• 제목/요약/키워드: semisulcospira libertina libertina

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유기농업 논에서 저서성대형무척추동물의 다양성 (Biodiversity of Benthic Macroinvertebrate on Organic Rice Paddy Field)

  • 김종선;김도익;김선곤;강범용;고숙주;임경호;김홍재
    • 한국유기농업학회지
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    • 제17권2호
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    • pp.193-209
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    • 2009
  • 조사지역에서 출현한 저서성대형무척추동물은 총 3문 5강 13목 25과 32속 36종이었는데, 출현한 분류군별 양상을 보면 주로 정수역에서 출현하는 종들이 많았지만 일반적으로 유수역에서 출현하는 다슬기나 재첩, 각다귀 등도 출현하였다. 유기농법 지역에서 출현한 분류군은 3문 4강 12목 22과 27속 28종이었고, 관행농법을 하는 지역에서 출현한 분류군은 3문 5강 10목 19과 23속 25종으로 유기농법 지역에서 3종이 더 출현하였다. 출현 분류군별 특성은 크게 유의한 결과를 찾기 힘들었고, 관행농법지역에서 출현하지 않았으나 유기농법 지역에서만 출현한 종이 11종이었고, 관행농법 지역에서만 출현한 종이 8종이었다. 개체수는 두 지역간에 큰 차이가 있었는데, 관행농법 지역에서는 245개체가 출현한 반면 유기농법 지역에서 총 870개체가 출현하여 3.6배 이상 높게 나타났다. 종 다양도 지수는 1차 조사에서 관행농법 지역은 1.53-2.21의 범위와 유기농법 지역은 1.57-2.45의 범위를 나타내었다. 2차 조사에서는 각각 1.90-2.74와 0.71-2.61의 범위를 나타내어 우점도와 반대의 결과를 보여주었다.

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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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