• 제목/요약/키워드: optimal rearing period

검색결과 19건 처리시간 0.028초

서로 다른 온도 조건에서 연못하루살이(Cloeon dipterum: 꼬마하루살이과, 하루살이목) 유충의 성장 (Larval Growth of Cloeon dipterum(Ephemeroptera: Baetidae) in Different Temperature Conditions)

  • 황정미;이성진;배연재
    • 환경생물
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    • 제23권2호
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    • pp.114-119
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    • 2005
  • 실험실 내의 4개의 항온조건$(10^{\circ}C,\;15^{\circ}C,\;20^{\circ}C,\;and\;25^{\circ}C)$에서 연못하루살이 (Cloeon dipterum)유충의 생존율, 생장률, 발달률, 성충 우화율을 연구하였다. 사육 시작 1주 동안 유충의 사망률이 상대적으로 높았으나, 그 이후 안정되는 경향을 보였다. 온도에 따른 생장률 및 발달률로부터 판단하여 볼 때, 유충 생장과 발달의 적정온도는 $20^{\circ}C$$25^{\circ}C$사이일 것으로 추정되었다. 우화하기까지 소요되는 유충의 기간은 100일 이내 일 것으로 추정되었다.

Feeding of Juvenile Purple Washington Clam, Saxidomus purpuratus (Sowerby): Effects of Algal Concentration and Temperature

  • Lee, Chang-Hoon;Choi, Yong-Suk;Bang, Jong-Deuk;Jo, Soo-Gun
    • 한국양식학회지
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    • 제15권4호
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    • pp.253-260
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    • 2002
  • To find the optimal rearing conditions for Saxidomus purpuratus juvenile, filtering activity was estimated as functions of algal concentration and temperature by measuring the rates of clearance (CR) and ingestion (IR), when S. purpuratus was feeding. The clams were fed on unialgal diet of Isochrysis galbana at 6 algal concentrations (4.6$\times$$10^4$~2.6$\times$$10^6$ cells/ml) and at 6 temperatures (5, 10, 15, 20, 25, and 30^{\circ}C ). Algal concentration significantly affected the CR and the IR at all temperatures. At lower algal concentrations, CR increased, but decreased beyond a particular concentration. The maximum CR ($CR_{max}$) at 5, 10, 15, 20, 25, and 30^{\circ}C were 0.30, 1.73, 5.95, 15.17, 21.12, and 0.33 $l/g/h$, respectively. Below the level of 5.6$\times$10$^{5}$ cells/ml, IR increased as algal concentration increased, but was saturated at higher concentrations. To maintain high growth rate of S. purpuratus, I. galbana should be supplied with more than 5.6$\times$10$^{5}$ cells/ml. The maximum IR ($IR_{max}$) at 5, 10, 15, 20, 25 and30^{\circ}C were $2.2$\times$10^8, $1.5\times$10^9, 3.4$\times$10^9, 4.9$\times$10^9, 5.3$\times$10^9, and 1.0$\times$10^8$ cells/g/h, respectively. As for temperature, both $CR_max$ and $IR_max$ increased remarkably with raising temperature from 5 to 25^{\circ}C, but rapidly decreased at 30^{\circ}C. Between 15 and 25^{\circ}C $CR_{max} and IR_{max}$ were higher and most stable, At this temperature range, the $Q_{10}/s for CR_{max} and IR_{max}$ were 3.5 and 1.6, respectively. Therefore the optimal thermal range for the juvenile is 15~$25^{\circ}C$. The annual variation in IR$_{max}$ predicted by natural seawater temperature shows that inactive period (with lower $IR_max$) lasts for 5 months (from December to April). To ensure higher growth of juvenile during this inactive period at hatcheries, rearing temperature should be elevated to $15^{\circ}C$.>.

다화성 누에씨(MR, SPT, HM)의 냉장보존 (Cold Storage of Multivoltine Silkworm Eggs.)

