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Changes in the Levels of Ergosterol and Methionine as Indicators of Lentinula edodes Quality According to the Relative Humidity During the Storage Period

  • Park, Youn-Jin (Green Manure and Legumes Resource Center, Kongju National University) ;
  • Cho, Yong-Koo (Department of Plant Resources, Kongju National University) ;
  • Kim, Chan-Young (Department of Plant Resources, Kongju National University) ;
  • Jang, Myoung-Jun (Department of Plant Resources, Kongju National University)
  • 투고 : 2020.06.29
  • 심사 : 2020.11.10
  • 발행 : 2020.12.31

초록

Lentinula edodes mushrooms cultivated under different relative humidities were wrapped at 4℃ and the results of storage characteristics were investigated. Changes in water content of fruiting bodies during the storage period showed the highest water content in fruit bodies harvested from the treatment with the highest relative humidity. The luminosity of the fresh fruiting bodies showed no significant change during the storage period, and the redness was higher in the relative humidity 95% treatment than in the other treatments. According to this study, the relative humidity of the pileus was 65%, and the content of Ergosterol was 0.67 ± 15 g / L at relative humidity of 65%, 80% and 95%. In addition, amino acid analysis and Principal Component Analysis (PCA) confirmed that methionine was the main cause of changes in storage time and relative humidity.

