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A novel real-time RT-PCR with TaqM an-MGB probes and its application in detecting BVDV infections in dairy farms 被引量:4
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作者 ZHANG Yong-qiang LIU Hai-sheng +7 位作者 WU Xiao-dong WANG Xiao-zhen LI Jin-ming ZHAO Yong-gang Lü Yan REN Wei-jie GE Sheng-qiang WANG Zhi-liang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2015年第8期1637-1643,共7页
A real-time RT-PCR assay using Taq Man-MGB probes was developed to detect and type the bovine viral diarrhea virus(BVDV) in cattle.Universal primers and Taq Man-MGB probes were designed from the 5′-untranslated reg... A real-time RT-PCR assay using Taq Man-MGB probes was developed to detect and type the bovine viral diarrhea virus(BVDV) in cattle.Universal primers and Taq Man-MGB probes were designed from the 5′-untranslated region of known pestiviral sequences.Prior to optimizing the assay, c RNAs were transcribed in vitro from the BVDV 1 and BVDV 2 RTPCR products to make standard curves.The detection limit of the assay was 1.72×102 copies for BVDV 1 and 2.14×102copies for BVDV 2.The specificity of the assay evaluated on several BVDV strains including bovine herpesvirus 1(BHV 1), foot and mouth disease virus(FMDV) and several classical swine fever virus(CSFV) strains showed specific detection of the positive virus over 40 cycles.The assay was highly reproducible with the coefficient of variance ranging from 1.04 to 1.33% for BVDV 1 and from 0.83 to 1.48% for BVDV 2, respectively.Using this method, we tested a total of 2 327 cattle from three dairy farms for the presence of BVDV persistently infected(PI) animals.In this assay, each RT-PCR template contained a mixture of ten samples from different animals.The occurrence rate of PI cattle in three farms ranging from 0.9 to 2.54% could represent partly the PI rates in cattle farm in China.In conclusion, using our real-time PCR assay, we could effectively detect and type BVDV and identify PI cattle in a rapid and cost-effective manner. 展开更多
关键词 bovine viral diarrhea virus(BVDV) real-time RT-PCR persistently infected(PI) animals Taq Man-MGB occurrence rate of PI cattle
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Current efforts towards safe and effective live attenuated vaccines against African swine fever: challenges and prospects 被引量:1
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作者 Tao Wang Rui Luo +1 位作者 Yuan Sun Hua‑Ji Qiu 《Infectious Diseases of Poverty》 SCIE 2021年第6期83-89,共7页
Background: African swine fever (ASF) is a fatal hemorrhagic disease in domestic pigs and wild boar caused by African swine fever virus (ASFV). Since ASF has been introduced into Europe and Asia, the major pig-raising... Background: African swine fever (ASF) is a fatal hemorrhagic disease in domestic pigs and wild boar caused by African swine fever virus (ASFV). Since ASF has been introduced into Europe and Asia, the major pig-raising areas, posing a huge threat to the pork industry worldwide. Currently, prevention and control of ASF are basically dependent on strict biosecurity measures and stamping-out policy once ASF occurs.Main text: The major risks of ASF spread are insufficient biosecurity measures and human behaviors. Therefore, a safe and effective vaccine seems to be a reasonable demand for the prevention and control of ASF. Due to the efficacy advantage over other types of vaccines, live attenuated vaccines (LAVs), especially virulence-associated genes deleted vaccines, are likely to be put into emergency and conditional use in restricted areas if ASF is out of control in a country with a huge pig population and pork consumption, like China. However, the safety, efficacy, and genetic stability of current candidate ASF LAVs require comprehensive clinical evaluations prior to country-wide field application. Several critical issues need to be addressed to commercialize an ideal ASF LAV, including a stable cell line for manufacturing vaccines, differentiation of infected from vaccinated animals (DIVA), and cross-protection from different genotypes.Conclusion: A safe and effective DIVA vaccine and an accompanying diagnostic assay will facilitate the prevention, control, and eradication of ASF, which is quite challenging in the near future. 展开更多
关键词 African swine fever Live attenuated vaccine Efficacy Safety Differentiation of infected from vaccinated animals
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