  • 박남숙;김상은
    • 한국잠사곤충학회지
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    • 제28권2호
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    • pp.35-37
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    • 1986
  • 수세대의 계대동육에 의해서도 휴면란이 얻어지지 않는 열대성 다화성 누에의 품종보존을 위한 사육회수를 줄이고자 다화성 누에씨(MR, SPT, HM)의 냉장적기, 냉정적온 및 냉장가능기간을 부화비율을 지표로 하여 조사한 바 다음과 같은 결과를 얻었다. 1. 5$^{\circ}C$에서 30일간 냉장한 MR과 SPT의 부화비율은 2일영난냉장구에서 가장 높았고(약 80%), 7일영난냉장구에서 가장 낮았다(5% 이하). 2. 2일영의 HM누에씨를 -2.5, 0.0, 2.5, 5.0, 7.5$^{\circ}C$의 각 온도에 15일-60일간 냉장하여 부화비율을 조사한 결과, 30일 냉장에는 $0^{\circ}C$가 적합하며(91%), 60일 냉장에는 2.5$^{\circ}C$가 적합하였다.(61%) 3. 이상의 결과로부터 다화성 누에의 품종보존을 위해서는 산란 후 2일 경과한 누에씨를 2.5$^{\circ}C$에서 50-60일간 냉장함으로서 연중계대동육회수를 반감시킬 수 있음이 밝혀졌다.

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Ontogenetic Development of the Digestive System in Chub Mackerel Scomber japonicus Larvae and Juveniles

  • Park, Su-Jin;Lee, So-Gwang;Gwak, Woo-Seok
    • Fisheries and Aquatic Sciences
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    • 제18권3호
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    • pp.301-309
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    • 2015
  • Chub mackerel, Scomber japonicus, larvae and juveniles were reared from hatching to 35 days after hatching (DAH), and the development of their digestive systems was histologically investigated. The larvae were initially fed on rotifers and Artemia nauplii starting around 19 DAH, and thereafter on Artemia nauplii, fish eggs, and a formulated feed mixture. The primitive digestive system differentiated at 3 DAH; the digestive tract was distinctively divided into the buccopharyngeal cavity, esophagus, stomach, air bladder, intestines, and rectum. The gastric gland and pyloric caeca first appeared at 5 and 7 DAH, respectively. The stomach was divided into cardiac, fundic, and pyloric regions in the preflexion phase. The number of gastric glands and pyloric caeca, as well as the volume of the gastric blind sac increased markedly, with development continuing into the juvenile stage. The precocious development of the digestive system during the larval period might be related to the early appearance of piscivory, which is able to support high growth potential. The organogenesis results obtained for this precocial species represent a useful tool to aid our understanding of the physiological requirements of larvae and juveniles to ensure optimal welfare and growth under aquaculture conditions, which will improve current rearing practices of this scombrid species.

The preying capacity of mud crab (Scylla tranquebarica Fabricius, 1798) on live amphipods (Grandidierella megnae Giles, 1888)

  • Sulaeman Sulaeman;Herlinah Herlinah;Gunarto Gunarto;Nurfadila Nurfadila;Rosmiati Rosmiati
    • Fisheries and Aquatic Sciences
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    • 제27권3호
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    • pp.195-205
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    • 2024
  • Amphipoda is a benthic fauna occupying aquatic environments that can be used as a live feed for mud crabs. The abundance of amphipods in the water is thought to impact the preying capacity of crablets, which in turn will affect their growth performance. This study aims to determine the preying capacity of the crablet stage of Scylla tranquebarica exposed at different densities (20, 30, and 40 amphipods / 0.5 L) of amphipod, Grandidierella megnae. The preying capacity was estimated by counting the number of amphipods ingested by an individual crablet during the 60-day rearing period. The main parameters measured were daily consumption rate (DCR), Cumulative molting (CM), Feed conversion ratio (FCR), and the specific growth rate of weight (SGR-W). The results showed that the DCR and FCR were not affected by amphipod densities but the higher the amphipod density the higher the SGR-W and CM. Based on this study, 30 amphipods / 0.5 L is recommended as the optimal density to optimize the DCR and improve the growth performance of crablets. It is also proposed that surplus live feed will potentially reduce the cannibalism rate of crablets during weaning. However, more research needs to be carried out to elucidate the benefits of crablet-feeding amphipods in communal systems.

참전복 치패의 최적사육 기술현황 (State of Optimal Rearing Technique on the Abalone (Haliotis discus hannai) Juvenile)

