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국회도서관 홈으로 정보검색 소장정보 검색

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Interspecific hybridization is a beneficial strategy in aquaculture. In this study, diploid hybrids were produced through interspecies hybridization of flounder Platichthys bicoloratus ♀× starry flounder P. stellatus ♂, which became commercial within a year. These hybrids exhibited an advantage in growth ability, with female hybrids growing twice as large as males at 11 months. Furthermore, hybrid flounders exhibited faster growth rates than starry flounders and reciprocal hybrids. The average growth rate of hybrids was 1.37 and 1.18 times greater than that of starry flounder and reciprocal hybrids at 5.5 months, respectively; Additionally, feed efficiency was 1.21 and 1.10 times higher than that of the experimental groups. The experiments were conducted at five temperatures to determine the optimal fry production method. Six weeks of culture resulted in a significant temperature effect, with maximum growth at 27°C. However, over 90% of the males occurred in the groups at temperatures above 24°C. Therefore, the optimum temperatures for survival, growth, condition factor and frequency of the best-sized fingerling at 13 weeks of age were estimated at 21°C. Thus, hybrid flounders are of great potential for use in the flounder aquaculture industry.

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
총허용어획량제도 유래 및 국내 수산자원평가의 전반적 개요 = An overview of the total allowable catch policy and fish stock assessments in Korea 현상윤 p. 1-6

가열-건조처리 넙치(Paralichthys olivaceus) 알 농축물의 식품기능성 및 생리활성 = Food functionality and in vitro bioactivity of olive flounder Paralichthys olivaceus roe concentrates prepared by cook-dried process 윤인성, 강상인, 김진수, 권인상, 김형준, 허민수 p. 7-20

연자육(Lotus Nelumbo nucifera Seed) 단백질로부터 항산화 펩타이드 분리 정제 및 특성 = Purification and characterization of antioxidant peptides from lotus Nelumbo nucifera seed protein Chathuri K. Marasinghe, 김현우, 정원교, 제재영 p. 21-27

미세조류로부터 색소물질 생산 증대를 위한 추출 조건 최적화 = Optimization of extraction conditions to enhance production of bioactive compounds from microalgae 강민호, 박제훈, 박하영, 김소희, 김진우 p. 28-32

국내산 무지개송어(Oncorhynchus mykiss)의 생산지에 따른 영양성분 비교 = Comparison of the nutritional composition of rainbow trout Oncorhynchus mykiss from different inland-based trout farms 윤나영, 인정진, 안병규, 한형구, 손승아, 이우진, 이종봉, 배연주, 박혜민, 주홍준, 심길보 p. 33-43

위천에 서식하는 밀어(Rhinogobius brunneus)의 초기생활사 = Early life cycle of Rhinogobius brunneus from Wicheon Korea 박재민, 한경호 p. 44-53

반폐쇄적 여자만 동물플랑크톤 군집의 계절변화에 따른 환경요인의 영향 = Effects of environmental factors on the seasonal variations of zooplankton communities in the semi-enclosed Yeoja Bay, Korea 문성용, 김희용, 이미희, 정진호, 유세라 p. 54-65

동해와 남해 연안에 서식하는 군소(Aplysia kurodai) 서식지 주변의 해조상과 위 내용물 조성 = Composition of the stomach contents and marine algal flora around sea hare Aplysia kurodai habitats in the east and south coast of Korea 김민주, 김남길 p. 66-78

사육 밀도가 무지개송어(Oncorhynchus mykiss) 치어의 성장, 체조성, 스트레스, 항산화 및 면역반응에 미치는 영향 = Effects of stocking density on the growth, body composition, stress, antioxidant status and immune responses of juvenile rainbow trout Oncorhynchus mykiss 김재훈, 황인준, 박진우, 조정현 p. 79-88

사료 내 Prebiotic과 Probiotics의 첨가가 참돔(Pagrus major)의 성장, 면역력, 항산화력, 장내 미생물 조성 변화에 미치는 영향 = Effects of dietary prebiotics and probiotics on growth, immune response, anti-oxidant capacity and some intestinal bacterial groups of the red seabream Pagrus major 임종호, 엄건호, 노충환, 이경준 p. 89-98

지채(Triglochin maritimum)입식에 따른 바이오플락 사육수 내 세균 군집의 변화 = Changes in the biofloc bacterial community caused by planting of Triglochin maritimum 조재황, 김수경, 임현호, 김대희, 한현섭 p. 99-108

돌가자미(Platichthys bicoloratus) 암컷과 강도다리(P. stellatus) 수컷 간 교잡종 종자 생산을 위한 최적 사육 수온 = Optimum rearing temperature for fingerling production between stone flounder Platichthys bicoloratus ♀ and starry flounder P. stellatus ♂ 백인국, 박종연, 김동수, 방인철 p. 109-115

하이드로싸이클론을 이용한 해수 양식장 침전 고형물의 제거 효율 평가 = Removal efficiency of settleable solids in seawater aquaculture farm wastewater 서준혁, 김병기, 박정환 p. 116-123

