• Title/Summary/Keyword: 참굴

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Distribution of Heavy Metals in Sediments, Seawater and Oysters (Crassostrea gigas) in the Jinhae Bay (진해만의 퇴적물, 해수 및 참굴 내의 중금속 분포)

  • 이인숙;김은정
    • The Korean Journal of Ecology
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    • v.23 no.1
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    • pp.59-64
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    • 2000
  • Heavy metal concentrations in surface sediments, seawater and oysters (Crassostrea gigas) were determined to assess heavy metal contamination in the Jinhae Bay. The ranges of cadmium, cobalt, copper, nickel, lead and zinc concentration in surface sediments were 0.1∼2.4, 12.6∼14.4, 25.3∼ 92.3, 32.4∼ 93.5, 24. 1∼81.2, 124∼477 ㎍/g, respectively. The concentrations of cadmium, copper, lead and zinc which were influenced by industrial activity were the highest in the inside of Masan Bay. Dissolved concentrations of cadmium, cobalt, copper, nickel, lead and zinc in seawater were <0.010∼0.043, 0.008∼0.120, 0.31∼0.90, 0.25∼3.10, 0.010∼0.142, 0.27∼9.04 ㎍/L, respectively. The concentrations of cadmium, cobalt, copper, nickel, lead and zinc in seawater were also the highest inside of Masan Bay, suggesting that Masan Bay is the major source of heavy metal input to the Jinhae Bay. Bioconcentration factors (BCF) of zinc, copper, cadmium, lead, cobalt and nickel in C. gigas were 647373, 280861, 145069, 44559, 13524, 2745, respectively, showing C gigas is a stronger accumulator than other bivalves.

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Growth and Carrying Capacity of Pacific Oyster, Crassostrea gigas, in Kamak Bay, Korea (가막만 양식 참굴의 성장과 환경용량 추정에 대한 연구)

  • 박영철;최광식
    • Korean Journal of Environmental Biology
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    • v.20 no.4
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    • pp.378-385
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    • 2002
  • Growth of Pacific oystey, Crassostrea gigas, in Kamak Bay, Korea was modeled using Von Bertalanffy growth function, seasonal Von Bertalanffy growth function and generalized growth equation of Schnute and Richards' growth model, based on shell length and wet weight frequency data of 9208 oysters. Carrying capacity in the oyster culture ground was also estimated using Schaefer's and Fox's surplus production model. The present results suggest that the generalized growth equation of Schnute and Richards' model is fitter to describe the length growth pattern of C. gigas than Von Bertalanffy growth functions. This results also suggest that the current number of culture facility per unit area in 2000 is similar to the number of facility that produces the maximum production of oyster per unit area.

Shell Valve Movement of Pacific Oysters, Crassostrea gigas, in Response to Low Salinity Water (저염수에서 이매패류 참굴(Crassostrea gigas)의 패각운동)

  • Moon, Suyeon;Oh, Seok Jin
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.23 no.6
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    • pp.684-689
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    • 2017
  • We examined the possibility of developing an early monitoring system using the shell valve movement activity of Pacific oyster (Crassostrea gigas) for early detection of low salinity water in coastal areas. At salinity levels of 30 psu and 20 psu, SVMs were detected $7.32{\pm}3.21times/hr$ and $7.11{\pm}3.90times/hr$, respectively, The patterns and times of SVMs were not significantly different between the two experiment phases. However, at 10 psu and 5 psu, shell valves were observed to be permanently closed in all experiments. Under combined condition (Group 1: temperature $15^{\circ}C$ ${\times}$ salinity 15 psu), SVMs were observed from 20 psu to 30 psu over a 2 - 3 hr period, and then remained closed. In Group 2 (temperature $30^{\circ}C$ ${\times}$ salinity 15 psu), SVMs were observed, which indicated that the physiological condition of the oysters reached a critical point. Thus, it may be possible to utilize SVMs as an early warning signal for low salinity water.

Changes of Inorganic Matter and Enzyme Activity in the Hemolymph of Oyster, Crassostrea gigas Exposed to TBTO (TBTO의 노출에 따른 참굴, Crassostrea gigas의 hemolymph내 무기성분 및 효소활성의 변화)

  • Cho, Kyu-Seok;Min, Eun-Young;Jee, Jung-Hoon;Kim, Jae-Won;Ahn, Chul-Min;Kang, Ju-Chan
    • Journal of fish pathology
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    • v.14 no.2
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    • pp.65-70
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    • 2001
  • The purpose of this study is to find out the effects of various bis(tri-n-butyltin)oxide (TBTO) on changes of inorganic matter and enzyme activity in the hemolymph of Pacific Oyster, Crassostrea gigas. Oyster were exposed to 5, 10, 20, 50, 80and $100{\mu}g$/L of TBTO for 20 days. Survival rate of the oyster wass significantly affected by $\geq80{\mu}g$/L TBTO concentration at 10 days, while the diminution of survival was found at 20 days with a lower concentration of $\geq50{\mu}g$/L TBTO. Calcium concentration in the hemolymph increased significantly after 20 days at the TBTO concentration $20{\mu}g$/L. However no change of magnesium and inorganic phosphate in the hemolymph was showed. A significant increment of GOT activities in the hemolymph was observed after 20 days at more than $20{\mu}g$/L TBTO concentraion, without typical changes of GPT activities. These results indicate that oysters can be affected by TBTO in terms of calcium concentration and GOT activity in the hemolymph when they were exposed to the TBTO concentration $20{\mu}g$/L.

