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수온과 염분 조건에 따른 동죽의 여수율과 먹이섭취

Clearance rate and feeding according to water temperature and salinity condition in the surf clam, Mactra veneriformis

초록

인공종묘로 생산된 동죽, Mactra veneriformis의 크기, 수온, 염분 변화에 대한 여수율과 먹이섭이량의 차이를 조사하였다. 수온의 경우 소형, 대형그룹의 여수율은 $5^{\circ}C$에서 최소값을 보였으며 $20^{\circ}C$에서 가장 높은 값을 보였으나, $25^{\circ}C$에서 급격한 감소 경향을 보였다. 염분에 대한 소형그룹의 여수율은 26‰에서 가장 높은 값을 보였고 8‰에서 가장 낮은 값을 보였다. 대형그룹은 32‰에서 가장 높은 값을 보였고, 8‰에서 가장 낮은 값을 보였다. 본 연구를 통해 동죽의 최적 수온, 염분 환경은 $20^{\circ}C$, 27-32‰이며, $10^{\circ}C$ 이하 또는 $25^{\circ}C$ 이상의 수온과 20‰ 이하의 저염분에서 여수율이 낮아진다는 사실을 확인할 수 있었다.

keywords
Mactra veneriformis, Clearance rate, feeding, temperature, salinity

Abstract

Clearance rate and feeding of surf clam, Mactra veneriformis were determined for 5 different water temperature regime (5, 10, 15, 20, $25^{\circ}C$) and salinity regime (8, 14, 20, 26, 32 ‰) with small group ($86.62{\pm}7.10mm$ in shell length) and large group ($147.99{\pm}10.83mm$ in shell length). Clearance rate and feeding increased with water temperature up to $20^{\circ}C$, but rapidly decreased at $25^{\circ}C$. The minimal clearance rate and feedign was recorded at $5^{\circ}C$. surf clam showed low clearance rate and feeding at low salinity (below 20 ‰) and maximum values at high salinity (26-32 ‰).

keywords
Mactra veneriformis, Clearance rate, feeding, temperature, salinity

참고문헌

1.

Sprung M.. (1995). Physiological energetics of the zebra mussel Dreissena polymorpha in lakes. II. Food uptake and gross growth efficiency. Hydrobiologia, 304, 133-146. 10.1007/BF02579418.

2.

Davenport, J. and Wang, T,M.. (1986). Response of the blood Cockle Anadara granosa (L) salinity, hypoxia and aerial exposure. Aquaculture, 56, 151-162. 10.1016/0044-8486(86)90024-4.

3.

Filgueira, R., Labarta U. and Fernandez-Reiriz, M.J.. (2008). Effect of condition index on allometric relationships of clearance rate in Mytilus galloprovincialis Lamarck. Review of Oceanography and Marine Biology, 43(2), 391-398.

4.

Han, Eun-Taek;Chai, Jong-Yil;. (2008). Mactra veneriformis, an Intertidal Clam, as a New Second Intermediate Host for Acanthoparyphium marilae (Digenea: Echinostomatidae). The Korean Journal of Parasitology, 46(2), 101-104. 10.3347/kjp.2008.46.2.101.

5.

Shin, Yun Kyung;Park, Jung Jun;Lim, Hyun Sig;Lee, Jung Sick;. (2013). Copper Toxicity on Survival, Respiration and Organ Structure of Mactra veneriformis (Bivalvia: Mactridae). The Korean Journal of Malacology, 29(2), 129-137. 10.9710/kjm.2013.29.2.129.

6.

SHIN Yun-Kyong;KIM Yoon;CHUNG Ee-Yung;HUR Sung-Bum;. (2000). Temperature and Salinity Tolerance of the Manila Clam, Ruditapes philippinarum. Korean Journal of Fisheries and Aquatic Sciences, 33(3), 213-218.

7.

Sylvester F., Dorado, J., Boltobskoy, D., Jua'rez A. and Cataldo, D.. (2005). Filtration rates of the invasice pest bivalve Limnoperna fortunei as a function of size and temperature. Hydrobiologia, 524, 71-80.

8.

Werner, I. and Hollibaugh, J.T.. (1993). Potamocorbula amurensis: Comparison of clearance rates and assimilation efficiencies for phytoplankton and bacterioplankton. Limnology and Oceanography, 38, 949-964. 10.4319/lo.1993.38.5.0949.

9.

