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Quality Characteristics Influenced by Different Packaging Materials in Washed Potatoes through an Integrated Washing System

통합세척시스템 활용시 포장재 종류별 세척감자의 품질 특성

  • Kim, Su Jeong (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Sohn, Hwang Bae (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Mekapogu, Manjulata (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Kwon, Oh Keun (National Institute of Horticultural & Herbal Science, RDA) ;
  • Hong, Su Young (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Nam, Jung Hwan (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Jin, Yong Ik (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Chang, Dong Chil (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Suh, Jong Taek (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Jeong, Jin Cheol (Highland Agriculture Research Institute, National Institute of Crop Science, RDA) ;
  • Kim, Yul Ho (Highland Agriculture Research Institute, National Institute of Crop Science, RDA)
  • 김수정 (국립식량과학원 고령지농업연구소) ;
  • 손황배 (국립식량과학원 고령지농업연구소) ;
  • ;
  • 권오근 (국립원예특작과학원 화훼과) ;
  • 홍수영 (국립식량과학원 고령지농업연구소) ;
  • 남정환 (국립식량과학원 고령지농업연구소) ;
  • 진용익 (국립식량과학원 고령지농업연구소) ;
  • 장동칠 (국립식량과학원 고령지농업연구소) ;
  • 서종택 (국립식량과학원 고령지농업연구소) ;
  • 정진철 (국립식량과학원 고령지농업연구소) ;
  • 김율호 (국립식량과학원 고령지농업연구소)
  • Received : 2016.02.11
  • Accepted : 2016.04.18
  • Published : 2016.06.30

Abstract

This study was performed to investigate the effect of packaging materials on quality characteristics of washed potatoes such as Hunter's a value, chlorophyll and potato glycoalkaloids (PGA) content during their storage for 15 days. Packaging methods were evaluated into five ways: no packaging (NP, positive control), paper bag (PB, negative control), onion net (ON), transparent oriented to polypropylene without hole (TP), opaque oriented polypropylene with 4 holes (OP). Hunter's a values of washed potatoes showed minus in NP and TP after 12 days storage, whereas all plus values were observed in those of PB, ON, and OP. Total chlorophyll content of washed potatoes was the highest in no packaging at 15 days after storage. The PGA content of washed potatoes showed low levels in flesh part (below $5mg/100g{\cdot}FW$) as well as in peel part ($4.5-9.3mg/100mg{\cdot}FW$) in all packagings up to 15 days after storage.

우리나라에서 가장 많이 유통되고 있는 감자 품종인 '수미'를 사용하여 세척감자의 실용화를 위한 적정 포장재를 개발하고자 본 연구를 수행하였다. 세척감자의 포장재에 따른 품질특성의 변화를 구명하기 위해 무포장(NP, positive control), 종이봉투(PB, negative control), 양파망(ON), 무공투명비닐백(TP), 유공불투명비닐백(OP) 총 5종의 포장재를 대상으로 Hunter 값, 색차값(${\Delta}E$ value), 총 엽록소 및 글리코알카로이드(PGA) 함량 등 품질 특성을 평가하였다. 그 결과, Hunter a값(적색도/녹색도)은 세척감자 저장 12일째에 양파망(ON)과 무공투명비닐백(TP)에서 -a값을 나타내 녹색도로 바뀌었다. 색차값은 무포장(NP)에서 높게 나타나 다른 포장재에 비해 녹화가 심했다. 총 엽록소 함량은 저장기간에 따라 뚜렷하게 증가하는 경향을 보였으며, 무포장에서 저장 15일째 가장 큰 증가를 보였다. 세척감자의 괴경 내피 부위의 PGA 함량은 모든 처리에서 저장 15일째 5 mg/100 g 이하로 낮았으며, 외피 부위에서도 4.5-9.3 mg/100 g으로 국제연합식량농업기구(FAO) 권장기준(20 mg/100 g)보다 낮았다. 녹화와 각 품질평가 요인의 상관성을 구명하기 위해, 피어슨 상관분석을 한 결과, 엽록소 함량은 색차값(0.90786)과 높은 정의 상관관계를 보였으나, Hunter a값은 색차값(-0.86021), 엽록소 함량(-0.85196)과는 높은 부의 상관관계를 보였다. 글리코알카로이드(PGA)와 녹색도 품질평가 요인과는 상관관계가 없는 것으로 나타났다. 이러한 엽록소 함량, 색도 색차와 PGA 함량 등의 결과를 바탕으로 녹화와 소비자 선호도를 고려할 때 평가항목에서 우수한 유공불투명포장재가 세척감자 소포장재로 유망할 것으로 판단되었다.

