• 제목/요약/키워드: Chlamys farreri

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비단가리비 종묘생산을 위한 연구 1. 산란, 발생 및 유생사육 (A Study on Seedling Production of Jicon Scallop, Chlamys farreri 1. Spawning, Development and Rearing of Larvae)

  • 나기환;정우건;조창환
    • 한국양식학회지
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    • 제8권4호
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    • pp.307-316
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    • 1995
  • 최근 비단가리비가 새로운 양식품종으로 관심이 높다. 자연에서의 치패는 절대 부족하므로 인공종묘 생산이 필수적이다. 1993년 7월부터 1994년 5월까지 거제군 장목면 실전리 지선과 통영해역에서 수집한 모패로 인공종묘 생산을 시도했다. 산란은 수온이 상승하는 3월부터 고수온기에 걸쳐 간헐적으로 일어났고 산란성기는 7월로 간주되었다 간출자극, 온도자극, 화학자극을 단독 또는 병행실시하여도 성숙상태만 좋으면 어느 경우에도 산란유발에는 어렵지 않았다. 그 중, serotonin 주사에 의한 화학자극에다 간출, 온도자극을 병행한 방법이 가장 효과가 있었다. 수정난의 수용밀도는 부화율에 많은 영향을 미쳤는데 정상적인 발생을 위 한 밀도는 1ml 당 $30\~40$개이었다. 부착기 유생의 평균각장은 $155{\mu}m$ 였으며, 수정에서 부착기유생까지는 수온 11.5\~13.0^{\circ}C$에서 27일이 소요되었다. 먹이생물은 Isochrysis galvana와 Chaetoceros calcitrans 이었다. 사육시의 유생의 적정밀도는 10 마리/ml이었다.

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Seasonal Changes in Biochemical Components of the Adductor Muscle, Digestive Diverticula and the Ovary in Female Chlamys farreri in Relation to the Ovarian Developmental Phases

  • Kim, Hyun-Jin;Chung, Ee-Yung;Park, Ki-Yeol;Kim, Eun-Jong
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2005년도 제20차 학술대회 논문집
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    • pp.51-51
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    • 2005
  • We inestigated the reproductive cycle with ovarian development of Chlamys farreri by histological observations, and seasonal changes in biochemical components of the adductor muscle, digestive diverticula and ovary were studied by biochemical analysis. The reproductive cycle of this species can be classified into five successive stages: early active stage (January to March), late active stage (March to April), ripe stage (April to August), partially spawned stage (June to August) and spent/inactive stage (August to January). According to ANOVA test, there were significant differences (p<0.05) in total protein, total lipid and glycogen contents among months for all of the adductor muscle, digestive diverticula and ovary. Total protein contents in ovary and digestive diverticula showed significant changes(ANOVA, p<0.05) during the study period, while that in the adductor muscle did not. Total protein content was highest in the adductor muscle, followed by ovary, and lowest in digestive diverticula. There was no correlation in total protein content between the adductor muscle and digestive diverticula (p=0.220). But strong positive correlation was found between adductor muscle and ovary (r=0.450, p=0.013). ANOVA showed that there were significant differences in total lipid and glycogen contents among months for all of the adductor muscle, ovary, and digestive diverticula (p<0.05). The monthly changes in total lipid content were highly variable in ovary and digestive gland. High contents of total lipid were foung during April and May-June in ovary, while March and June-July in digestive diverticula. There was a strong negative correlation in total lipid content between ovary and digestive diverticula (r=- 0.397, p=0.030). Unlike total protein of total lipid, glycogen content in the adductor muscle was most dynamic. It showed more than 36-fold changes in the adductor muscle (at most 3-fold change in ovary) during the study period. Glycogen content was higher during May-July in the adductor muscle, While it was higher in March and august in digestive diverticula. There was a strong negative correlation in glycogen content between the adductor muscle and digestive diverticula (r=-0.584, p=0.001).

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미색동물 및 패류의 Carotenoids 색소성분과 돌연변이 및 종양세포 증식의 억제효과 (Carotenoids Components of Tunicata, Shellfishes and Its Inhibitory Effects on Mutagenicity and Growth of Tumor Cell)