Widdows, J., ed. by Gray, J.S. and Christiansen, M.E.. The effect of fluctuating and abrupt change in salinity on the performance of Mytilus edulis. In: Marine Biology of Polar Regions and Effect of Stress on Marine Organism.

10.

Wilbur, K.M. and Saleuddin, A.S.M., ed. by Wilbur, K.M. and Saleuddin, A.S.M.. Shell formation. In: the Mollusca Physiology, vol. 4, park 1.

11.

Yang, Songyi;Lee, Jong Hyeon;Lee, Byeong Gweon;. (2013). Relationship of the Clearance Rate and Nonylphenol Uptake Rate of Three Bivalve Species with Different Size Classes and Temperatures. The Sea, 18(2), 80-88. 10.7850/jkso.2013.18.2.80.

12.

You, D.G.. Ecological studies on the population of surf clam, Mactra veneriformis reeve.

13.

Yu J.H., Park, K.I. and Park, S.W.. (2009). Characterization of haemocytes in the surf clam Mactra veneriformis. Journal of Fish Pathology, 22(3), 305-316.

14.

Zeuthen, E.. (1953). Oxygen uptake as related to body size in organisms. The Quatrerly review of Biology, 28(1), 1-12. 10.1111/j.1469-185X.1953.tb01369.x.

15.

해양수산통계연보.

16.

Shin, Hyun-Chool;Lee, Jung-Ho;Jeong, Hyo-Jin;Lee, Jung-Sick;Park, Jung-Jun;Kim, Bae-Hoon;. (2009). The Influence of Water Temperature and Salinity on Filtration Rates of the Hard Clam, Gomphina veneriformis (Bivalvia). The Korean Journal of Malacology, 25(2), 161-171.

17.

Shin, H.C. and Koh, C.H.. (1995). Growth and production of Mactra vineriformis (Bivalvia) on the Sondo tidal flat, west coast of Korea. Journal of the Korean Society of Oceanography, 30(5), 403-412.

18.

Shin, Hyun-Chool;Lim, Kyeong-Hun;. (2003). The Influence of Water Temperature and Salinity on the Filtration Rates of the Short-necked clam, Ruditapes philippinarum. The Korean Journal of Malacology, 19(1), 1-8.

19.

Robinson W.R., Perters, R.H. and Zimmermann, J.. (1983). The effect of body size and temperature on metabolic rate of organisms. Canadian Journal of Zoology, 61, 281-288. 10.1139/z83-037.

20.

Shin, H.C.. Growth and population dynamics of Mactra veneriformis (Bivalvia).

21.

RYOU Dong-Ki;CHUNG Sang-Chul;. (1995). Settlement and recruitment of Mactra veneriformis R. around the inshore of Kunsan, Korea. Korean Journal of Fisheries and Aquatic Sciences, 28(5), 667-676.

22.

Ryu, Hwa-Jeong;Ko, Young-Su;. (1985). Changes in Taste Compounds of Processed Surf Clam(Mactra veneriformis). Korean Journal of Food Science and Technology, 17(3), 223-226.

23.

Navarro, J.M., Leiva, G.E., Martinez G. and Anguilera, C.. (2000). Interactive effects of diet and temperature on the scope for growth of the scallop Argopecten purpuratus during reproductive conditioning. Journal of Experimental Marine Biology Ecology, 147, 67-83.

24.

Lim, Kyeong-Hun;Jang, Kyu-Sang;Kim, In-Sou;Lee, Jeong-Ho;Shin, Hyun-Chool;. (2008). The Influence of Water Temperature and Salinity on Filtration Rates of the Hard Clam, Meretrix petechialis. The Korean Journal of Malacology, 24(3), 175-188.

25.

MacDonald, B.A. and Thompson, R.J.. (1986). Influence of temperature and food availability on the ecological energetics of the giant scallop Placopecten magellanicus. III. Physiological ecology, the game-togenic cycle and scope for growth. Marine Biology, 93, 37-48. 10.1007/BF00428653.

26.

Mills D.. (2000). Combined effects of temperature and algal concentration on survival, growth and feeding physiology of Pinctata maxima (Jameson) spat. Journal of shellfish Research, 19, 159-166.

27.

Newell, R.C. and Kofoed, L.H.. (1977). Adjustment of the components of energy balance in the gastropod Crepidula fornicata in response to thermal acclimation. Marine Biology, 44, 275-286. 10.1007/BF00387708.

