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A Preliminary Study on Genetic Variation of g E Gene of an Epidemic Pseudorabies Virus Strain and Its Pathogenicity to Piglets 被引量:3
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作者 郭容利 王继春 +4 位作者 茅爱华 温立斌 李彬 倪艳秀 何孔旺 《Agricultural Science & Technology》 CAS 2015年第5期926-930,共5页
[Objective] This study aimed to investigate the genetic variation of g E gene of an epidemic pseudorabies virus(PRV) strain and its pathogenicity to piglets. [Method] By serial passage in Vero cells, a PRV strain wa... [Objective] This study aimed to investigate the genetic variation of g E gene of an epidemic pseudorabies virus(PRV) strain and its pathogenicity to piglets. [Method] By serial passage in Vero cells, a PRV strain was isolated from the brain tissues of stillborn fetuses delivered by sows with suspected PRV infection and preliminarily identified by PCR. g E gene of the isolated PRV strain was amplified and sequenced for phylogenetic analysis. In addition, the pathogenicity of the isolated PRV strain to 6-week-old piglets was evaluated. [Result] A PRV strain was successfully isolated and named PRV N5 B strain, which could proliferate in Vero cells and TCID50 of the 15 thgeneration virus liquid reached 10^7.125/0.1 ml. Specific bands could be amplified by PCR. g E gene in the isolated PRV strain was 1 740 bp in length. A phylogenetic tree was constructed based on full-length g E sequences, which showed that PRV N5 B strain and PRV strains isolated since 2012 were clustered into the same independent category and shared 99.7%-100% homology of nucleotide sequences. Compared with related sequences published previously, there were insertions of three consecutive bases at two loci. Animal experiments showed that intranasal inoculation of 6-week-old piglets with 2 ml of PRV N5 B strain(10^6/0.1 ml) led to a mortality rate of 100%. [Conclusion] In this study,genetic variability of g E gene in PRV N5 B isolate and its pathogenicity to piglets were analyzed, which provided a theoretical basis for the development of new vaccines to prevent and control porcine pseudorabies. 展开更多
关键词 pseudorabies virus ISOLATION Identification Genetic variation PATHOGENICITY
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Construction of Recombinant Pseudorabies Virus Expressing Canine Distemper Virus H Gene and Analysis on Its Biological Characters 被引量:3
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作者 李业伟 孙程龙 +2 位作者 韩乃君 王颖 扈荣良 《Agricultural Science & Technology》 CAS 2011年第6期897-900,共4页
[Objective] The aim was to construct a recombinant pseudorabies virus expressing canine distemper virus H gene and investigate its biological characters.[Method] H gene of canine distemper virus(CDV)strain Onderstep... [Objective] The aim was to construct a recombinant pseudorabies virus expressing canine distemper virus H gene and investigate its biological characters.[Method] H gene of canine distemper virus(CDV)strain Onderstepoort was produced by RT-PCR,inserted into pcDNA3.1(+)vector to construct a expression cassette,which was then subcloned into transfer vector p8AA,prior to the insertion of LacZ expression cassette.The resulting new transfer vector was named as p8AAZH.Subsequently,p8AAZH was co-transfected with the genome of pseudorabies virus(PRV)Bartha-K61 into BHK-21 cells to enable gene recombination and virus package,and the virus solution was collected as cytopathic effect occurring.A series of procedures including blue plaque purification,PCR identification,observation under electron microscope and Western blot were carried out to screen the recombinant pseudorabies virus and identify the protein expression of target gene.Meanwhile,growth curve of the recombinant virus was determined in BHK-21 cells.[Result] The H gene had been inserted into the genome of Bartha-K61 strain,and RPRV-H was the same as Bartha-K61 in the one-step growth curve and cytopathic effect in BHK-21 cells.[Conclusion] The recombinant pseudorabies virus was constructed,and the insertion of H gene did not influence proliferation of recombinant virus,which laid a foundation for development of recombinant canine distemper virus vaccine. 展开更多
关键词 pseudorabies virus Canine distemper virus H gene Virus vector
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Development of Multi-PCR for Differentiation of Vaccine Strain and Field Isolate of Porcine Pseudorabies Virus 被引量:2