  • 손맹현;이정의;박민우;임한규;김대중;황형규
    • 한국수산과학회지
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    • 제42권6호
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    • pp.621-627
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    • 2009
  • In order to standardize the juvenile abalone rearing technique, we selected sample farms by region in East, West and South coasts of Korea and Jeju island. We also have reviewed previous literature and visited farms to survey on the management of abalone juvenile production, spawning, hatching and so forth. Results of investigation are as follows: The light colors of tanks for larvae breeding are good for a frequent examination of larvae behaviour changes during the breeding period. The tank for the abalone juvenile production is a rectangular form in general and its size should amount to 3.5 m in length and 1.2 m width. It also should be built with proper drainage. The best age and size of adult for juvenile production are 3-6 years old individuals, with 9-12 cm separate burial and 125-150 g average weight. To induce spawning, the use of the exposure on air and ultraviolet ray together was the most effective. The density of larvae by plate should be 150-300 individuals and the proper stocking density was est imated and amount to 10-30 individuals. It has been shown that a correlation between water surface size($X_1$) and number of plates ($Y_1$), when producing abalone juveniles, is quite high and it is described by equation $Y_1=138.88X_1-5,736.8\;(R^2=0.9028)$. In addition, it has also been shown that a correlation between production of abalone juveniles ($Y_2$) and number of plates ($X_2$) is high and it is described by equation $Y_2=4.554X_2+12,493\;(R^2=0.8818)$. In Jindo region where a mass production of juveniles abalone has been done, it was shown, that a correlation between rearing water surface size ($X_3$) and production of juveniles abalone ($Y_3$) is very high and this relationship was described by the equation $Y_3=747.03X_2+94,359(R^2=0.9809)$. It has also been shown that a correlation between water surface size ($X_4$) and production of abalone juveniles ($Y_4$) in nationwide is high and the relationship between this variables was described by equation $Y_4=635.85X_4+99,923\;(R^2=0.9020)$.

Temperature ranges for survival and growth of juvenile Saccharina sculpera (Laminariales, Phaeophyta) and applications for field cultivation

  • Kim, Soo Hong;Kim, Young Dae;Hwang, Mi Sook;Hwang, Eun Kyoung;Yoo, Hyun Il
    • ALGAE
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    • 제36권4호
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    • pp.231-240
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    • 2021
  • Saccharina sculpera is highly valued for human consumption and value-added products. However, natural resources of this kelp have decreased sharply and it is in danger of extinction. Resources recovery through cultivation is being trialed to enable the sustainable use of this species. In this study, the temperature range for survival and optimal growth of juvenile S. sculpera was identified and applied to field cultivation. This study investigated the survival and growth of juvenile S. sculpera under six temperatures (i.e., 5, 10, 15, 16, 18, and 20℃) and two light intensities (i.e., 20 and 40 µmol photons m-2 s-1) in an indoor culture experiment. In these experiments, the blade length decreased at 16℃ under the both light intensities. The thalli died at 20℃ and 20 µmol photons m-2 s-1, and at 18-20℃ and 40 µmol photons m-2 s-1. During the field cultivation, early growth of S. sculpera was highest at the 5 m depth and growth decreased as the water depth increased. When the initial rearing depth was maintained without adjustment throughout the cultivation period (from December to October), all the cultivated S. sculpera plants died during August and September. However, S. sculpera plants lowered from 5 to 15 m and grew to 90.8 ± 13.1 cm in July. The seawater temperature at 15 m depth was similar to the upper level of thermal tolerance demonstrated by juvenile S. sculpera in the indoor culture experiments (16℃ or lower). The plants were subsequently lowered to 25 m depth in August, which eventually led to their maturation in October. The present study confirmed that improved growth rates and a delay in biomass loss can be achieved by adjusting the depth at which the seaweeds are grown during the cultivation period. These results will contribute to the establishment of sustainable cultivation systems for S. sculpera.

동해안 참가리비, Patinopecten yessoensis의 성장 (Growth of the Scallop, Patinopecten yessoensis in Suspended Culture in the East Coast of Korea)