  • 하봉석;백승한;김수영
    • 한국식품영양과학회지
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    • 제29권5호
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    • pp.922-934
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    • 2000
  • To investigate the composition of carotenoids present in marine organisms and the biological activity of the carotenoids, carotenoids of the muscles and tunic of tunicates and shellfishes were isolated and identified. Anitmutagenic activities of the carotenoids for S. typhimurium TA 98 and cytotoxic activity for cancer cell lines were determined. Total carotenoid contents in the muscle of tunicata ranged from 18.65 mg% to 2.39 mg%. The highest amount of the total carotenoid was found in the muscle of Halocynthia aurantium, followed by Styela clava (HERDMAN), H. roretzi, H. hilgendorfi f. igaboya, H. hilgendorfi f. retteri, S. plicata (LESUEUR) in order. Interestingly, total carotenoid content in the muscle of S. clava (HERDAMAN) was higher than that of H. roretzi. Total carotenoid content of all tunicata, other than H. aurantium and H. roretzi, were higher in muscle than tunic. The major carotenoids in H. roretzi, H. aurantium, S. plicata (LESUEUR), and S. clava (HERDAMAN) were cynthiaxanthin (25.1∼42.2%), halocynthiaxanthin (9.7∼26.3%), diatoxanthin (8.0∼18.7%) and β-carotene (7.7%∼21.7%). Similarly, cantaxanthin (19.6%), cynthiaxanthin (15.4%), halocynthiaxanthin (14.8%), and (3R, 3'R), (3S, 3'S)-astaxanthin (22.6%) in H. hilgendorfi f. retteri and fucoxanthin (26.6%), cynthiaxanthin (21.8%), halocynthiaxanthin (15.2%), and β-carotene (9.3%) in H. hilgendorfi f. igaboya were major carotenoids in both tunicate. However, the composition of carotenoids in muscle and tunic of tunicata was similar each other. Among the shellfishes examined, total carotenoid content of the muscle of Peronidia venulosa (Schrenck) and Corbicula fluminea, and of the gonad of Atrina pinnata and Chlamys farreri, was ranged from 2.51 to 6.83 mg% which were relatively higher than that of other shellfishes. The composition of the carotenoids of shellfishes, which might depend upon their living environments, was varied. But cynthiaxanthin (15.9∼39.0%) and zeaxanthin (9.6∼21.9%) in gonad of C. farreri, and muscles of Buccinum Volutharpa perryi (JAY) and Crassostrea gigas, cynthiaxanthin (21.5∼48.6%) and mytiloxanthin (14.6%) in muscle of C.fluminea and gonad of A. pinnata, and canthaxanthin (60.6%) and isozeaxanthin (20.5%) in muscles of P. venulosa (Schrenck), and β-carotene (23.7%∼37.8%) and zeaxanthin (18.2∼20.4) in muscles of Semisulcospira libertina and Meretrix lusoria were major carotenoids. Interestingly, diester type-carotenoids were present along with free type-carotenoids in muscles of C. gigas. antimutagenic effect of the carotenoids isolated from tunicata and shellfishes against 2-amino-3-methylimidazol [4,5-f]quinoline (IQ) for S. typhimurium TA 98 was proportional to the amount (20, 50 and 100㎍/plate) treated. Mutagenicity of IQ was significantly reduced by astaxanthin, isozeaxanthin, mytiloxanthin and halocynthiaxanthin, whereas the mutagenicity of aflatoxin B₁(AFB₁) was significantly reduced by β-carotene, isozeaxanthin, and mytiloxnthin. Growth inhibition effect of carotenoids isolated from tunicata and shellfishes for cancer cell was proportional to the amount (5, 10, and 20㎍/plate) treated. The growth of HeLa cell by β-carotene, cynthiaxanthin, astaxanthin and halocynthiaxanthin, NCI-H87 cell by β-carotene, astaxanthin, cynthiaxanthin, and halocynthiaxanthin, HT-29 cell by β-carotene, cynthiaxanthin, mytiloxanthin and halocynthiaxanthin, and MG-63 cells by β-carotene, cynthiaxanthin, astaxanthin, canthaxanthin and halocynthiaxanthin were statistically reduced.

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광합성 섬모류 Mesodinium rubrum MR-MAL01의 응용성(1) 이매패류 종묘생산을 위한 먹이생물 유용성 (Applicability of a Photosynthetic Ciliate, Mesodinium rubrum MR-MAL01 -Usefulness as a Live Prey Species for the Marine Aquaculture of Bivalves-)

  • 김형섭;명금옥;조수근;이원호
    • 한국양식학회지
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    • 제17권2호
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    • pp.115-121
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    • 2004
  • 최근, 곰소만에서 채집한 시료로부터 최초의 온대역산 광합성 섬모류 Mesodinium rubrum MR-MAL01 배양체를 분리ㆍ배양하였다. 이 섬모류를 이용하여 이매패류의 섭식실험을 수행한 결과, 비단가리비와 바지락과 같은 이매패류가 섬모류를 직접 섭식 하였음을 확인하였는데, 개체 당 최대 섭식률은 비단가리비 9,590 cells $min^{-1}$, 바지락 23,200 cells $min^{-1}$으로 나타났다. 또한 비단가리비의 소화관에서 완전한 M. rubrum세포를 확인하지 못했으나, 파괴된 세포로 생각되는 작은 입자들을 관찰하였다. 바지락 치패에 섬모류인 M. rubrum과 미소조류인 Isochrysis galbana (KMCC H-2)를 공급하면서 28일 동안 사육한 결과, 작은 치패 그룹(각장 0.46 mm)에서는 I. galbana를 공급한 실험구가 좋은 성장을 보였던 반면, 큰 치패 그룹(각장 0.84 mm)에서는 M. rubrum을 공급한 실험구가 I. galbana를 공급한 실험구에 비해 성장이 좋았다. 따라서 이 광합성 섬모류는 이매패류의 치패 및 모패와 입이 작은 자어의 먹이생물, rotifer의 영양강화제 및 어류의 천연 착색제로도 활용할 수 있는 잠재력이 있어 해양 생물공학적 활용을 위한 생물재료로서 개발 가능성을 제안한다.