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作者 蔺芳 尹双辉 +2 位作者 尚佑军 刘艳红 刘湘涛 《Animal Husbandry and Feed Science》 CAS 2009年第2期36-38,46,共4页
Three pairs of primer were designed for amplification of porcine pseudorabies virus (PRV) gB, gE, and TK gene by multiplex PCR (multi-PCR) in order to differentiate vaccine strains from field isolates. Three speci... Three pairs of primer were designed for amplification of porcine pseudorabies virus (PRV) gB, gE, and TK gene by multiplex PCR (multi-PCR) in order to differentiate vaccine strains from field isolates. Three specific bands were obtained respectively at the expected size, 427 bp (gB gene), 298 bp (gEgene), and 208 bp (TKgene), Then four different gene-deleted vaccines of PRV were detected by multi-PCR. One ex- pected specific band was observed in one of samples, while two bands in the others. As shown by the detection results, the multi-PCR has high sensitivity and specificity and should be applied in pathogen diagnosis and epidemiological investigation in the future. 展开更多
关键词 Porcine pseudorabies virus Multi-PCR Differentiation detection
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Detection of Pseudorabies Virus Antibodies in Human Encephalitis Cases 被引量:13
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作者 LI Xiang Dong FU Shi Hong +5 位作者 CHEN Ling Yan LI Fan DENG Jun Hua LU Xuan Cheng WANG Huan Yu TIAN Ke Gong 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2020年第6期444-447,共4页
Pseudorabies virus(PRV),a veterinary pathogen that infects domestic animals as well as wild animals such as wild boar and feral swine,was recently reported to infect human and led to endophthalmitis and encephalitis.A... Pseudorabies virus(PRV),a veterinary pathogen that infects domestic animals as well as wild animals such as wild boar and feral swine,was recently reported to infect human and led to endophthalmitis and encephalitis.A retrospective seroepidemiologic survey was conducted using 1,335 serum samples collected from patients with encephalitis and ELISA positive rates were 12.16%,14.25%,and 6.52%in 2012,2013,and 2017,respectively. 展开更多
关键词 pseudorabies SWINE PRV
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Pathogenicity of a currently circulating Chinese variant pseudorabies virus in pigs 被引量:32
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作者 Qing-Yuan Yang Zhe Sun +8 位作者 Fei-Fei Tan Ling-Hua Guo Yu-Zhou Wang Juan Wang Zhi-Yan Wang Li-Lin Wang Xiang-Dong Li Yan Xiao Ke-Gong Tian 《World Journal of Virology》 2016年第1期23-30,共8页
AIM:To test the pathogenicity of pseudorabies virus(PRV)variant HN1201 and compare its pathogenicity with a classical PRV Fa strain.METHODS:The pathogenicity of the newly-emerging PRV variant HN1201 was evaluated by d... AIM:To test the pathogenicity of pseudorabies virus(PRV)variant HN1201 and compare its pathogenicity with a classical PRV Fa strain.METHODS:The pathogenicity of the newly-emerging PRV variant HN1201 was evaluated by different inoculating routes,virus loads,and ages of pigs.The classical PRV Fa strain was then used to compare with HN1201 to determine pathogenicity.Clinical symptoms after virus infection were recorded daily and average daily body weight was used to measure the growth performance of pigs.At necropsy,gross pathology and histopathology were used to evaluate the severity of tissue damage caused by virus infection.RESULTS:The results showed that the efficient infection method of RPV HN1201 was via intranasal inoculation at 107 TCID50,and that the virus has high pathogenicity to 35-to 127-d old pigs.Compared with Fa strain,pigs infected with HN1201 showed more severe clinical symptoms and pathological lesions.Immunochemistry results revealed HN1201 had more abundant antigen distribution in extensive organs.CONCLUSION:All of the above results suggest that PRV variant HN1201 was more pathogenic to pigs than the classical Fa strain. 展开更多
关键词 pseudorabies VIRUS PATHOGENICITY VIRUS VARIANT GROSS pathology HISTOPATHOLOGY
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Microarray-Based Detection and Differentiation of Virulent and Attenuated Pseudorabies Virus 被引量:4
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作者 LIU Li-na LIU Zheng-fei RUAN Li WANG Zhao-xiong LI Ren-feng ZHANG Song-lin CHEN Huan-chun HE Qi-gai 《Agricultural Sciences in China》 CAS CSCD 2007年第2期234-243,共10页
