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Seasonal Variations in the Nutritional Compositions and Heavy Metals in Two Demersal Fish, Liparis tessellatus (Cubed Snailfish) and Hemitripterus villosus (Shaggy Sea Raven)

동해안 저서어 곰치와 풍덕구이의 영양성분 및 중금속의 계절적 변화

  • Lee, Byung-Yong (Department of Food and Nutrition, Kangwon National University) ;
  • Surh, Jeong-Hee (Department of Food and Nutrition, Kangwon National University)
  • 이병용 (강원대학교 식품영양학과) ;
  • 서정희 (강원대학교 식품영양학과)
  • Received : 2011.02.16
  • Accepted : 2011.03.31
  • Published : 2011.06.30

Abstract

Two species of demersal fish, Liparis tessellates (cubed snailfish) and Hemitripterus villosus (shaggy sea raven), were investigated in relation to seasonal chemical composition. Total fat contents of the two fish were very low and were not appreciably different throughout the year, whereas their fatty acid compositions were significantly different depending on season. Noticeable changes in the moisture and protein contents in the two fishes were observed before and after spawning. Cubed snailfish showed relatively high amounts of total amino acids and free amino acids during summer months, whereas the levels of those in shaggy sea raven remained relatively unchanged throughout the year. Regardless of season, the major fatty acid of the two fishes was palmitic acid and most of polyunsaturated fatty acids (PUFAs) were n-3 PUFAs. Lead was over the legislative limit in some samples of the two fishes.

본 연구에서는, 동해안에 서식하는 대표적 저서어인 곰치와 풍덕구이의 영양성분 및 중금속 함량의 계절적 변동을 관찰하였다. 이 두 어종의 지방 함량은 0.3% 이하로 연중 내내 매우 낮은 특성을 나타내어 계절적 변동을 관찰하기 어려웠으나, 산란기를 전후하여 수분이 증가되고 단백질이 유의적으로 감소되는 현상이 관찰되었다. 수집 시기에 관계없이 1% 가량의 비교적 일정한 회분 함량을 나타내었던 두 어종은, 무기질 조성에 있어서는 연중 내내 칼륨(K), 나트륨(Na), 인(P)의 분포량이 가장 높게 나타남으로써, 어류의 전형적인 무기질 패턴을 나타내었다. 한편, 두 어종은 중금속 함량에 있어, 수은(Hg), 카드뮴(Cd), 주석(Sn)은 식품공전이 정한 규격을 충족시켰으나, 일부 시료에서 납(Pb)이 규격치 이상 검출됨에 따라, 두 어종에서 Pb 성분에 대한 지속적인 모니터링이 필요함을 시사하였다. 아미노산 분석 결과, 1년에 걸쳐 수집된 곰치와 풍덕구이 두 어종 모두에서 가장 많은 양으로 존재하는 아미노산은 glutamic acid, aspartic acid, glycine으로 확인되었다. 또한, 곰치의 경우에는, 수분의 함량이 적고 단백질의 함량이 높았던 여름철에 총 아미노산과 단맛 및 감칠맛을 부여하는 유리아미노산의 함량이 높게 나타나는 계절적 특성을 나타내었다. 풍덕구이는 단백질 및 총 아미노산의 함량은 곰치보다 높았으나, 어류의 풍미를 부여하는 유리아미노산의 함량 곰치보다 현저히 낮은 특성을 나타내었다. 곰치와 풍덕구이두 어종 모두 10-1월 사이에, PUFA는 급격히 증가하고, SFA는 감소하여, 다른 시기에 비해 상대적으로 높은 P/S를 나타냄에 따라, 지방과 달리 지방산 조성에 있어서는 계절적 특성이 관찰되었다. 이러한 결과들은, 종, 계절, 수집 지역의 지리적 조건에 의해 그 화학적 조성이 영향을 받게 되는 어류를 식품 소재화할 경우, 특정 지역에서 수집된 어류의 식품영양적 가치 평가는 개별 어류에 대해 연중 모니터링이 되어야 정확한 정보가 제공될 수 있음을 시사하였다.

