• Title/Summary/Keyword: Crassostrea gigas (oyster)

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Effect of Polycyclic Aromatic Hydrocarbon (PAH) on Shell Repair in the Pacific oyster, Crassostrea gigas

  • Cho, Sang-Man;Lee, You-Me;Jeong, Woo-Geon
    • The Korean Journal of Malacology
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    • v.27 no.1
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    • pp.35-42
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    • 2011
  • In order to understand effect of polycyclic aromatic hydrocarbon (PAH) on shell repair of the Pacific oyster, Crassostrea gigas, shell regeneration experiments were carried out using oysters drilled a hole on the right valve. The change of pH and hemocytic characteristics in both extrapallial fluid and hemolymph were observed during the shell repair. The thickness of mantle tissue was apparently decreased, while necrosis in epithelium and periostracal gland was increased in response to PAH exposure. Our finding suggested that PAH could adversely influence on shell repair.

Processings and Quality Characteristics of the Oyster Sauce from IQF Oyster Crassostrea gigas (개체동결 굴(Crassostrea gigas)을 이용한 굴소스의 제조 및 품질특성)

  • Hwang, Young-Suk;Kim, Sang-Hyun;Kim, Byeong-Gyun;Kim, Seon-Geun;Cho, Jun-Hyun;Oh, Kwang-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.48 no.6
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    • pp.833-838
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    • 2015
  • To develop a value-added product from individually quick-frozen oyster Crassostrea gigas extract (IQFOE), we prepared two types of oyster sauce (OS): bottled OS (BOS) and retort pouched OS (ROS). We investigated processing conditions, quality metrics and flavor compounds in each type of sauce. We found that the most appropriate base formular for both BOS and ROS consisted of 40.0% IQFOE (Brix $30^{\circ}$), 15.0% sugar, 6.0% salt, 4.0% monosodium glutamate, 4.0% soy sauce, 3.5% starch, 3.0% yeast extract, 3.5% wheat flour and 21.0% water. The crude protein, salinity and amino-nitrogen contents of the BOS and ROS were 8.2 and 8.3%, 9.3 and 9.2%, and 539.2 and 535.2 mg/100 g, respectively. In commercial oyster sauces (COS), these values were 4.7-6.5%, 9.7-12.0%, and 244.7-504.2 mg/100 g, respectively. The total free amino acids content of ROS was 7,346.9 mg/100 g, and the main free amino acids were glutamic acid, taurine, proline, glycine and alanine. The inosinic monophosphate (IMP) content of the ROS was 131.6 mg/100 g, and the primary inorganic ions were Na, K, S and P. The present BOS and ROS have favorable organoleptic qualities and storage stability compared with COS, and are suitable for commercialization as high-flavor seasoning sauces.

Identification of the Food Sources-Metabolism of the Pacific Oyster Crassostrea gigas using Carbon and Nitrogen Stable Isotopic Ratios

  • Yang, Jin-Yong;Shin, Kyung-Hoon
    • Korean Journal of Environmental Biology
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    • v.27 no.3
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    • pp.279-284
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    • 2009
  • In order to understand food sources-metabolism for the pacific oyster (Crassostrea gigas), the stable isotope ratios of carbon (${\delta}^{13}C$) and nitrogen (${\delta}^{15}N$) of its gut, gill, and muscle as well as potential food sources (particulate organic matter, sedimentary organic matter, benthic microalgae, seagrass detritus) were determined in Dongdae Bay. Average ${\delta}^{13}C$ and ${\delta}^{15}N$ values reflect that oysters primarily fed on sedimentary organic matter as opposed to suspended organic matter during summer and winter seasons. However, the relatively enriched $^{15}N$ values of particulate organic matter (>$250{\mu}m$) and sedimentary organic matter in the summer may be due to the photosynthetic incorporation of $^{15}N$-enriched nitrogen (DIN) or the spawning events of bivalves. Specific oyster tissues (gut, gill, and muscle) revealed different metabolic pathways, which were determined through analysis of ${\delta}^{13}C$ and ${\delta}^{15}N$ in each organ. The present results suggest the determination of carbon and nitrogen stable isotopes to be a useful approach in ecological research related to the food sources- metabolism of Crassostrea gigas.

Seasonality of shellfish gathering using oxygen isotope analysis of Crassostrea gigas from the Neolithic Yeondae-do shell midden site, Tongyeong, Korea (산소동위원소 분석을 이용한 신석기시대 연대도 패총의 굴 (Crassostrea gigas) 채집 계절성 연구)

  • An, Deogim;Lee, Insung
    • The Korean Journal of Malacology
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    • v.31 no.1
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    • pp.43-48
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    • 2015
  • Oxygen isotope ratios (${\delta}^{18}O$) of three Pacific oyster (Crassostrea gigas) specimens from the Neolithic Yeondae-do shell midden site, Tongyeong, Korea, were analyzed to determine the seasonality of shellfish gathering and site occupation. Oxygen isotope samples were taken from the left valve hinge sections of the specimens. Oxygen isotope values ranged between -0.1 ‰ and -2.4 ‰, between -0.2 ‰ and -2.9 ‰, and between 0.3 ‰ and -2.8 ‰ in oyster specimen #one, #two and #three, respectively. The isotope profiles showed seasonal temperature cycles, providing information related to the seasonality of shellfish gathering and site occupation. Hinge-edge oxygen isotope values of the specimens showed decreasing trends after passing through maximum values (winter), indicating that they formed during spring. Thus it can be assumed that during spring season, oysters were gathered and the site was occupied.