DNA microchip used in this study was formed from miniature arrays of pseudorabies virus (PrV) gene-specific probes immobilized on a glass surface. Hybridization using DNA microchip (microarrays) was used for diffe... DNA microchip used in this study was formed from miniature arrays of pseudorabies virus (PrV) gene-specific probes immobilized on a glass surface. Hybridization using DNA microchip (microarrays) was used for differentiation between virulent and attenuated PrV. The presence of four gene segments (gB, gD, gE~, and gE ) encoding conservative glycoprotein B (gB), D (gD), and E (gE) of PrV was monitored using multiplex PCR. The amplicons were labeled with Cy5 or Cy3 dyes followed by hybridization to the gene-specific capture probes on the microchip. The presence of gD and gB, gE~ gene fragments was shown in virulent (gE~ genotype) and attenuated PrV (gE genotype), whereas gE- gene (deleted domain in gE gene) was demonstrated only in virulent, not in attenuated, virus. No cross-hybridization was observed when fluorescence labeled-PCR products of PrV were hybridized using capture probes of related viruses, such as porcine respiratory and reproductive syndrome virus (PRRSV), porcine parvovirus (PPV), Japanese encephalitis virus (JEV), and porcine circovirus type 2 (PCV-2). The assay was 10 times sensitive than gD gene-specific PCR. Overall, the results of this study suggested that the microarray might be very useful for detection and differentiation of virulent PrV from attenuated one. 展开更多
关键词 pseudorabies virus MICROARRAY DIAGNOSIS differentiation test
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Characterization of Synonymous Codon Usage Bias in the Pseudorabies Virus US1 Gene 被引量:3
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作者 Meili Li Zhiyao Zhao +4 位作者 Jianhong Chen Bingyun Wang Zi Li Jian Li Mingsheng Cai 《Virologica Sinica》 SCIE CAS CSCD 2012年第5期303-315,共13页
In the present study, we examined the codon usage bias between pseudorabies virus (PRV) US1 gene and the USl-like genes of 20 reference alphaherpesviruses. Comparative analysis showed noticeable disparities of the s... In the present study, we examined the codon usage bias between pseudorabies virus (PRV) US1 gene and the USl-like genes of 20 reference alphaherpesviruses. Comparative analysis showed noticeable disparities of the synonymous codon usage bias in the 21 alphaherpesviruses, indicated by codon adaptation index, effective number of codons (ENc) and GC3s value. The codon usage pattern of PRV US1 gene was phylogenetically conserved and similar to that of the USl-like genes of the genus Varicellovirus of alphaherpesvirus, with a strong bias towards the codons with C and G at the third codon position. Cluster analysis of codon usage pattern of PRV US1 gene with its reference alphaherpesviruses demonstrated that the codon usage bias of USl-like genes of 21 alphaherpesviruses had a very close relation with their gene functions. ENc-plot revealed that the genetic heterogeneity in PRV US1 gene and the 20 reference alphaherpesviruses was constrained by G+C content, as well as the gene length. In addition, comparison of codon preferences in the US1 gene of PRV with those ofE. coli, yeast and human revealed that there were 50 codons showing distinct usage differences between PRV and yeast, 49 between PRV and human, but 48 between PRV and E. coil Although there were slightly fewer differences in codon usages between E.coli and PRV, the difference is unlikely to be statistically significant, and experimental studies are necessary to establish the most suitable expression system for PRV US1. In conclusion, these results may improve our understanding of the evolution, pathogenesis and functional studies of PRV, as well as contributing to the area of herpesvirus research or even studies with other viruses. 展开更多
关键词 pseudorabies virus US1 gene ALPHAHERPESVIRUS Codon usage bias
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Establishment and Application of a SYBR Green I Real-time Quantitative PCR Assay for the Detection of LAT Gene of Pseudorabies Virus in Bama Miniature Pigs 被引量:2
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作者 Sufang LU Guangjun GUO +4 位作者 Ling MO Feng WEI Bingmei DONG Wentong ZHANG Zhiqiang SHEN 《Agricultural Biotechnology》 CAS 2015年第3期62-66,共5页