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Effect of Nano Particles on Fertilized Egg of Crossostrea gigas (참굴(Crassostrea gigas) 수정란에 미치는 나노입자의 영향)

  • Lee, Byeong-Woo;Park, Chan-Il;Choi, Kwang-Soo;Kim, Mu-Chan
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.14 no.1
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    • pp.9-14
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    • 2008
  • A Nano particle is a small particle with at least one dimension less than 100 nm Nanoparticle is currently used in an area cf intense scientific research, due to a wide variety cf potential applications in biomedical, optical, and electronic fields. In order to know the biological effect of the nine Nano particles on fertilized egg of Crassostrea gigas experiments were performed Development rates of control (free Nano particles) C. gigas to a particular larval stage (D-shape) was 78%. Development rate of C gigas to a parcicular larval stage (D-shape) after 24 hours exposure to 0.05ppm of AGZ020, Nano silver, P-25 and SnO were 22%, 52%, 58% and 76%, respectively. However, all fertilized eggs were destructed within 8 hours afters exposure to 20ppm of respective particles. On the other hand, All fertilized eggs were not affected after 24 hours respective exposure to 0.05ppm of In, Sb, Sn, Zn, and Ag-$TiO_2$ particles. However, development rates of C. gigas after 24 hours exposure to 20ppm of In, Sb, Sn, Zn, Ag-$TiO_2$ were 57%, 60%, 50%, 65%, and 64% respectively.

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Development and Growth of Larvae of Four Bivalve Species (4종 조개류 유생의 발생과 성장)

  • 허영백;허성범
    • Journal of Aquaculture
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    • v.13 no.2
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    • pp.119-128
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    • 2000
  • Exposure to air and increased temperature induced successful spawning in Mytilus edulis, M. coruscus Crassostrea gigas and Pinctata fucata martensii. Developmental durations required for an egg to attain D-shaped larva and the D-shaped larva to reach pediveliger stage were estimated in these bivalves. Size of fertilized eggs was the largest (70.3 ${\mu}m$) in M. coruscus and the smallest (45.3 ${\mu}m$) in P. fucata martensii. At 17$^{\circ}C$, M. edulis and M. coruscus attained D-shaped larval stage within 48 hours after fertilization but those of C. gigas and B. fucata martensiii within 24 and 22 hours at 21 and 26$^{\circ}C$, respectively. The development duration required for a D-shaped larva to attain pediveliger stage was the longest (27 days) in M. coruscus and ranged between 20 and 22 days for the others. The shell length of the pediveliger was the longest (274.9 ${\mu}m$) in C. gigas and smallest (190.9 ${\mu}m$) in P. fucata martensii Length and height of larval shell was highly correlated with each other in all the 4 species. The shell height of C. gigas was more than the shell length beyond the size of 100 ${\mu}m$ shell length. However, shell length of the others was always longer than shell height at the larval stage.

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A Study on Bio-Monitoring Systems using Shell Valve Movements of Pacific Oysters (Crassostrea gigas) in response to Abnormal High Water Temperature (이상 고수온에 반응하는 이매패류 참굴(Crassostrea gigas)의 패각운동을 활용한 생물모니터링시스템 연구)

  • Moon, Suyeon;Kim, Dae Hyun;Yoon, Yang Ho;Oh, Seok Jin
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.23 no.1
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    • pp.91-97
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    • 2017
  • This study contains research on a bio-monitoring system (BMS) capable of detecting abnormal high water temperatures, the shell valve movements (SVMs) of Pacific oysters (Crassostrea gigas), which were measured at four different temperature (5, 10, 20 and $30^{\circ}C$) under laboratory conditions. All the Pacific oysters were kept under fasting conditions for 3 days to prevent the influence of food and excretions before the onset of the experiments. SVMs did not detect at $5^{\circ}C$. However, SVMs increased with an increase in temperature (at $10^{\circ}C$ : $6.31{\pm}2.18times/hr$ and at $20^{\circ}C$: $22.0{\pm}10.0times/hr$). At $30^{\circ}C$, SVMs were divided into two groups: those with no SVMs as at $5^{\circ}C$ and those with SVMs similar to conditions at $20^{\circ}C$($23.9{\pm}9.35times/hr$). This indicates oyster shells maintain a closed condition due to a decrease in metabolism at $30^{\circ}C$, although some Pacific oysters had active SVMs due to an increase in metabolism. If a BMS using the SVM status of Pacific oysters was installed to monitor abnormal high water around oyster farms, early warning levels and serious alerts might be made available more rapidly for SVMs of more than ca. 30 times/hr and closing conditions in a matter of hours, respectively. Therefore, a BMS using the SVMs of Pacific oysters might be an effective early warning system for abnormal high water temperatures.