The Production Efficiency of Cupped Oyster Crassostrea gigas Sprat According to Clutch and Growth Comparing Diploid and Triploid Oysters in Off-bottom Culture for Tidal Flat Utilization (갯벌참굴 (Crassostrea gigas) 양식을 위한 부착기질별 하나굴 종묘 생산과 수평망식 시설을 이용한 배수체별 치패 성장 비교)

  • Lim, Hyun-Jeong;Lee, Tae-Seek;Cho, Pil-Gue;Back, Sang-Ho;Byun, Soon-Gyu;Choi, Eun-Hee
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.44 no.3
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    • pp.259-266
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    • 2011
  • To produce cupped oyster sprat consistently, we investigated the efficiency of nine settlement substrates using selective breeding of Pacific oyster Crassostrea gigas, with the goal of popularizing off-bottom culture on the west coast of Korea. We also compared the growth and survival of selectively bred sprat (diploid) with triploid sprat from an off-bottom culture system. Considering, the attachment rate and detachment efficiency, producing cupped oyster in a polypropylene gunny bag proved to be the most effective method. There were no differences in shell growth or total weight between the diploids from selective breeding and triploids from off-bottom culture for 5 months. However, the survival rate was 8 times higher in the diploids than the triploids. Transplanting sprat from selective breeding is one way to restore oyster farms and nurture off-bottom culture along the west coast.

Comparison of Recruitment and Growth Patterns of Pacific Oysters (Crassostrea gigas) between a Natural Rocky Shore and Farming Substrate Within an Oil Spill Contaminated Area of Korea (원유 유출 지역에서 자연암반과 양식 기질에 서식하는 참굴(Crassostrea gigas)의 초기 가입 특성 및 성장 비교)

  • Lee, Hye-Mi;Yoon, Kon-Tak
    • Ocean and Polar Research
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    • v.36 no.2
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    • pp.145-156
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    • 2014
  • Macrobenthic biodiversity in the rocky intertidal areas of the Tae-an region, Republic of Korea, has decreased since the Hebei Spirit oil spill in December 2007. We aimed to investigate ecological roles of Pacific oyster (Crassostrea gigas) because recruitment and growth of oysters are critical to the recovery of damaged rocky shore ecosystem. We surveyed two sites monthly: natural rocky substrate and farming substrate, from July 2012 to January 2013 to identify and compare the changes in macrobenthic fauna. The abundance of young oysters was higher at the natural site. On the other hand, the mean height of oyster on the farming substrate was more than twice as great. The abundance of oyster at the natural site increased until October and then continuously decreased until end of study period. However, the abundance of oyster at the farming site constantly decreased from the beginning of study period. These different growth patterns might be attributable to spatial competition between oyster and a barnacle species (Balanus albicostatus) and environmental factors. At the natural site, physical stress factors including dramatic temperature changes and desiccation a few of the major factors limiting growth during aerial exposure. In addition, motile macrobenthos could be detrimental to oysters because they interrupt filter-feeding activities and hence hamper the growth of oysters. We show the higher recruitment of oysters at the natural site and healthy growth in the farming substrate are due to complicated differences in physical and biological stress factors.

Processing and Quality Characteristics of Retort Pouched Oyster Soup from IQF Oyster Crassostrea gigas (개체동결 굴(Crassostrea gigas)을 이용한 레토르트파우치 굴국의 제조 및 품질특성)

  • Hwang, Young-Sook;Cho, Jun-Hyun;Hwang, Seok-Min;Kim, Sang-Hyun;Kim, Byeong-Gyun;Oh, Kwang-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.49 no.6
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    • pp.772-778
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    • 2016
  • To develop a value-added product from individually quick-frozen oysters Crassostrea gigas (IQFO), we prepared a retort pouched oyster soup (RPOS) from IQFOs and characterized its processing conditions and quality metrics. We found that the most appropriate manufacturing process for the RPOS consisted of half-thawing and washing raw IQF oysters, blanching, adding them to the retort pouch along with other ingredients (base soup stock, IQF oyster extract, radish, bean sprouts, garlic, and red pepper), sealing, retort sterilization ($120^{\circ}$, F0-value 10 min.), cooling, and packaging inspection. The moisture, crude protein, pH and salinity of the RPOS were 91.0%, 2.8%, 6.20 and 0.9%, respectively. The total amino acid content of the RPOS was 2,163.8 mg/100 g, and the main amino acids were glutamic acid, aspartic acid, leucine, proline, lysine and arginine. The primary inorganic ions were Na, K, S and Zn. In taste compounds, total free amino acid content was 313.4 mg/100 g, and the main free amino acids were glutamic acid, taurine, proline, hydroxyproline, aspartic acid, glycine, alanine, valine, lysine and arginine. This RPOS has good storage stability and organoleptic qualities compared with commercial retort pouched shellfish soup, and is suitable for commercialization as a value-added instant seafood soup.