CAPS (Cleaved Amplified Polymorphic Sequence) 마커를 적용한 김 교잡육종 기술 개발 = Cross-breeding of Neopyropia spp. (Bangiales, Rhodophyta) using CAPS (cleaved amplified polymorphic sequence) markers 박은정 p. 124-132

2021년 서해권역 실내 바이오플락 양식기술(Bioflocs Technology)로 사육한 흰다리새우(Litopenaeus vannamei) 병원체 모니터링 = Monitoring of Pacific whiteleg shrimp Litopenaeus vannamei pathogens cultured with biofloc technology on the west coast of Korea, 2021 계현정, 김수경, 강희웅, 정현미 p. 133-139

참고문헌 (35건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Bartley DM, Rana K and Immink AJ. 2000. The use of inter-specific hybrids in aquaculture and fisheries. Rev Fish Biol Fish 10, 325-337. https://doi.org/10.1023/A:1016691725361. 미소장
2 Basavaraju Y, Devaraj KV and Ayyar SP. 1995. Comparative growth of reciprocal carp hybrids between Catla catla and Labeo fimbriatus. Aquaculture 129, 187-191. https://doi. org/10.1016/0044-8486(94)00246-K. 미소장
3 Brett JR. and Groves TDD. 1979. Physiological energetics. In:Fish Physiology. Hoar WS, Randall DJ and Brett JR, eds. Academic Press, Cambridge, MA, U.S.A., 1-786. 미소장
4 Boltaña S, Sanhueza N, Aguilar A, Gallardo-Escarate C, Arriagada G, Valdes JA, Soto D and Quiñones, RA. 2017. Influences of thermal environment on fish growth. Ecol Evol 7, 6814-6825. https://doi.org/10.1002/ece3.3239. 미소장
5 Bunlipatanon P and U-taynapun K. 2017. Growth performance and disease resistance against Vibrio vulnificus infection of novel hybrid grouper (Epinephelus lanceolatus × Epinephelus fuscoguttatus). Aquac Res 48, 1711-1723. https://doi. org/10.1111/are.13008. 미소장
6 Colombo L, Bortolussi M, Argenton F, Dalla Valle L, Vianello S, Belvedere P, Barbaro A, Francescon A and Libertini A. 1998. Towards an integration between chromosome set manipulation, intergeneric hybridization and gene transfer in marine fish culture. Cahiers Options Méditerranéennes 34, 77-122. 미소장
7 Danzmann RG, Ferguson MM and Allendorf FW. 1986. Does enzyme heterozygosity influence developmental rate in rainbow trout?. Heredity 56, 417-425. 미소장
8 Duncan DB. 1955. Multiple range and multiple F test. Biometrics 11, 1-42. https://doi.org/10.2307/3001478. 미소장
9 Dunham RA, Brummett RE, Ella MO and Smitherman RO. 1990. Genotype-environment interactions for growth of blue, channel and hybrid catfish in ponds and cages at varying densities. Aquaculture 85, 143-151. https://doi. org/10.1016/0044-8486(90)90013-D. 미소장
10 Fulton TW. 1904. The Rate of Growth of Fishes. Part III. Twenty-second Annual Report, Fisheries Board of Scotland Press, Scotland, 141-241. 미소장
11 Gadomski DM and Caddell SM. 1991. Effects of temperature on early-life-history stages of California halibut Paralichthys californicus. Fish Bull 89, 567-576. 미소장
12 Goto R, Mori T, Kawamata K, Matsubara T, Mizuno S, Adachi S and Yamauchi K. 1999. Effects of temperature on gonadal sex determination in barfin flounder Verasper moseri. Fish Sci 65, 884-887. https://doi.org/10.2331/fishsci.65.884. 미소장
13 Hulata G. 1995. The history and current status of aquaculture genetics in Israel. Isr J Aquac 47, 142-154. 미소장
14 Imsland AK, Folkvord A, Grung GL, Stefansson SO and Taranger GL. 1997. Sexual dimorphism in growth and maturation of turbot, Scophthalmus maximus (Rafinesque, 1810). Aquac Res 28, 101-114. https://doi.org/10.1046/j.1365-2109.1997.t01-1-00829.x. 미소장
15 Imsland AK, Foss A, Sparboe LO and Sigurdsson S. 2006. The effect of temperature and fish size on growth and feed efficiency ratio of juvenile spotted wolffish Anarhichas minor. J Fish Biol 68, 1107-1122. https://doi.org/10.1111/j.0022-1112.2006.00989.x. 미소장
16 Imsland AK, Gústavsson A, Gunnarsson S, Foss A, Árnason, J, Arnarson I, Jónsson AF, Smáradóttir H and Thorarensen H. 2008. Effects of reduced salinities on growth, feed conversion efficiency and blood physiology of juvenile Atlantic halibut (Hippoglossus hippoglossus L.). Aquaculture 274, 254-259. https://doi.org/10.1016/j.aquaculture.2007.11.021. 미소장
17 Kitano T, Takamune K, Kobayashi T, Nagahama Y and Abe SI. 1999. Suppression of P450 aromatase gene expression in sex-reversed males produced by rearing genetically female larvae at a high water temperature during a period of sex differentiation in the Japanese flounder (Paralichthys olivaceus). J Mol Endocrinol 23, 167-176. https://doi. org/10.1677/jme.0.0230167. 미소장