[ Objective] This study aimed to establish a rapid, sensitive and specific SYBR Green I real-time quantitative PCR assay for the detection of latent pseudorabies virus (PRV) infection. [ Method ] SYBR Green I real-t... [ Objective] This study aimed to establish a rapid, sensitive and specific SYBR Green I real-time quantitative PCR assay for the detection of latent pseudorabies virus (PRV) infection. [ Method ] SYBR Green I real-time quantitative PCR conditions and system for early detection of latent pseudorabies virus in- fection were optimized and compared with conventional PCR to investigate the sensitivity and specificity. Subsequently, the established assay was applied to detect different clinical samples. [ Result] The sensitivity of SYBR Green I real-time quantitative PCR assay (52 copies/μl) was 1 000 times higher than that of conven- tional PCR (5.2×1^04 copies/μl) and the detection time was shortened by 1/2. The established assay could be used to detect PRV but could not be used to detect PCV2, PPV, CSFV or PRRSV. Various tissues were collected from Bama miniature pigs with latent PRV infection under sterile conditions for real-time PCR detection. Results showed that viral copy number in the brain, nasal swab, inguinal lymph node, liver, lung and spleen was above 20, while PRV was not detected in the kidney and heart tissues. [ Conclusion] The established SYBR Green I real-time quantitative PCR assay for PRV/.AT detection was specific, sensitive and rapid, which could be used for pathogen monitoring, epidemiological investigation and quantitative study of PRV. 展开更多
关键词 SYBR Green I pseudorabies virus gE deleted virus LAT gene Latent infection
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Expression of Pseudorabies Virus gE Core Epitopes in Escherichia coli Strain BL21 and Utilization of Indirect PRV gE-ELISA 被引量:2
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作者 Guangjun GUO Sufang LU +9 位作者 Guanggang QU Feng LI Lin DONG Yanli BI Jinliang WANG Feng WEI Na TANG Chunling ZHANG Zhuang DING Zhiqiang SHEN 《Agricultural Biotechnology》 CAS 2014年第4期39-44,共6页
Pseudorabies virus glycoprotein E (PRV gE) has been recognized as a suitable diagnostic antigen for pseudorabies. In order to produce gE antigen in large quantities and at low cost, a gene fragment encoding PRV gE c... Pseudorabies virus glycoprotein E (PRV gE) has been recognized as a suitable diagnostic antigen for pseudorabies. In order to produce gE antigen in large quantities and at low cost, a gene fragment encoding PRV gE core epitopes was expressed in E. coli BL21 expression system. SDS-PAGE and Western Blotting revealed that the expression product in culture supematant of E. coli BL21 was a recombinant protein, approximately 51.8 Kd. At 5 h post-induction, protein concentration assay showed that the expression product amounted to 1.65 mg/ml, accounting for 24. 17% of total proteins in the culture supematant. An indirect PRV gE-ELISA was established by using the recombinant expression product as a coating antigen. Cross-reactivity assay showed that this antigen was PRV specific. In addition, the assay was consistently reproducible. Comparison of detection results of 240 serum samples between PRV gE-ELISA and a commercially available PRV diagnostic kit showed that there was no significant difference between these two methods (P 〉 0.05 ). 展开更多
关键词 pseudorabies virus Glycoprotein E PRV strain SA Gene expression ELISA
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Kaempferol inhibits Pseudorabies virus replication in vitro through regulation of MAPKs and NF-κB signaling pathways 被引量:1
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作者 CHEN Xu CHEN Ya-qin +11 位作者 YIN Zhong-qiong WANG Rui HU Huai-yue LIANG Xiao-xia HE Changliang YIN Li-zi YE Gang ZOU Yuan-feng LI Li-xia TANG Hua-qiao JIA Ren-yong SONG Xu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第8期2227-2239,共13页
