期刊文献+

水产生物技术概述 被引量:1

Review on Aquaculture Biotechnology
在线阅读 下载PDF
导出
摘要 着重阐述了生物技术在水产生物优良品种选育,水生生物种质资源鉴定、保存与利用,水产养殖生物病害防治与快速诊断及新型饲料蛋白源与促生长饲料添加剂的研制与开发等方面所发挥的巨大作用。 The present article elaborates in detail the tremendous effects of aquaculture biotechnologyin four aspects: (1) Selection and breeding of improved aquatic species or strains; (2) Evaluation.conservation and utilization of germplasm resources of aquatic organisms; (3) Rapid diagnosis ofdiseases and their prevention and cure, (4) Exploitation and manulhcture of the rich proteinous andeffective diets with enhancing growth.
出处 《集美大学学报(自然科学版)》 CAS 北大核心 1999年第1期28-32,共5页 Journal of Jimei University:Natural Science
关键词 水产生物技术 水产养殖 品种选育 种质资源鉴定 病害防治 饲料添加剂 germplasm diseases diets aquaculture biotechnology
  • 相关文献

参考文献8

二级参考文献7

  • 1楼允东.人工雌核发育及其在遗传学和水产养殖上的应用[J].水产学报,1986,10(1):111-123. 被引量:54
  • 2赵焕登,张学成.条斑紫菜营养细胞的分离培养试验[J].水产学报,1984,8(3):197-202. 被引量:7
  • 3马涛,朱才宝,朱秉仁.热休克诱导虹鳟四倍体[J].水生生物学报,1987,11(4):329-336. 被引量:27
  • 4Christoph Winkler,Jürgen R. Vielkind,Manfred Schartl. Transient expression of foreign DNA during embryonic and larval development of the medaka fish (Oryzias latipes)[J] 1991,MGG Molecular & General Genetics(1-2):129~140
  • 5E. Rokkones,P. Alestr?m,H. Skjervold,K. M. Gautvik. Microinjection and expression of a mouse metallothionein human growth hormone fusion gene in fertilized salmonid eggs[J] 1989,Journal of Comparative Physiology B(6):751~758
  • 6Choy L. Hew,Khiet Ye Trinh,Shao Ju Du,Shiduo Song. Molecular cloning and expression of salmon pituitary hormones[J] 1989,Fish Physiology and Biochemistry(1-6):375~380
  • 7Choy L. Hew. Transgenic fish: present status and future directions[J] 1989,Fish Physiology and Biochemistry(1-6):409~413

共引文献80

同被引文献17

  • 1邱黎明,董国生,张凌霄,丁学东,唐素英,包绍文,王燕,沈子威.鱼类基因转移的研究战略[J].生物工程进展,1993,14(3):35-41. 被引量:4
  • 2贺电,吴后波.分子生物学技术在水产养殖动物病原快速检测中的应用[J].海洋科学,2007,31(3):76-81. 被引量:9
  • 3Herbinger R W, Doyle E R, Pitman D,et al.Early Growth Performanco of Atlantic Salmon Full-sib Families Reared in Single Family Tanks Versus in Mixed Family Tanks[J].Aquaculture,1999,173 (1-4):105-116.
  • 4Harris A S, Bieger S, Doyle R W, et al DNA fingerprinting of tilapia Oreochromis niioticus, and its application to aquaculture genetics [J].Aquaculture,1991,92:157-163.
  • 5Gomez-Raya L,Klemetsdal G. Two Stage Selection Strategies utilizing Marker-quantitative trait Locus Information and Individual Performance[J].Journal of Animal science, 1999,77:2008-2018.
  • 6Springer T A. Immunology. Retrospective: Casar Milstein ( 1927-2002),Science,2002,296 (5571 ): 1253.
  • 7Marshall A, Hodgson J.DNA Chip: An Array of Possibilities[J].Nature Biotechnology, 1998,16:27-31.
  • 8Carter R E, Mair G C, Skibinski DOF, et al The application of DNA fingerprinting in the analysis of gynogenesis in tilapia[J].Aquaculture, 1991,95:41-52.
  • 9Taggart J B, Ferguson A. Minisatellite DNA fingerprints of Salmonidfishes[J].Animal Gene, 1990,21:377-389.
  • 10Rowley A F, Powell A. Invertebrate Immune Systems - Specific, Quasi-Specific, or Nonspecific?[J].The Journal of Immunology, 2007,179:7209-7214.

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部