키워드

참고문헌

  1. Azevedo, S., Cunha, L. M., Fonseca, S. C., 2015, Modelling the influence of time and temperature on the respiration rate of fresh oyster mushrooms, Food Science and Technology International, 21(8), 593-603. https://doi.org/10.1177/1082013214555925
  2. Azevedo, S., Cunha, L. M., Oliveira, J. C., Mahajan, P. V., Fonseca, S. C., 2017, Modelling the influence of time, temperature and relative humidity conditions on the mass loss rate of fresh oyster mushrooms, Journal of Food Engineering, 212, 108-112. https://doi.org/10.1016/j.jfoodeng.2017.05.026
  3. Buswell, J. A., Cai, Y., Chang, S. T., 1995, Effect of nutrient nitrogen and manganese on manganese peroxidase and laccase production by Lentinula (Lentinus) edodes, FEMS microbiology letters, 128(1), 81-87. https://doi.org/10.1016/0378-1097(95)00087-L
  4. Caglarirmak, N., 2007, The nutrients of exotic mushrooms (Lentinula edodes and Pleurotus species) and an estimated approach to the volatile compounds. Food chemistry, 105(3), 1188-1194. https://doi.org/10.1016/j.foodchem.2007.02.021
  5. Gessner, M. O., 2005, Ergosterol as a measure of fungal biomass, In Methods to study litter decomposition, Springer, Dordrecht, 189-195.
  6. Jang, M. J., 2014, Characteristics of fruit body of Neolentinus lepideusaccording to relative humidity, Journal of Mushrooms, 12(4), 363-366. https://doi.org/10.14480/JM.2014.12.4.363
  7. Jhune, C. S., Yun, H. S., Kong, W. S., Lee, C. J., Chung, J. C., Yoo, Y. B., 2010, The change on characterizations of fruiting body according to the growing humidity in Flammulina velutipes, Journal of Mushroom Science and Production, 8(3), 109-115.
  8. Kim, D. M., Baek, H. H., Yoon, H. H., Kim, K. H., 1989, Effect of CO2 Concentration in CA Conditions on the Quality of Lentinula edodes (Lentinus edodes) during Storage, Korean Journal of Food Science and Technology, 21(4), 461-467.
  9. Kim, I. Y., Kim, S. C., Noh, J. H., Choi, S. G., Lee, W. H., Ko, H. G., Park, H. S., Koo, C. D., 2015, Effects of productivity of Lentinula edodes according to the control of high-temperature environment in summer, Journal of Mushrooms, 13(4), 288-293. https://doi.org/10.14480/JM.2015.13.4.288
  10. Kim, S. Y., Kim, M. K., Im, C. H., Kim, D. S., Kim, T. S., Kim, K. H., Park, K. K., Lee, S. D., Ryu, J. S., 2013, Optimal relative humidity for Pleurotus eryngii cultivation, Journal of Mushroom Science and Production, 11(3), 131-136. https://doi.org/10.14480/JM.2013.11.3.131
  11. Lee, Y. H., Lee, H. B., Ju, Y. C., 2011, Changes of quality in Pleurotus ostreatusduring low-temperature storage as affected by cultivation temperature and relative humidity, Journal of Mushroom Science and Production, 9(1), 34-38.
  12. Li, D., Qin, X., Tian, P., Wang, J., 2016, Toughening and its association with the postharvest quality of king oyster mushroom (Pleurotus eryngii) stored at low temperature. Food chemistry, 196, 1092-1100. https://doi.org/10.1016/j.foodchem.2015.10.060
  13. Lin, Q., Lu, Y., Zhang, J., Liu, W., Guan, W., Wang, Z., 2017, Effects of high CO2 in-package treatment on flavor, quality and antioxidant activity of button mushroom (Agaricus bisporus) during postharvest storage, Postharvest Biology and Technology, 123, 112-118. https://doi.org/10.1016/j.postharvbio.2016.09.006
  14. Maga, J. A., 1981, Mushroom flavor, Journal of Agricultural and Food Chemistry, 29(1), 1-4. https://doi.org/10.1021/jf00103a001
  15. Mahajan, P. V., Oliveira, F. A. R., Macedo, I., 2008, Effect of temperature and humidity on the transpiration rate of the whole mushrooms, Journal of Food Engineering, 84(2), 281-288. https://doi.org/10.1016/j.jfoodeng.2007.05.021
  16. Manzi, P., Gambelli, L., Marconi, S., Vivanti, V., Pizzoferrato, L., 1999, Nutrients in edible mushrooms: an inter-species comparative study, Food chemistry, 65(4), 477-482. https://doi.org/10.1016/S0308-8146(98)00212-X
  17. Nair, N. G., Bradley, J. K., 1980, Mushroom blotch bacterium during cultivation, Mushroom Journal, 90, 201-203.
  18. Pasanen, A. L., Yli-Pietila, K., Pasanen, P., Kalliokoski, P., Tarhanen, J., 1999, Ergosterol content in various fungal species and biocontaminated building materials, Applied and Environmental Microbiology, 65(1), 138-142. https://doi.org/10.1128/aem.65.1.138-142.1999
  19. Roberts, J. S., Teichert, A., McHugh, T. H., 2008, Vitamin D2 formation from post-harvest UV-B treatment of mushrooms (Agaricus bisporus) and retention during storage, Journal of agricultural and food chemistry, 56(12), 4541-4544. https://doi.org/10.1021/jf0732511
  20. Rux, G., Mahajan, P. V., Geyer, M., Linke, M., Pant, A., Saengerlaub, S., Caleb, O. J., 2015, Application of humidity-regulating tray for packaging of mushrooms, Postharvest Biology and Technology, 108, 102-110. https://doi.org/10.1016/j.postharvbio.2015.06.010
  21. Villares, A., Mateo-Vivaracho, L., Garcia-Lafuente, A., Guillamon, E., 2014, Storage temperature and UV-irradiation influence on the ergosterol content in edible mushrooms, Food chemistry, 147, 252-256. https://doi.org/10.1016/j.foodchem.2013.09.144
  22. Wei, W., Lv, P., Xia, Q., Tan, F., Sun, F., Yu, W., Jia, L., Cheng, J., 2017, Fresh-keeping effects of three types of modified atmosphere packaging of pine-mushrooms. Postharvest Biology and Technology, 132, 62-70. https://doi.org/10.1016/j.postharvbio.2017.05.020
  23. Yu, T. H., Ho, C. T., 1995, Volatile compounds generated from thermal reaction of methionine and methionine sulfoxide with or without glucose. Journal of agricultural and food chemistry, 43(6), 1641-1646. https://doi.org/10.1021/jf00054a043
  24. Zivanovic, S., Busher, R. W., Kim, K. S., 2000, Textural changes in mushrooms (Agaricus bisporus) associated with tissue ultrastructure and composition, Journal of Food Science, 65(8), 1404-1408. https://doi.org/10.1111/j.1365-2621.2000.tb10621.x