phenoloxidase and polyphenol concentrations in relation to degree of browning. J. Food Sci. 52(4), 985-989 https://doi.org/10.1111/j.1365-2621.1987.tb14257.x
  9. Manzocco, L., Ca1ligaris, S., Mastrocola, D., Nicoli, M.C. and Lerici, C.R. (2001) Review of non-enzymatic browning and antioxidant capacity in processed foods. Trends in Food Sci. & Technol. 11, 340-346
  10. Park, W.P., Cho, S.H. and Lee, D.S. (1998) Effect of minirnal processing operations on the quality of garlic, green onion, soybean sprouts and watercress. J. Sci. Food Agric. 77, 282-286 https://doi.org/10.1002/(SICI)1097-0010(199806)77:2<282::AID-JSFA37>3.0.CO;2-4
  11. Jung, S.W., Lee, N.K., Kim, S.J. and Han, D.S. (1995) Screening of tyrosinase inhibitors from plants. Korean J. Food Sci. Tech. 27(6), 891-896
  12. Coseteng, M.Y. and Lee, C.Y. (1987) Change in apple polyphenoloxidase and polyphenol concentrations in relation to degree of browning. J. Food Sci. 52(4), 985-989 https://doi.org/10.1111/j.1365-2621.1987.tb14257.x
  13. Hammond, J.B.W. (1979) Change in composition of harvested mushrooms Agaricus bisporus. Phytochemistry, 18, 415-418 https://doi.org/10.1016/S0031-9422(00)81878-6
  14. Wellelr, A., Sims, C.A., Matthews, R.F., Bates, R.P., and Brecht, J. K. (1997) Browning susceptibility and changes in composition during storage of carambola slices. J. Food. Sci. 62(2), 256-260 https://doi.org/10.1111/j.1365-2621.1997.tb03980.x