Keywords

References

  1. Chang SK, Kim JH, Oh HS. The development of functional cold buckwheat noodles using biological activities of hot water extracts of Ligularia fischeri and Angelica gigas Nakai. Korean J. Food Culture 23: 479-488 (2008)
  2. Surh J, Kim JO, Kim MH, Lee JC, Lee BY, Kim MY, Yang HW, Yun S, Jeong HR. Nutritional properties, as food resources for menu development, of cubed snailfish, shaggy sea raven, and two kinds of wild vegetables that are staple products in Samcheok. Korean J. Food Cookery Sci. 25: 690-702 (2009)
  3. Leaf A, Weber PC. Cardiovascular effects of n-3 fatty acids. New Engl. J. Med. 318: 549-557 (1988) https://doi.org/10.1056/NEJM198803033180905
  4. Simopoulos AP. Summary of NATO advanced research workshop on dietary $\omega$-3 and $\omega$-6 fatty acids: Biological effects and nutritional essentiality. J. Nutr. 19: 521-528 (1989)
  5. De Moreno JEA, Moreno VJ, Brenner RR. Lipid metabolism of the yellow clam, Mesodesma mactroides: 1.Composition of the lipids. Lipids 11: 334-340 (1976) https://doi.org/10.1007/BF02544063
  6. Surh J, Kwon H. Fatty acid content and composition of various Korean shellfish. Food Sci. Biotechnol. 12: 83-87 (2003)
  7. Surh J, Ryu JS, Kwon H. Seasonal variations of fatty acid compositions in various Korean shellfish. J. Agr. Food Chem. 51: 1617-1622 (2003) https://doi.org/10.1021/jf026033a
  8. Surh J, Lee HJ, Kwon H. Reginal difference in fatty acid content of Korean shellfish. Food Sci. Biotechnol. 18: 367-373 (2009)
  9. Jeong BY, Choi BD, Lee JS. Proximate composition, cholesterol and a-tocopherol content in 72 species of Korean fish. J. Korean Fish Soc. 31: 160-167 (1998)
  10. NRRDI. Food Composition Table. National Rural Resources Development Institute RDA . Seoul, Korea. pp. 100-325 (2007)
  11. AOAC. Official Methods of Analysis of the AOAC. The Association of Official Analytical Chemists. Washington, DC. USA. pp. 774-784 (1990)
  12. Lepage G, Roy CC. Direct transesterification of all classes of lipids in a one-step reaction. J. Lipid Res. 27: 114-120 (1986)
  13. Jeong BY, Choi BD, Lee JS. Seasonal variation in proximate composition, cholesterol and a-tocopherol content of 12 species of Korean fish. J. Korean Fish Soc. 31: 707-712 (1998)
  14. El-Faer MZ, Rawdah TN, Attar KM, Arab M. Mineral and proximate composition of some commercially important fish of the Arabian Gulf. Food Chem. 45: 95-98 (1992) https://doi.org/10.1016/0308-8146(92)90016-U
  15. Ahn CB, Shin TS. Seasonal variation of lipids and fatty acids of sharp toothed eel (Muraenesox cinereus). Korean J. Life Sci. 12: 233-241 (2002) https://doi.org/10.5352/JLS.2002.12.3.233
  16. Ahn IY, Surh J, Park YG,Kwon H, Choi KS, Kang SH, Choi HJ,Kim KW, Chung H. Growth and seasonal energetics of the antarctic bivalve Laternula Elliptica from King George Island, Antarctica. Mar. Ecol.-Prog. Ser. 257: 99-110 (2003) https://doi.org/10.3354/meps257099
  17. National Fisheries Research Development Institute. http://portal. nfrdi.re.kr/envirodata Accessed date Jan. 11. 2011.
  18. KNS. Dietary Reference Intakes for Koreans. The Korean Nutrition Society , Seoul, Korea. pp. 199-311 (2005)
