China Swine Industry ›› 2021, Vol. 16 ›› Issue (5): 57-62.doi: 10.16174/j.issn.1673-4645.2021.05.011

• Swine Disease Prevention and Control • Previous Articles     Next Articles

  

  • Received:2021-05-08 Online:2021-10-25 Published:2021-11-15

CLC Number: 

  • S828
[1] 胡焱, 徐春志, 方英, 等. 非洲猪瘟病毒检测方法研究进展[J]. 贵州畜牧兽医, 2020, 44(4):54-58.
[2] Galindo I, Alonso C.African swine fever virus: a review[J]. Viruses, 2017, 9(5):103.
[3] Hubner A, Petersen B, Keil GM, et al.Efficient inhibition of African swine fever virus replication by CRISPR/Cas9 targeting of the viral p30 gene (CP204L)[J]. Science Reproduction, 2018, 8(1):1449.
[4] 张险朋. 非洲猪瘟实验室检测技术研究进展[J]. 畜牧兽医科技信息, 2019(7):18-20.
[5] Penrith ML, Bastos AD, Etter EMC, et al.Epidemiology of African swine fever in Africa today: sylvatic cycle versus socio-economic imperatives[J]. Transboundary Emerging Disease, 2019, 11: 1-15.
[6] 康亚男, 张小波, 刘涛, 等.非洲猪瘟病毒及诊断技术研究进展[J]. 中国猪业, 2019, 14(8):86-88.
[7] GB/T 18648-2020, 非洲猪瘟诊断技术[S].
[8] Agüero M, Fernández J, Romero L, et al.Highly sensitive PCR assay for routine diagnosis of African swine fever virus in clinical samples[J]. Journal of Clinical Microbiology, 2003, 41(9):4431-4434.
[9] Giammarioli M, Pellegrini C, Casciari C, et al.Development of a novel hot-start multiplex PCR for simultaneous detection of classical swine fever virus, African swine fever virus,porcine circovirus type 2, porcine reproductive and respiratory syndrome virus and porcine parvovirus[J]. Veterinary Research Communications, 2008, 32(3):255-262.
[10] 张丽, 罗玉子, 王涛, 等. 非洲猪瘟诊断技术发展现状与需求分析[J]. 中国农业科技导报, 2019, 21(9):1-11.
[11] King DP, Reid SM, Hutchings GH, et al.Development of a TaqMan PCR assay with internal amplification control for the detection of African swine fever virus[J]. Journal Virological Methods, 2003, 107(1):53-61.
[12] 王彩霞, 吴绍强, 王勤, 等. 非洲猪瘟病毒CD2v基因实时荧光PCR检测方法的建立[J]. 中国兽医科学, 2020, 50(9):1083-1089.
[13] 史喜菊, 刘艳华, 马贵平, 等. 猪瘟、非洲猪瘟和猪水泡病毒多重荧光RT-PCR同步检测和鉴别诊断方法的建立及应用[J]. 中国兽医学报, 2021, 41(3):426-431.
[14] Notomi T, Okayama H, Masubuchi H, et al.Loop-mediated isothermal amplification of DNA[J]. Nucleic Acids Research, 2000, 28(12):63.
[15] 王林, 高晓龙, 吴迪, 等. 非洲猪瘟病毒实时荧光LAMP 检测方法的建立与应用[J]. 中国兽药杂志, 2020, 54(8):1-8.
[16] 王大洲, 郭天笑, 郑实, 等. 核酸等温扩增技术在微生物快速检测中的研究进展[J]. 生物技术通报, 2017, 33(7):49-61.
[17] 赵凯颖, 曾德新, 胡永新, 等. 非洲猪瘟病毒实时荧光RAA检测方法的建立[J]. 中国兽医科学, 2021, 51(1):1-8.
[18] SNT5336-2020, 猪瘟病毒及非洲猪瘟病毒检测微流控芯片法[S].
[19] Bastos AD, Penrith ML, Crucière C, et al.Genotyping fieldstrains of African swine fever virus by partial p72 gene characterisation[J]. Archives of Virology, 2003(148):693-706.
[20] Zhang F, Zou MQ, Chen Y, et al.Lanthanide-labeled immunochromatographic strips for the rapid detection of Pantoea stewartii subsp. Stewartii[J]. Biosens Bioelectron, 2014, 51:29-35.
[21] Vidal MI, Stiene M, Henkel J, et al.A solid-phase enzyme linked immunosorbent assay using monoclonal antibodies, forthe detection of African swine fever virus antigens and antibodies[J]. Journal of Virological Methods, 1997, 66(2):211-218.
[22] Aydin S.A short history, principles, and types of ELISA, and our laboratory experience with peptide/protein analyses using ELISA[J]. Peptides, 2015, 72: 4-15.
[23] 张鑫宇, 左伟勇, 朱善元, 等. 非洲猪瘟病毒p54抗体胶体金试纸检测方法的建立[J]. 中国预防兽医学报, 2014, 36(4):281-285.
[24] 吴海涛, 成大荣, 吴萌, 等. 非洲猪瘟病毒胶体金免疫层析试纸条的研制[J]. 黑龙江畜牧兽医, 2018(17):126-128,238.
[25] Pastor M J, Arias M, Escribano JM.Comparison of two antigens for use in an enzyme-linked immunosorbent assay to detect African swine fever antibody[J]. American Journal of Veterinary Research, 1990, 51:1540-1543.
[26] 曹堔福. 基于非洲猪瘟病毒p54蛋白抗原表位的ELISA检测方法建立及应用[D]. 广州: 华南农业大学, 2014.
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