Pseudorabies virus(PRV),in the family Herpesviridae,is a pathogen of Aujeszky’s disease,which causes great economic losses to the pig industry.Recent outbreaks of Pseudorabies imply that new control measures are urge... Pseudorabies virus(PRV),in the family Herpesviridae,is a pathogen of Aujeszky’s disease,which causes great economic losses to the pig industry.Recent outbreaks of Pseudorabies imply that new control measures are urgently needed.The present study shows that kaempferol is a candidate drug for controlling PRV infection,as it possesses the ability to inhibit PRV replication in a dose-dependent manner in vitro.Kaempferol at a concentration of 52.40μmol L^(-1) could decrease PRV-induced cell death by 90%.With an 50%inhibitory concentration(IC50)value of 25.57μmol L^(-1),kaempferol was more effective than acyclovir(positive control)which has an IC50 value of 54.97μmol L^(-1).A mode of action study indicated that kaempferol inhibited viral penetration and replication stages,decreasing viral loads by 4-and 30-fold,respectively.Addition of kaempferol within 16 h post infection(hpi)could significantly inhibit virus replication,and viral genome copies were decreased by almost 15-fold when kaempferol was added at 2 hpi.Kaempferol regulated the NF-κB and MAPKs signaling pathways involved in PRV infection and changed the levels of the target genes of the MAPKs(ATF-2 and c-Jun)and NF-κB(IL-1α,IL-1βand IL-2)signaling pathways.The findings of the current study suggest that kaempferol could be an alternative measure to control PRV infection. 展开更多
关键词 KAEMPFEROL antiviral activity pseudorabies virus
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Subculturing cells have no effect on CRISPR/Cas9-mediated cleavage of UL30 gene in pseudorabies virus 被引量:4
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作者 Lin-zhu Ren Zhi-yuan Peng +7 位作者 Ting Ouyang Xiao-hui Liu Xin-rong Chen Li Ye Jun-wen Fan Hong-sheng Ouyang Da-xin Pang Jie-ying Bai 《Animal Models and Experimental Medicine》 2018年第1期74-77,共4页
CRISPR/Cas9-mediated genome editing can inhibit virus infection by targeting the conserved regions of the viral genomic DNA. Unexpectedly, we found previously that pseudorabies virus(PRV) could escape from CRISPR/Cas9... CRISPR/Cas9-mediated genome editing can inhibit virus infection by targeting the conserved regions of the viral genomic DNA. Unexpectedly, we found previously that pseudorabies virus(PRV) could escape from CRISPR/Cas9-mediated inhibition.In order to elucidate whether the escape of PRV from Cas9-mediated inhibition was due to cell deficiencies, such as genetic instability of sgRNA or Cas9 protein, the positive cells were passaged ten times, and PRV infection in the sgRNA-expressing cells was evaluated in the present study. The results showed that subculturing cells has no effect on Cas9-mediated cleavage of PRV. Different passages of PX459-PRV cells can stably express sgRNA to facilitate Cas9/sgRNA cleavage on the UL30 gene of PRV, resulting in a pronounced inhibition of PRV infection. Studies to elucidate the mechanism of PRV escape are currently in progress. 展开更多
关键词 CRISPR/Cas9 pseudorabies virus(PRV) single-guide RNA(sgRNA) UL30 protein
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Development of PPA-ELISA for Detecting Antibodies against Porcine Pseudorabies Virus Using Truncated Recombinant Glycoprotein gD Expressed in E.coli 被引量:1
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作者 ZU Li-chuang SHEN Zhi-qiang +1 位作者 LI Jiao WANG Jin-liang 《Animal Husbandry and Feed Science》 CAS 2011年第6期29-34,共6页
The purpose of this study was to develop a method for detecting antibodies against porcine pseudorabies virus (PRV). According to the published genomic sequence of PRV SA strain, an approximately 1 070-bp gD gene fr... The purpose of this study was to develop a method for detecting antibodies against porcine pseudorabies virus (PRV). According to the published genomic sequence of PRV SA strain, an approximately 1 070-bp gD gene fragment was amplified by PCR. The PCR products were cloned into the prokaryotic expression vector pET30a and the positive recombinant plasmid was transformed into E. coli BL21. Through induction with IPTG, the recombinant gD protein was expressed as inclusion bodies. As analyzed by western blot assay, the purified recombinant gD protein had good antigenicity and high specificity. Using the purified gD protein as coating antigen and horseradish peroxidase labeled staphylococcal protein A (PPA) as secondary antibody, we developed a PPA-ELISA for detecting antibodies against porcine PPV. No cross-reaction with the positive sera against seven common pathogens in pigs including classical swine fever virus, porcine parvovirus, porcine reproductive and respiratory