18 Kitano T, Takamune K, Nagahama Y and Abe SI. 2000. Aromatase inhibitor and 17α-methyltestosterone cause sex-reversal from genetical females to phenotypic males and suppression of P450 aromatase gene expression in Japanese flounder (Paralichthys olivaceus). Mol Reprod Dev 56, 1-5. https://doi.org/10.1002/(SICI)1098-2795(200005)56:1<1::AIDMRD1>3.0.CO;2-3. 미소장
19 Kitano T, Yoshinaga N, Shiraishi E, Koyanagi T and Abe SI. 2007. Tamoxifen induces masculinization of genetic females and regulates P450 aromatase and Müllerian inhibiting substance mRNA expression in Japanese flounder (Paralichthys olivaceus). Mol Reprod Dev 74, 1171-1177.https://doi.org/10.1002/mrd.20603. 미소장
20 Kim DS. 1993. Method for all-female production of Paralichthys olivaceus. Korea Patent 1001121300000, Korean Intellectual Property Office, Daejeon, Korea. 미소장
21 Kim DS, Nam YK and Park IS. 1995. Survival and karyological analysis of reciprocal diploid and triploid hybrids between mud loach (Misgurnus mizolepis) and cyprinid loach (Misgurnus anguillicaudatus). Aquaculture 135, 257-265.https://doi.org/10.1016/0044-8486(95)01031-9. 미소장
22 Koehn RK and Gaffney PM. 1984. Genetic heterozygosity and growth rate in Mytilus edulis. Mar Biol 82, 1-7. https://doi. org/10.1007/BF00392757. 미소장
23 Lee IY. 2021. Production of hybrid between female starry flounder (Platichthys stellatus) and male stone flounder (Kareius bicoloratus) and analysis of usefulness in aquaculture industry. Ph. D. Dessertation, Pukyong National University, Busan, Republic of Korea. 미소장
24 Nes S and Anderson Q. 2006. Temperature effects on sex determination and ontogenetic gene expression of aromatase cyp19a and cyp19b, and the estrogen receptors and esr1and esr2 in atlantic 7alibut (Hippoglossus hippoglossus). Mol Reprod Dev 73, 1481-1490. https://doi.org/10.1002/mrd.20514. 미소장
25 NIFS (National Institute of Fisheries Science). 2016. Studies on the Sex Determination Mechanism Using Olive Flounder Genome. NIFS, Busan, Korea, 39-41. 미소장
26 NIFS (National Institute of Fisheries Science). 2019. Technical Manual for the Starry flounder Aquaculture. NIFS, Busan, Korea, 12-14. 미소장
27 Parida S and Sharma D. 2019. The microbiome-estrogen connection and breast cancer risk. Cells 8, 1642. https://doi. org/10.3390/cells8121642. 미소장
28 Patiño R, Davis KB, Schoore JE, Uguz C, Strüssmann CA, Parker NC, Simco BA and Goudie CA. 1996. Sex differentiation of channel catfish gonads: Normal development and effects of temperature. J Exp Zool 276, 209-218. https://doi.org/10.1002/(SICI)1097-010X(19961015)276:3<209::AID-JEZ5>3.0.CO;2-R. 미소장
29 Smith TIJ. 1988. Aquaculture of striped bass and its hybrids in North America. Aquacult Mag 14, 40-49. 미소장
30 Strüssmann CA and Patiño R. 1995. Temperature manipulation of sex differentiation in fish. In: Proceedings of the Fifth International Symposium on the Reproductive Physiology of Fish. Goetz F and Thomas P, eds. Fish Symp 95, Austin, TX, U.S.A., 153-157. 미소장
31 Tave D. 1986. Genetics for Fish Hatchery Managers. AVI Publishing Co. Inc., Westport, CT, U.S.A., 1-299. 미소장
32 Wolters WR and DeMay R. 1996. Production characteristics of striped bass×white bass and striped bass×yellow bass hybrids. J World Aquac Soc 27, 202-207. https://doi. org/10.1111/j.1749-7345.1996.tb00270.x. 미소장
33 Yamaguchi T, Yoshinaga N, Yazawa T, Gen K and Kitano T. 2010. Cortisol is involved in temperature-dependent sex determination in the Japanese flounder. Endocrinology 151, 3900-3908. https://doi.org/10.1210/en.2010-0228. 미소장
34 Yamamoto E. 1999. Studies on sex-manipulation and production of cloned populations in hirame, Paralichthys olivaceus (Temminck et Schlegel). Aquaculture 173, 235-246. https://doi.org/10.1016/S0044-8486(98)00448-7. 미소장
35 Yamashita YT, Aritaki M, Kurita Y and Tanaka M. 2014. Early growth and development of reciprocal hybrids of the starry flounder Platichthys stellatus and stone flounder Kareius bicoloratus. J Fish Biol 84, 1503-1518. https://doi. org/10.1111/jfb.12376. 미소장