Variations in Reserved Nutrient Consumption and Growth of Pacific Oyster (Crassostra gigas) Larvae during Starvation (참굴 (Crassostrea gigas) 유생의 절식에 따른 성장 및 체내 에너지원의 소비변화)

  • Hur, Young-Baek;Kim, Tae-Eic;Lee, Seung-Ju;Hur, Sung-Bum
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.43 no.5
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    • pp.489-494
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    • 2010
  • The nutritional demand of oyster larva (Crassostrea gigas) were investigated to determine the optimal culture conditions and improve micro-algae utilization. Changes in nutrients and shell growth were examined in fed and 96-h (48 h in late umbone stage) oysters at four larval stages. Shell growth increased significantly in D shape larvae, regardless of feeding variations. No growth was observed in starved larvae, except in shell length of umbone (to 11.9 ${\mu}m$). Fed larvae showed significant growth in all development stages (P < 0.05). During starvation, lipids were most significantly decreased in all larval stages (by 76.8%, 68.3%, 76.3%, and 40.3%, respectively), followed by protein (41.1%, 31.1%, 33.1%, 16.7%) and nitrogen-free extracts (40.8%, 24.3%, 36.9%, 20.1%), Gross energy (kcal/g) consumption in each larval stage was 49.6%, 35.1%, 39.1%, and 20.4%, respectively. Our results indicate that lipids are the most important energy source during the early larval development stages of C. gigas.

Survival Rates of Trochophores from Pearl Oyster, Pinctada fucata martensii and Pacific Oyster, Crassostrea gigas Immersed in Pour Kinds of Cryoprotectant (4종류의 동해 방지제에 침지 한 진주조개, Pinctada fucata martensii와 참굴, Crassostrea gigas 담륜자의 생존율)

  • CHOI Youn Hee;CHANG Young Jin
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.4
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    • pp.476-480
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    • 1999
  • Experiments were carried out to evaluate the tolerance of trochophores for pearl oyster, Pinctada fucata martensii and Pacific oyster, Crassostrea gigas using different concentrations of cryoprotectants : dimethyl sulfoxide (DMSO), ethylene glycol, glycerol and 1,2-propanediol. Each cryoprotectant with different concentrations was exposed for 5, 10, 15 and 20 minutes of immersion time. Survival rates were increased with decreased concentrations of cryoprotectant and decreased immersion time, and these differed from types of cryoprotectant. Survival rates of Pacific oyster trochophores were higher in DMSO and ethylene glycol, while those of pearl oyster trochophores were higher in glycerol and 1,2-propanediol. In case of trochophores from Pacific oyster, when 0.2 M sucrose was added in each cryoprotectant the survival rates were increased significantly.

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Effects of Lactobacillus brevis BJ20 Fermentation on the Antioxidant and Antiinflammatory Activities of Sea Tangle Saccharina japonica and oyster Crassostrea gigas (Lactobacillus brevis BJ20를 이용한 굴(Crassostrea gigas).다시마(Saccharina japonica) 발효 분말의 항산화 및 항염증 활성 효과)

  • Kang, Young Mi;Woo, Nam-Sik;Seo, Yong Bae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.46 no.4
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    • pp.359-364
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    • 2013
  • Inordinate stress causes disorders of various systems in humans and activates defense mechanisms to maintain homeostasis in the body. Sleep is a vital, highly organized process regulated by complex systems of neuronal networks and neurotransmitters. Sleep is an essential biological process whose underlying regulating involves numerous anatomical structures and biochemical substances that can be compromised by stress and by the immune system. Gamma-amino butyric acid (GABA) is the main inhibitory neurotransmitter of the central nervous system, and activation of GABAA receptors is known to favor sleep. This study was conducted to evaluate the possible application of Lactobacillus brevis BJ20 fermentation to improve the functional qualities of sea tangle Saccharina japonica and oyster Crassostrea gigas. Antioxidant activity was determined by assaying levels of radical scavenging activity against 1,1-diphenyl-2-picrylhydrazyl (DPPH) and superoxide. L. brevis BJ20 fermentation of sea tangle and oyster enhanced both antioxidant and antiinflammatory activities. These results suggested that L. brevis BJ20 fermented sea tangle and oyster could be used for alleviation of stress and to promote sleep.