syndrome, Japanese encephalitis virus, porcine circovirus type 2, porcine epidemic diarrhea virus, transmissible gastroenteritis virus was observed. The repeatability test showed that the intra- and inter-assay coefficients of variation were lower than 5% and 10%, respectively. Compared with the ELISA gD antibody test kit produced by IDEXX, the coincidence, sensitivity and specificity of the developed PPA-ELISA were 92.0%, 95.1% and 88.1%, respectively. The developed PPA-ELISA had good repeatability, sensitivity and specificity and was a rapid and simple serological method for surveillance of PRV antibodies in pig herds as well as for rapid diagnosis and epidemiological investigation of PRV infection. 展开更多
关键词 Porcine pseudorabies virus gD protein Truncated expression Enzyme linked immunosorbent assay
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Isolation and Identification of a Porcine Pseudorabies Virus Strain in Taizhou City 被引量:1
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作者 Guangfu GUO Aiping ZHU +2 位作者 Junping CAO Cailian JIN Lihong DAI 《Agricultural Biotechnology》 CAS 2018年第5期133-135,142,共4页
In this study, the liver, kidney and spleen tissues were collected from pigs with suspected PR in a pig farm in Jiangyan District, Taizhou City for virus isolation and identification. The isolated virus was inoculated... In this study, the liver, kidney and spleen tissues were collected from pigs with suspected PR in a pig farm in Jiangyan District, Taizhou City for virus isolation and identification. The isolated virus was inoculated onto PK15 monolayer cells. The virus culture was collected to extract genomic DNA for PCR assay and indirect immunoinfluscent assay. The results showed that the isolated virus was porcine pseudorabies virus, which was named TAIZ130417. The growth titer of the isolated virus reached 10 8.12 TCID 50 /ml on PK15 cells. Rabbits inoculated with the isolated virus soon exhibited pseudorabies symptoms such as itching and eventually died. The results provided reference for in-depth research and scientific prevention and control of pseudorabies. 展开更多
关键词 Porcine pseudorabies virus ISOLATION IDENTIFICATION
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Design of live-attenuated animal vaccines based on pseudorabies virus platform
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作者 Zhen Liu Zhengjie Kong +1 位作者 Meng Chen Yingli Shang 《Animal Diseases》 2022年第3期187-197,共11页
Pseudorabies virus(PRV)is a double-stranded DNA virus with a genome approximating 150 kb in size.PRV contains many non-essential genes that can be replaced with genes encoding heterogenous antigens without affecting v... Pseudorabies virus(PRV)is a double-stranded DNA virus with a genome approximating 150 kb in size.PRV contains many non-essential genes that can be replaced with genes encoding heterogenous antigens without affecting viral propagation.With the ability to induce cellular,humoral and mucosal immune responses in the host,PRV is considered to be an ideal and potential live vector for generation of animal vaccines.In this review,we summarize the advances in attenuated recombinant PRVs and design of PRV-based live vaccines as well as the challenge of vaccine application. 展开更多
关键词 Recombinant pseudorabies virus Live-attenuated vaccine SWINE CRISPR/Cas9
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Research Progress on Pseudorabies Gene-deleted Vaccine
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作者 JIN Sheng-zao, CHEN Huang-chun and XIONG Fu( Hubei Agriculture College, Jinzhou 434103 Huazhong Agriculture University, Wuhan 430070) 《Agricultural Sciences in China》 CAS CSCD 2002年第2期227-231,共5页
Pseudorabies is caused by pseudorabies virus (PrV), which is a member of family Herpesviridae, subfamily Alphaherpesvirinae and is the agent of acute infectious disease in many domestic and wild animals. Swine was the... Pseudorabies is caused by pseudorabies virus (PrV), which is a member of family Herpesviridae, subfamily Alphaherpesvirinae and is the agent of acute infectious disease in many domestic and wild animals. Swine was the natural host and reservior of PRV, which inflicts major economic loss in pig industries world wide. Immunization with safe, effective vaccine is main measurements to prevent the disease. In this assay, research progress on PRV gene-deleted vaccine used extensively today was discussed. 展开更多
