• 제목/요약/키워드: Fish stock

검색결과 143건 처리시간 0.023초

인위적 성숙 유도된 뱀장어 Anguilla japonica의 자연산란에 의한 난발생과 Pre-leptocephalus 자어의 발달 (Development of the Eggs and Pre-Leptocephalus Larvae by Natural Spawning of Artificially-Matured Japanese Eel, Anguilla japonica)

  • 김대중;강언종;배준영;박민우;김응오
    • 한국양식학회지
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    • 제20권3호
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    • pp.160-167
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    • 2007
  • 극동산 뱀장어의 자연 수정란을 이용하여 $23{\pm}0.5^{\circ}C$의 여과 해수가 공급되는 실내수조에서 난발생과 pre-leptocephalus 자어발달을 관찰하였다. 친어 관리에 있어서 암컷은 연어 뇌하수체 추출물(20 mg/fish)과 수컷은 HCG (1 IU/g BW)를 매주 복강 주사하여 인위적인 성성숙 및 자연산란을 유도하였다. 수정란은 직경 1.0 mm 정도의 분리 부성란으로, 전형적인 반상분할(discoidal cleavage)을 통해 분할이 이루어졌다. 부화는 $23^{\circ}C$의 여과 해수에서 수정 후 38시간부터 개시되었다. 부화 직후의 자어는 전장 약 3.0 mm, 근절수는 평균 42개였다. 부화자어의 입과 항문은 부화 후 4.5일째에 열렸고, 난황은 부화 후 6.5 일째에 거의 흡수되었다. 자어는 14.5일 동안 생존하였고, 이때 전장 $5.87{\pm}0.25mm$, 근절은 98개였다. 그러나 수정란과 prelaptocephalus 자어발생의 형태학적 특징은 자연수정과 건식법에 의한 인공수정과 큰 차이점은 없었다.

대구 Gadus macrocephalus 이석 표지를 위한 Alizarin Complexone의 최적 농도 (Optimum Concentration of Alizarin Complexone (ALC) for Otolith Marking of Pacific Cod Gadus macrocephalus)

  • 김태진;이소광;곽우석
    • 한국어류학회지
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    • 제20권4호
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    • pp.272-278
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    • 2008
  • 본 연구는 방류 대상종인 대구의 이석에 ALC 표지 가능 여부, 표지 적정농도 및 순간성장률을 비교 분석하여 수산 종묘 표지방류 연구에 대한 기초자료를 제공하고자 수행하였다. 전장이 작은 대구 치어($34.1{\pm}1.8mm$, $mean{\pm}SD$)의 경우 ALC 농도를 0, 20, 40, 60, 80 mg/L로, 전장이 큰 치어($73.8{\pm}1.2mm$, $mean{\pm}SD$)의 경우 ALC 농도 1, 5, 10, 20, 40 mg/L로 각각 5개 실험구를 설정하여 24시간 침적한 후 14일간 사육하면서 관찰하였다. 표지 이석을 UV light 현미경(G필터)으로 관찰한 결과 이석 표면에는 붉은색 계통의 원형띠를 형성하며 ALC가 염색 되었다. 작은 크기 치어는 모든 실험구에서 이석에 ALC가 염색 되었고, 최저 농도인 20 mg/L에서 조사한 10개체 모두 '선명함' 이상으로 판정되었으며, 각각의 실험구에 대한 실험 전후 체중과 성장률의 차이는 유의하지 않았으나 사망률은 농도가 높아지며 높아졌다. 크기가 큰 대구 치어는 10 mg/L 이상의 농도에서 1개체를 제외한 모든 개체에서 염색 정도가 '선명함' 이상으로 판정되었으며, 실험기간 동안 모든 개체가 생존하였다. 대구 방류 효과를 추적하기 위한 이석의 ALC 염색에서는 크기가 큰 치어를 대상으로 10 mg/L의 농도가 적정농도로 추정되었다.

부산물을 이용한 꽃게 통발용 미끼의 유인 효과 (Attracting effect of baits used the by-product for swimming crab Portunus trituberculatus pots)

  • 장호영;구재근;이근우;조봉곤;정병곤
    • 수산해양기술연구
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    • 제44권4호
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    • pp.282-293
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    • 2008
  • In order to develop the substitutive materials for natural baits of swimming crab pots, the attracting effects of swimming crab such as the preference of baits which were made of the by-products of marine and stock raising through the water tank experiments and fishing experiments. On the investigation of mean entrapped catch number to the pot by the baits after putting the 4 kinds of baits, mackerel(M), mackerel with grinded mackerel s internals($MM_I$), mackerel with tuna s internals$MM_I$) and makerel with grinded krill(MK) each in one pot by turns, $MM_I$ and MK were entrapped mean 3.9(13.0%) and they were a little more comparing to M, and $MT_I$ is least with mean 2.1(7.0%)(F=12.913, P < 0.05). Otherwise, on the preference investigation of swimming crabs by the baits after putting the 4 kinds of baits in the 4 pots each, M was entrapped mean 3.0(10%), but $MM_I$, $MT_I$ and MK were mean 1.2(4.0%), 1.0(3.3%) and 1.5(5.0%) each and they were only 30-50% of M(F=13.398, P < 0.05). On the preference investigation of swimming crabs by the 5 kinds of baits, mackerel(M), and krill(K), manila clam($M_C$), pig s fat($P_F$) and chicken s head($C_H$) which were used in substitutive baits, M was entrapped mean 3.2(10.7%), but K was about 50% of catch of M with mean 1.6(5.3%), and $M_C$, $P_F$ and $C_H$ were very few with mean 0.1-0.2(0.3-0.7%)(F=89.186, P < 0.05). On the preference investigation of swimming crabs by the pots which were put each the 3 kinds of baits, original krill(K), grinded krill with gluten and soybean oil cake($K_GGS$) and grinded krill with gluten, soybean oil cake and glycine($K_GGSG_L$) in the blue fluorescent hexahedral plastic bait cages(BF), and which were put the mackerel(M) in the non-fluorescent hexahedral red plastic bait cage($RF_N$), it was entrapped mean 3.0(10.0%) in the pot which was put the mackerel in the $RF_N$, and the same level in the pots which were put the K and $K_GGSG_L$ in the BF, but it was mean 2.0(6.7%) in the pots which was put the $K_GGS$ in BF and it was decreased by 30% of catch comparing to $RF_N$(F=3.750, P < 0.05). On the preference investigation of swimming crab by the pots which was put grinded tuna with gluten, soybean oil cake and glycine($T_IGSG_L$) in the blue fluorescent hexahedral plastic bait cage(BF), and which was put mackerel(M) in the nonfluorescent hexahedral red plastic bait cage($RF_N$), it was entrapped mean 3.3(11.0%) in the pot which was put mackerel in $RF_N$, and mean 2.7(9.0%) in the pot which was put $T_IGSG_L$ in BF and it was about 15% less comparing to use bait M(t=1.387, P < 0.05). As a results of fishing experiments, a plan for enhancing catching efficiency of $T_IGSG_L$ will be required because catching efficiency of $T_IGSG_L$, alternative bait, was half of fish catching efficiency of natural bait using mackerel. Fishing experiments were conducted 3 times using reinforced substitutive artificial bait that is reinforced attractive effect of $T_IGSG_L$ and composed of tuna intestine, grinded mackerel, gluten, soybean cake, glycine and alanine($T_IM_GGSG_LA$). Catching efficiency of $T_IM_GGSG_LA$ was about 80% of that of natural bait made of mackerel.