28.

Park, H.J.. Filtration rate and oxygen consumption rate on various growth stage of Scapharca broughtonii spat.

29.

Podolsky R.D.. (1994). Temperature and water viscosity: physiological versus mechanical effect on suspension feeding. Science, 265, 100-103. 10.1126/science.265.5168.100.

30.

Riisgard, H.U.. (2001). On measurement of filtration rates in bivalves the stony road to reliable data: review and interpretation. Marine Ecology Pregress Series, 211, 275-291. 10.3354/meps211275.

31.

Jorgensen C.B. Larsen R.S., and Riisgard H.U.. (1990). Effect of temperature on the mussel pump. Marine Ecology Progress Series, 64, 89-97. 10.3354/meps064089.

32.

Rippingale, R.J. and Hodgkin, E.P.. (1977). Food availability and salinity tolerance in a brackish water copepod. Austrian Journal of Marine and Freshwater Research, 28, 1-7. 10.1071/MF9770001.

33.

Hong, S.Y.. Marine invertebrates in korean coasts.

34.

Johns, H.D., Richards, O.G. and Southeran, T.A.. (1992). Gill dimensios, water pumping rate and body size in the mussel Mytillus deulis L. Journal of Experimental Marine Biology Ecology, 155, 213-237. 10.1016/0022-0981(92)90064-H.

35.

Kim, Young-Gill;. (1988). Studies on A Trematode Parasitized on Bivalves V. On metacercaria of Echinostomatidae detected from Mactra veneriformis, Cyclina sinensis and Solen strictus. Journal of fish pathology, 1(1), 31-37.

36.

;;. (2004). Effects of Water Temperature and Salinity on Dietary Feeding of Manila clam (Ruditapes philippinarum). Korean Journal of Environmental Biology, 22(1), 28-34.

37.

Laung, R.. (1972). Some recent work on osmotic, ionic and volume regulation in marine animals. Oceanography and Marine Biology Annual Review, 10, 97-136.

38.

Lee, Chang-Hoon;Chung, Ee-Yung;. (2001). Determination of Experimental Conditions for Measurement of the Clearance Rate of an Intertidal Bivalve, Glauconome chinensis. The Korean Journal of Malacology, 17(2), 95-104.

39.

Lee, Chang-Hoon;Choi, Yong-Suk;Bang, Jong-Deuk;Jo, Soo-Gun;. (2002). Feeding of Juvenile Purple Washington Clam, Saxidomus purpuratus (Sowerby): Effects of Algal Concentration and Temperature. Journal of Aquaculture, 15(4), 253-260.

40.

Lee, Jung-Suk;Lee, Byeong-Gwon;. (2005). Relationship between Clearance Rates and Metal Uptake Rates of Corbicula fluminea, Potamocorbula amurensis and Macoma balthica: Influence of Water Temperature and Body Size. The Korean Journal of Malacology, 21(1), 41-46.

41.

Lee, J.Y.. (1996). Study on the oxygen consumption of surf clam, Mactra veneriformis REEVE. Journal of Korean Fish Society, 29(5), 614-619.

42.

You, J.H.. Characterization of haemocytes and the effects of various environmental stresses on immune function in the surf clam, Mactra veneriformis.

43.

Buxton, C.D., Newell, R.C. and Field, J.G.. (1981). Response-surface analysis of the combined effects of exposure and acclimation temperatures on filtration, oxygen consumption and scope for growth in the oyster Ostrea odulis. Marine Ecology Progress Series, 6, 79-82.

44.

Chung, Ee-Yung;Kim, Sung-Yeon;Lee, Taek-Yuil;. (1988). A Study on Sexual Maturation of Mactra veneriformis Reeve. The Korean Journal of Malacology, 4(1), 30-41.

45.

;;;. (1999). Physiological rhythms in the Oxygen Consumption and Filtration Rates of the Manila Clam, Ruditapes philippinarum. The Korean Journal of Malacology, 15(2), 127-131.

46.

Clausen, I. and Riisgard, H.U.. (1996). Growth, filtration and respiration in the mussel Mytilus edulis: no evidence for physiological regulation of the filter-pump to nutritional needs. Marine Ecology Progress Series, 141, 37-45. 10.3354/meps141037.

47.

Coughlan J.,. (1969). The estimation of filtering rate from the clearance of suspensions. Marine Biology, 2, 356-358. 10.1007/BF00355716.

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