关键词 pseudorabies Gene-deleted vaccine
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Detection of Serum Antibodies of Porcine Pseudorabies Virus(PRV)in Binzhou City in 2014
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作者 Li Feng Lv Sufang +5 位作者 Zhang Wentong Liu Jishan Li Shuguang Guo Guangjun Zhang Songlin Wang Wenxiu 《Animal Husbandry and Feed Science》 CAS 2017年第1期37-40,共4页
To understand immunization effect of pseudorabies vaccine and infection status of porcine pseudorabies (PR) in pig farms and guide prevention and control against PR, 453 copies of blood samples collected from 43 dif... To understand immunization effect of pseudorabies vaccine and infection status of porcine pseudorabies (PR) in pig farms and guide prevention and control against PR, 453 copies of blood samples collected from 43 different scale pig farms in four counties (districts) of Binzhou City were detected with ELISA to investigate PRV gB antibody and gE antibody. Detection results showed that the gB antibody positive rate of sows was 75.58%, and that of fattening pigs was 68.67% ; the pig farms with positive rate higher than 70% accounted for 74.42% of total survey pig farms. The PRV gE antibody positive rates of sows and fatte- ning pigs were 25.41% and 26.67%, and the positive rates of pig farms were 46.51% and 44.33%, respectively. There were regional differences among counties (districts). 展开更多
关键词 Porcine pseudorabies Serum antibody ELISA
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Isolation and Identification of Sheep Pseudorabies Virus
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作者 Wei feng Zhang Wentong +4 位作者 Zhang Peipei Wang Jinliang Li Feng Liu Jishan Shen Zhiqiang 《Animal Husbandry and Feed Science》 CAS 2018年第2期120-122,132,共4页
In a sheep farm with mixed culture of pig and sheep in Shandong Province,sheep were attacked by a disease featured by foaming at the mouth,neurological symptoms and partial hair slip of legs,and the mortality of the d... In a sheep farm with mixed culture of pig and sheep in Shandong Province,sheep were attacked by a disease featured by foaming at the mouth,neurological symptoms and partial hair slip of legs,and the mortality of the disease was as high as 100%.In order to determine the pathogen,dead sheep were analyzed through pathogen isolation,PCR assay and direct immunofluorescence identification,and the pathogen was confirmed as pseudorabies virus(PRV).Sequencing results showed that the g E gene of the isolated strain shared the homology of 97%-99% with the nucleotide sequence of known PRV genome in the NCBI databases,suggesting the isolate was PRV.The virus had obvious cytopathic effect through BHK cell line passage till the seventh generation,and the amount of half virus tissue cell infection(TCID50) was 1×107.5/m L following ReedMuench method.Two healthy sheep with the body weight of 20 kg were injected with the viral fluid of the isolate,and typical symptoms of pseu-dorabies(PR) were observed after 4 d.According to clinical symptoms and PCR diagnosis results,the epidemic situation of sheep farm was effec-tively controlled through comprehensive measures such as eliminating swinery in the farm,strengthening disinfection of pigsty,injecting sick sheep with pseudorabies serum,supplementing healthy sheep herb with antivirus traditional medicine Qiqing Baidu granule. 展开更多
关键词 SHEEP pseudorabies virus (PRV) ISOLATION IDENTIFICATION Control measures
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Pseudorabies virus VHS protein abrogates interferon responses by blocking NF-κB and IRF3 nuclear translocation
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作者 Zhenfang Yan Jiayu Yue +9 位作者 Yaxin Zhang Zhengyang Hou Dianyu Li Yanmei Yang Xiangrong Li Adi Idris Huixia Li Shasha Li Jingying Xie Ruofei Feng 《Virologica Sinica》 SCIE CAS CSCD 2024年第4期587-599,共13页