  19. Teeny FM, Gauglitz EJ, Hall AS, Houle CR. Mineral composition of the edible muscle tissue of seven species of fish from the Northeast Pacific. J. Agr. Food Chem. 32: 852-855 (1984) https://doi.org/10.1021/jf00124a040
  20. Ozden O, Erkan N, Ulusoy S. Determination of mineral composition in three commercial fish species (Solea solea, Mullus surmuletus, and Merlangius merlangus). Environ. Monit. Assess. 170: 353-363 (2010) https://doi.org/10.1007/s10661-009-1238-5
  21. Gordon DT, Roberts GL. Mineral and proximate composition of Pacific coast fish. J. Agr. Food Chem. 25: 1262-1268 (1977) https://doi.org/10.1021/jf60214a039
  22. Pierce GJ, Stowasser G, Hastie LC, Bustamante P. Geographic, sesaonal and ontogenetic variation in cadmium and mercury concentrations in squid (Cephalopoda: Teuthoidea) from UK waters. Ecotox. Environ. Safe. 70: 422-432 (2008) https://doi.org/10.1016/j.ecoenv.2007.07.007
  23. KFDA. Food Code. Korea Food Drug Administration. Seoul, Korea (2010)
  24. WHO. Environmental Health Criteria 3-Lead. World Health Organization, Heneva, Switzerland. pp. 30-40 (1997)
  25. Reilly C. Metal Contamination of Food. Blackwell Science Ltd. London, UK. pp. 81-94 (2002)
  26. Shahidi F, Synowiecki J. Dunajski E, Chong X. Nonprotein nitrogen compounds in harp seal (Phoca groenlandica) meat. Food Chem. 46: 407-413 (1993) https://doi.org/10.1016/0308-8146(93)90013-6
  27. Chyun JH, Griminger P. Improvement of nitrogen retention by arginine and glycine supplementation and its relation to collagen synthesis in traumatized mature and ageing rats. J. Nutr. 114: 1705-1715 (1984)
  28. Lindsay RC. Flavors. pp. 639-687. In: Food Chemistry. Damodaran S, Parkin KL, Fennema OR (eds). CRC Press. Boca Raton, FL, USA (2008)
  29. Zuraini A, Somchit MN, Solihah MH, Goh YM, Arifah AK, Zakaria MS, Somchit N, Rajion MA, Zakaria ZA, Mat Jais AM. Fatty acid and amino acid composition of three local Malaysian Channa spp. fish. Food Chem. 97: 674-678 (2006) https://doi.org/10.1016/j.foodchem.2005.04.031
  30. Kim HY, Shin JW, Park HO, Choi SH, Jang YM, Jang YM, Lee SO. Comparison of taste compounds of red sea bream, rockfish, and flounders differing in the localities and growing conditions. Korean J. Food Sci. Technol. 32: 550-563 (2000)
  31. Jeong BY, Moon SK, Choi BD, Lee JS. Seasonal variation in lipid class and fatty acid composition of 12 species of Korean fish. J. Korean Fish. Soc. 32: 30-36 (1999)
  32. Wang YJ, Miller LA, Perren M, Addis PB. Omega-3 fatty acids in Lake Superior fish. J. Food Sci. 55: 71-73 (1990) https://doi.org/10.1111/j.1365-2621.1990.tb06018.x
  33. Ackman RG, Eaton CA. Some commercial Atlantic herring oils: Fatty acid composition. J. Fish. Res. Board Can. 23: 991-1006 (1966) https://doi.org/10.1139/f66-092
  34. Bronsgeest-Schoute HC, Van Gent CM, Luten JB, Ruiter A. The effect of various intakes of w-3 fatty acids on the blood lipid composition in healthy human subjects. Am. J. Clin. Nutr. 34: 1752-1757 (1981)
  35. Korea Health Industry Development Institue. Report on national health and nutrition survey (Dietary intake survey). Ministry of Health and Welfare. Seoul, Korea. pp. 387-447 (2007)

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