Keywords

References

  1. Choi HD, Lee HC, Kim SS, Kim YS, Lim HT, Ryu GH. Nutrient components and physicochemical properties of new domestic potato cultivars. Korean J. Food Sci. Technol. 40: 382-388 (2008)
  2. Jang HL, Hong JY, Kim NJ, Kim MH, Shin SR, Yoon KY. Comparison of nutrient components and physicochemical properties of general and colored potato. Korean J. Hort. Sci. Technol. 29: 144-150 (2011)
  3. Kolasa KM. The potato and human nutrition. Am. J. Potato Res. 70: 375-384 (1993) https://doi.org/10.1007/BF02849118
  4. RDA. The Potato: Guidance of agricultural technology-31. Rural Development Administration, Suwon, Korea. pp. 24-120 (2014)
  5. Kim JG. Effect of heat treatment and dipping solution combination on current status and prospect of fresh-cut produce in foodservice industry. Food World, Seoul, Korea. pp. 61-65 (2009)
  6. Kim JG, Choi ST, Bae DH. Effect of heat treatment and dipping solution combination on the quality of peeled potato 'Jopung'. Korean J. Hort. Sci. Technol. 27: 256-262 (2009)
  7. Park WH, Song JA, Lee JS, Lee SU. Effect of different light exposure on the development of chlorophylls and glycoalkaloids in potato tubers. Foodserv. Ind. J. 3: 61-72 (2009)
  8. Grunenfelder L, Hiller LK, Knowles NR. Color indices for the assessment of chlorophyll development and greening of fresh market potatoes. Postharvest Biol. Tec. 40: 73-81 (2006) https://doi.org/10.1016/j.postharvbio.2005.12.018
  9. Morris SC, Lee TH. The toxi city and teratogenicity of Solanaceae glycoalkaloids, particularly those of the potato (Solanum tuberosum). Food Technol. 36: 118-124 (1984)
  10. Edwards EJ. The accumulation of chlorophylls and glycoalkaloids in stored tubers. PhD thesis, The Nottingham Trent University, Nottingham, UK (1997)
  11. Edwards EJ, Cobb AH. Effect of temperature on glycoalkaloid and chlorophyll accumulation in potatoes (Solanum tuberosum L. cv. King Edward) stored at low photon flux density, including preliminary modeling using an artificial neural network. J. Agr. Food Chem. 45: 1032-1038 (1997) https://doi.org/10.1021/jf9607324
  12. Pavlista AD. G1437 green potatoes: The problems and the solution. Available from: http://digitalcommons.unl.edu/. Accessd Jan. 18, 2016
  13. Percival GC. The influence of light upon glycoalkaloid and chlorophyll accumulation in potato tubers (Solanum tuberosum L). Plant Sci. 145: 99-107 (1999) https://doi.org/10.1016/S0168-9452(99)00081-3
  14. Reeves A. Varietal differences in potato tuber greening. Am. Potato J. 65: 651-658 (1988) https://doi.org/10.1007/BF02854833
  15. Gull DD. Chlorophyll and solanine changes in tubers of Solanum tuberosum induced by fluorescent light, and a study of solanine toxicology by bioassay. PhD thesis, Cornell Univ. of Food Tec., Ithaca, NY, USA (1960)
  16. Petermann JB, Morris SC. The spectral responses of chlorophyll and glycoalkaloid synthesis in potato tubers (Solanum tuberosum). Plant Sci. 39: 105-110 (1985) https://doi.org/10.1016/0168-9452(85)90100-1
  17. FAO/WHO. Summary of evaluations performed by the joint FAO/WHO expert committee on food additives (JECFA). ILSI Press, Washington, USA (1999)
  18. Phlak L, Sporns P. Enzyme immunoassay for potato glycoalkaloids. J. Agr. Food Chem. 40: 2533-2540 (1992) https://doi.org/10.1021/jf00024a038
