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水产疫苗研究开发现状与趋势分析

DOI: 10.13560/j.cnki.biotech.bull.1985.2015.06.008, PP. 55-59

Keywords: 水产疫苗,种类,接种方式,现状与趋势

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Abstract:

水产疫苗不仅能够增强水产动物的免疫力,预防水产病害发生,还能减少各类药物的使用,降低生殖生产成本,解决各种药物残留带来的食品安全和环境污染等问题,使水产养殖业向绿色、可持续方向发展。因此,水产疫苗已成为水产动物病害防治领域的研究热点。综述了水产疫苗的发展历程、水产疫苗种类与接种方式,并介绍了水产疫苗关键技术发展现状与趋势。

References

[1]  马悦, 张元兴. 国外鱼类疫苗之路[J]. 海洋与渔业, 2012(1):80-83.
[2]  杨先乐, 陈远新. 渔用疫苗的研究现状及其发展趋势[J]. 水产学报, 1996, 20(2):159-165.
[3]  余俊红, 沈继红, 王祥红, 等. 鳗弧菌口服微胶囊疫苗的制备及其对鲈鱼的免疫效果[J]. 中国水产科学, 2001, 8(2):76-79.
[4]  Strom BM, Mustamaki N, Heinikainen S, et al. Introduction of Yersinia ruckeri biotype 2 into Finnish fish farms[J]. Aquaculture, 2012(308):1-5.
[5]  Anderson ED, Mourich DV, Fahrenkrug SC, et al. Genetic immunization of rainbow trout(Oncorhynchus mykiss)against infectious hematopoietic necrosis virus[J]. Molecular Marine Biology and Biotechnology, 1996, 5(2):114-122.
[6]  王玉堂. 疫苗在水产养殖病害防治中的作用及应用前景[J]. 中国水产, 2013, 6:51-53.
[7]  Tatner MF, Horne MT. Factors influencing the uptake of 14C-labelled Vibrio anguillarum vaccine in direct immersion experiments with rainbow trout, Salmo gairdneri Richardson[J]. Journal of Fish Biology, 1998:22(5):585-591.
[8]  龚晖, 林天龙, 张晓佩, 等. 含嗜水气单胞菌气溶素的免疫刺激复合物的制备及其对欧洲鳗的免疫效果[J]. 水产学报, 2009, 33(1):303-310.
[9]  Díaz-Rosalesa P, Birda S, Wang TH, et al. Rainbow trout interleukin-2:cloning, expression and bioactivity analysis[J]. Fish & Shellfish Immunology, 2009, 27(3):414-422.
[10]  Adomako M, St-Hilaire S, Zheng Y, et al. Oral DNA vaccination of rainbow trout, Oncorhynchus mykiss(Walbaum), against infectious haematopoietic necrosis virus using PLGA[Poly(D, L-Lactic-Co-Glycolic Acid)]nanoparticles[J]. Journal of Fish Diseases, 2012, 35(3):203-214.
[11]  Shoemaker CA, Vandenberg GW, Désormeaux A, et al. Efficacy of a Streptococcus iniae modified bacterin delivered using OraljectTM technology in Nile tilapia(Oreochromis niloticus)[J]. Aquaculture, 2006, 255(1-4):151-156.
[12]  Duff DCB. The oral immunization of trout against bacterium Salmonicida[J]. J Immunol, 1942, 44:87-94.
[13]  吴淑勤, 陶家发, 巩华, 等. 渔用疫苗发展现状及趋势[J]. 中国渔业质量与标准, 2014, 4(1):1-13.
[14]  杨先乐, 曹海鹏. 我国渔用疫苗的研制[J]. 水产学报, 2006, 30(2):264-271.
[15]  倪达书, 汪建国. 草鱼生物学与疾病[M]. 北京:科学出版社, 1992:2-6, 78-86, 334-348.
[16]  杨先乐, 柯福恩, 周剑光, 等. 中华鳖嗜水气单胞菌灭活的研究[J]. 华中农业大学学报, 1998, 17(4):389-394.
[17]  巩华, 黄志斌. 水产疫苗研究开发现状与展望[J]. 海洋与渔业, 2010(1):43-47.
[18]  Shimmoto H, Kawai K, Ikawa T, Oshima S. Protection of red sea bream Pagrus major against red sea bream iridovirus infection by vaccination with a recombinant viral protein[J]. Microbiology and Immunology, 2010, 54(3):135-142.
[19]  Gomez-Chiarri M, Livingston SK, Muro-Cacho C, et al. Introduction of foreign genes into the tissue of live fish by direct injection and particle bombardment[J]. Diseases of Aquatic Organisims, 1996, 27:5-12.
[20]  Kim CH, Johnson MC, Drennan JD, et al. DNA Vaccines encoding viral glycoproteins induce nonspecific immunity and Mx protein synthesis in fish[J]. J Virol, 2000, 74(15):7048-7054.
[21]  Amend DF, Fender DC. Uptake of bovine serum albumin by rainbow trout from hypersmotic solutions:a model for vaccinating fish[J]. Science, 1976:192(4241):793-794.
[22]  Sun HX, Xie Y, Ye YP. Advances in saponin-based adjuvants[J]. Vaccine, 2009, 27:1787-1796.
[23]  许斌福, 龚晖, 陈秀锦, 等. 创伤弧菌外膜蛋白免疫刺激复合物最小免疫剂量测定[J]. 福建农业学报, 2012, 27(12):1280-1282.
[24]  Oh M, Takami I, Nishizawa T, et al. Field tests of Poly(I:C)immunization with nervous necrosis virus(NNV)in sevenband grouper, Epinephelus septemfasciatus(Thunberg)[J]. Journal of Fish Diseases, 2012, 35(3):187-191.
[25]  Tian J, Yu J. Poly(lactic-co-glycolic acid)nanoparticles as candidate DNA vaccine carrier for oral immunization of Japanese flounder(Paralichthys olivaceus)against lymphocystis disease virus[J]. Fish & Shellfish Immunology, 2011, 30(1):109-117.

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