  • 박영제;노섬;이채성
    • 한국양식학회지
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    • 제14권3호
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    • pp.181-195
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    • 2001
  • 동해안의 주문진 연안에서 1991년 1월부터 1998년 12월까지 한해성 패류인 참가리비, Patinopecten yessoensis(Jay) 양식산업의 안정화와 지속적 생산을 위한 채롱식 본양성의 적정 서식환경조건, 이식시기 및 양성기간, 적정수용밀도와 성장, 양성 적수층, 상품출하시기 등에 관한 연구를 수행하였다. 북한한류의 영향을 받는 본 연구해역에서 참가리비의 주 양식수층인 15~30m 층의 수온은 4.7~21.4$^{\circ}C$로 참가리비의 서식에 적합한 5~23$^{\circ}C$ 범위였으나 표층은 4.9~25.7$^{\circ}C$로 서식수온을 벗어났다. 양식 적정수온을 보인 해는 1993년과 1996년이었고, 고수온을 보인 해는 1994년, 1997년, 1998년이었다 특히 고수온과 함께 일교차가 크고 불규칙한 변동이 지속되는 시기에 나타나는 성장저하 및 폐사 현상은 수온과도 일부 관련이 있는 것으로 추정된다. 수심 15m층에서 염분은 32.0~34.4$\textperthousand$, 용존산소는 4.14~8.11 ml/L로 생육에 비교적 적합하였다. Chlorophyll a의 농도는 0.06~2.73$\mu\textrm{g}$/L로 빈영양 해역의 특성을 보이고 있으며, 해에 따른 변동이 크고 특히, 현저히 감소하는 여름시기에 참가리비의 폐사가 일부 나타나는 것으로 보아 수온과 함께 참가리비의 성장을 지배하는 하나의 제한 요인임을 시사한다. 채롱식 수하양성에 의한 성장은 봄, 가을 연중 2회의 주 성장시기가 있었다. 봄 성장기는 3~5월로 이때의 수온은 8~13$^{\circ}C$였고, 가을 성장기는 10~12월로 11~17$^{\circ}C$였다. 반면, 저성장 시기도 연간 2회로 나타났는데, 성장이 늦은 겨울시기는 1~2월로 수온 7$^{\circ}C$ 이하였고, 여름철은 7~9월로 수온 18$^{\circ}C$ 이상일 때 느렸다. 일간 각고 성장량은 수용믹도 12개체에서 0.02~0.24mm/day였고, 전중량은 -0.07~0.90g/day였다. 전중량의 주된 증가 시기는 역시 연중 2회로, 봄 성장은 2월부터 증가되기 시작하여 산란 직전인 4월에 최고에 이르고, 가을 성장은 10~12월이었으며, 고수온기인 8~9월은 중량증가가 매우 낮았다. 채롱(lantern cages ø50x20cm)에 의한 적정 양성수용밀도는 각고 5~6cm 크기의 경우 10~15개체가 적합하였다. 수증별 성장은 15~20 m 수층에서 빨랐으며, 성장촉진과 폐사를 줄이기 위해서는 고수온이 지속되는 7~10월에는 20~30m수층으로 채롱을 내려 양성하고 그 외 시기에는 15 m층 내외가 좋은 것으로 나타났다. 상품으로 출하 가능한 크기 인 각고 10 cm이상, 전중량 140 g 내외로 성장시 키기까지는 채묘후 22개월이 소요되었고, 출하시기는 전중량 증가가 최대에 이르는 3월에서 4월 중순이 경제적일 것으로 판단된다.

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벼 종자소독시 수온 처리시간 및 약량이 벼 키다리병 발병에 미치는 영향 (Influence of water temperature, soaking period, and chemical dosage on Bakanae disease of rice (Gibberella fujikuroi) in seed disinfection)

  • 박흥규;신해룡;이인;김석언;권오도;박인진;국용인
    • 농약과학회지
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    • 제7권3호
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    • pp.216-222
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    • 2003
  • 벼 육묘기간 중에 발생되는 벼 키다리병의 방제법을 확립하고자 최근에 육성된 벼 품종별 발병 정도와 시판되는 종자소독제의 방제효과를 조사하였으며 종자소독시 약액의 온도, 처리시간 및 약량에 따른 벼 키다리병 방제효과를 조사하였다. 품종별 벼 키다리병 발생정도를 조사한 결과 화영벼, 동진벼, 호안벼, 농호벼, 남평벼, 호진벼 6 품종이 저항성 품종으로, 그루벼, 소비벼, 오대벼, 주남벼, 삼천벼, 상주벼, 화봉벼 7 품종이 감수성 품종으로 분류되었다. 종자소독제별 벼 키다리병 방제효과에 있어서 prochloraz, fludioxonil, carpropamid+imidacloprid+fludioxonil 등은 높은 방제 효과를 보였으나 benomyl+thiram, thiophanatemethy+thiram, thiophanate-metyl+triflumizole등은 방제효과가 저조하였다. 종자소독당시 수온에 따른 벼 키다리병 방제가는 $10^{\circ}C$에서는 61% 이었으나 온도가 높아질수록 상승하여 $30\sim35^{\circ}C$에서는 벼 키다리병을 $95\sim98%$이상 방제할 수 있었다. 그러나 종자소독시간과 약량은 벼 키다리병 방제에 크게 영향을 미치지 않았다. 따라서 벼 키다리병을 효율적으로 방제하기 위해서는 저항성이 강한 벼 품종과 효과가 우수한 종자 소독제 선정 그리고 종자소독시 적정수온을 유지하는 것이 중요한 것으로 나타났다.