  19. Grunenfelder L. Physiological studies of light-induced greening in fresh market potatoes. MS thesis, Washington State University, Pullman, USA (2005)
  20. Choi SY, Hong YP, Cho MA, Pae DH. Changes of microbial decontamination, antioxidant activity and quality attributes in washed 'Fuji' apple during cold storage. Korean J. Hort. Sci. Technol. 31:115 (2008)
  21. Lee JS, Kim JG, Park SH. Effects of chlorine wash on the quality and microbial population of 'TahTasai' Chinese cabbage (Brassica campestris var. narinosa) microgreen. Korean J. Hort. Sci. Technol. 27: 625-630 (2009)
  22. Hardenburg RE. Comparison of polyethylene with various other ten pound consumer bags for sebago, katahdin and green mountain potatoes. Am. Potato J. 31: 29-31 (1954) https://doi.org/10.1007/BF02859985
  23. Lee HJ. Effect of different packaging materials on the quality of radish and broccoli sprout during storage. MS. thesis, Kyungpook National Univ., Daegu, Korea (2009)
  24. Lee JS, Chung DS, Choi JW, Jo MA, Lee YS, Chun CH. Effects of storage temperature and packaging treatment on the quality of leaf lettuce. Korean J. Food Preserv. 13: 8-12 (2006)
  25. Cho SH, Lee SD, Choi YJ. Effects of packaging and storage temperature on quality during storage of mung bean sprouts. Korean J. Food Preserv. 12: 522-528 (2005)
  26. Park HW, Park JD, Kim DM. Freshness extension of tomatoes by packaging methods. Korean J. Postharvest Sci. Technol. 6: 255-259 (1999)
  27. MEST. Guideline of school foodservice sanitation. Ministry of Education, Science and Technology. Seoul, Korea. p. 39 (2010)
  28. Inskeep WP, Bloom PR. Extinction coefficients of chlorophyll a and b in N,N-dimethylformamide and 80% Acetone. Plant Physiol. 77: 483-485 (1985) https://doi.org/10.1104/pp.77.2.483
  29. Friedman M. Potato glycoalkaloids and metabolites: Role in the plant and in the diet. J. Agr. Food Chem. 54: 8655-8681 (2006) https://doi.org/10.1021/jf061471t
  30. Kim YH, Kim GH, Ji HR, Lee YY, Park HM, Kwon OK, Kim SJ, Sohn HB, Jin YI, Hong SY, Nam JH, Kweon KB, Suh JT, Jeong JC. Glycoalkaloids content influenced by tuber parts and storage period in major potato cultivars of Korea. Korean J. Breed. Sci. 46: 209-217 (2014) https://doi.org/10.9787/KJBS.2014.46.3.209
  31. Lee HH, Hong SI, Kim DM. Storage quality of Sulhyang strawberries as affected by high $O_2$ atmosphere packaging. Korean J. Food Sci. Technol. 45: 191-198 (2013) https://doi.org/10.9721/KJFST.2013.45.2.191
  32. Hwang TY, Son SM, Lee CY, Moon KD. Quality changes of fresh-cut packaged Fuji apples during storage. Korean J. Food Sci. Technol. 33: 469-473 (2001)
  33. Ha JH, Ha SD, Kang YS, Kwon PH, Bae DH. Microbiological, nutritional, and rheological quality changes in frozen potatoes during storage. Korean J. Food Sci. Technol. 39: 663-668 (2007)
  34. Chang MS, Kim BS, Kim GH. Effect of washing-water temperature and packaging type on the quality of fresh-cut crown daisies. Korean J. Food Sci. Technol. 40: 171-177 (2004)
  35. Cha HS, Kim SI, Kim BS, Kim SH, Park SJ, Cho HS, Choi HY. Effect of inhibition on browning and microbial growth of minimally processed lettuce. Korean J. Food Preserv. 11: 331-335 (2004)