Herpesviruses antagonize host antiviral responses through a myriad of molecular strategies culminating in the death of the host cells.Pseudorabies virus(PRV)is a significant veterinary pathogen in pigs,causing neurolo... Herpesviruses antagonize host antiviral responses through a myriad of molecular strategies culminating in the death of the host cells.Pseudorabies virus(PRV)is a significant veterinary pathogen in pigs,causing neurological sequalae that ultimately lead to the animal's demise.PRV is known to trigger apoptotic cell death during the late stages of infection.The virion host shutdown protein(VHS)encoded by UL41 plays a crucial role in the PRV infection process.In this study,we demonstrate that UL41 inhibits PRV-induced activation of inflammatory cytokine and negatively regulates the cGAS-STING-mediated antiviral activity by targeting IRF3,thereby inhibiting the translocation and phosphorylation of IRF3.Notably,mutating the conserved amino acid sites(E192,D194,and D195)in the RNase domain of UL41 or knocking down UL41 inhibits the immune evasion of PRV,suggesting that UL41 may play a crucial role in PRV's evasion of the host immune response during infection.These results enhance our understanding of how PRV structural proteins assist the virus in evading the host immune response. 展开更多
关键词 pseudorabies virus(PRV) UL41 IRF3 INTERFERON cGAS-STING
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Pseudorabies virus manipulates mitochondrial tryptophanyl-tRNA synthetase 2 for viral replication
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作者 Xiu-Qing Li Meng-Pan Cai +5 位作者 Ming-Yang Wang Bo-Wen Shi Guo-Yu Yang Jiang Wang Bei-Bei Chu Sheng-Li Ming 《Virologica Sinica》 SCIE CAS CSCD 2024年第3期403-413,共11页
The pseudorabies virus(PRV)is identified as a double-helical DNA virus responsible for causing Aujeszky's disease,which results in considerable economic impacts globally.The enzyme tryptophanyl-tRNA synthetase 2(W... The pseudorabies virus(PRV)is identified as a double-helical DNA virus responsible for causing Aujeszky's disease,which results in considerable economic impacts globally.The enzyme tryptophanyl-tRNA synthetase 2(WARS2),a mitochondrial protein involved in protein synthesis,is recognized for its broad expression and vital role in the translation process.The findings of our study showed an increase in both mRNA and protein levels of WARS2 following PRV infection in both cell cultures and animal models.Suppressing WARS2 expression via RNA interference in PK-15 cells led to a reduction in PRV infection rates,whereas enhancing WARS2 expression resulted in increased infection rates.Furthermore,the activation of WARS2 in response to PRV was found to be reliant on the cGAS/STING/TBK1/IRF3 signaling pathway and the interferon-alpha receptor-1,highlighting its regulation via the type I interferon signaling pathway.Further analysis revealed that reducing WARS2 levels hindered PRV's ability to promote protein and lipid synthesis.Our research provides novel evidence that WARS2 facilitates PRV infection through its management of protein and lipid levels,presenting new avenues for developing preventative and therapeutic measures against PRV infections. 展开更多
关键词 pseudorabies virus WARS2 Innate immunity Protein synthesis Lipid synthesis
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Global asymptotic stability in a pseudorabies virus model with age structure
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作者 Yining Chen Yuhua Long Jianshe Yu 《Infectious Disease Modelling》 CSCD 2023年第3期865-880,共16页
Pseudorabies is a highly contagious disease caused by pseudorabies virus(PRV)or suid herpesvirus 1(SuHV1),causing significant economic losses to the swine industry in countries where the disease exists.In this paper,w... Pseudorabies is a highly contagious disease caused by pseudorabies virus(PRV)or suid herpesvirus 1(SuHV1),causing significant economic losses to the swine industry in countries where the disease exists.In this paper,we formulate an age structure model of pseudorabies virus that takes into account disease-related mortality and vertical trans-mission.We find a threshold to determine the stability and existence of the disease.We show that there is always a globally asymptotically stable boundary equilibrium if and only if R_(02)<1+q,which means that the disease always exists in piglets and will die out in adult pigs.When R_(02)>1+q,the boundary equilibrium is unstable and there exists a unique disease-endemic equilibrium,which is globally asymptotically stable.We give detailed proofs of our theoretical results and numerical examples.Brief concluding re-marks are also provided. 展开更多
关键词 pseudorabies virus model EQUILIBRIUM Global stability Age structure
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