1.The Isolation and Identification of Infectious Bronchitis Virus PTFY Strain in Muscovy Ducks.
Xiaoping WU ; Shulei PAN ; Wuduo ZHOU ; Yijiang WU ; Yifan HUANG ; Baocheng WU
Chinese Journal of Virology 2016;32(2):203-209
In July 2009, some farms of breeding Muscovy ducks on the peak of egg laying suffered the decrease of hatching rate and the quality of the eggs showing low mortality and no evident respiratory symptoms. The swelling and congestive ovary was visible after autopsy. This study was brought out for the diagnosis of these cases. The virus was isolated and identified by the methods of virus culture in chicken embryo, physical and chemical properties test, hemagglutinin test, NDV (Newcastle diseases Virus) interference test, electron microscope observation, pathogenicity test and the gene sequence analysis. The results indicated the virus showed the characters of inducing dwarf embryo after inocubation, the sensibility to lipid solvent and the hemagglutination capacity after pancreatic enzyme treatment, the typical morphology of coronavirus, the interference to NDV replication and the homology among 84.7% - 99% of the particial N gene sequences to the reference IBV (Avian infectious bronchitis virus) strains. The strain was identified as IBV isolate and this study confirmed the pathogenicity of IBV to Muscovy ducks.
Amino Acid Sequence
;
Animals
;
Chick Embryo
;
Coronavirus Infections
;
veterinary
;
virology
;
Ducks
;
virology
;
Female
;
Infectious bronchitis virus
;
classification
;
genetics
;
isolation & purification
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Molecular Sequence Data
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Phylogeny
;
Poultry Diseases
;
virology
;
Sequence Alignment
2.Effect of Low Dose of Chicken Infectious Anemia Virus in Attenuated Vaccine on SPF Chicken Body Weight and Vaccine Immune Antibody.
Lichun FANG ; Xiaohan LI ; Zhihao REN ; Yang LI ; Yixin WANG ; Zhizhong CUI ; Shuang CHANG ; Peng ZHAO
Chinese Journal of Virology 2016;32(2):190-194
In order to observe the effect of the immune and weight of chickens after use the attenuated vaccine with low dose of chicken infectious anemia virus (CIAV). In this study, the effects of low dose of CIAV on the weight of SPF chickens and NDV antibody production were observed by simulated experiments. The results showed that 10 EID50 and 5 EID50 CIAV per plume attenuated NDV vaccines were used to cause the weight loss of SPF chickens. Compared with the use of the non contaminated vaccine group, it has significant difference. And NDV antibody levels compared with the use of the non contaminated groups also decreased after use the vaccine with two doses of CIAV contaminated. It has significant difference. A certain proportion of CIAV antibody positive was detected at the beginning of the second week after use the NDV vaccine with two doses of CIAV contaminated. The detection of a high proportion of CIAV nucleic acid was detected in the first week after the use of a contaminated vaccine. The results of the study demonstrate the effects of CIAV pollution on the production and immune function of SPF chickens, and it is suggested that increasing the detection of viral nucleic acid can help save time and improve the detection rate in the detection of exogenous virus contamination by SPF chicken test method.
Animals
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Antibodies, Viral
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immunology
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Chicken anemia virus
;
genetics
;
immunology
;
physiology
;
Chickens
;
Circoviridae Infections
;
immunology
;
veterinary
;
virology
;
Poultry Diseases
;
immunology
;
virology
;
Specific Pathogen-Free Organisms
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Vaccines, Attenuated
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administration & dosage
;
genetics
;
immunology
3.Sequencing and Serologic Identification of S1 Genes of Infectious Bronchitis Viruses Isolated during 2012-2013 in Guangxi Province, China.
Lihua ZHANG ; Cuilan WU ; Zhipeng ZHANG ; Yining HE ; Heming LI ; Lili QIN ; Tianchao WEI ; Meilan MO ; Ping WEI
Chinese Journal of Virology 2016;32(1):62-69
We wished to ascertain the prevalence as well as the genetic and antigenic variation of infectious bronchitis viruses (IBVs) circulating in the Guangxi Province of China in recent years. The S1 gene of 15 IBV field isolates during 2012-2013 underwent analyses in terms of the similarity of amino-acid sequences, creation of phylogenetic trees, recombination, and serologic identification. Similarities in amino-acid sequences among the 15 isolates of the S1 gene were 54.3%-99.6%, and 43.3%-99.3% among 15 isolates and reference strains. Compared with the vaccine strain H120, except for GX-YL130025, the other 14 isolates showed a lower similarity of amino-acid sequences of the S1 gene (65.1-81.4%). Phylogenetic analyses of the S1 gene suggested that 15 IBV isolates were classified into eight genotypes, with the predominant genotype being new-type II. Recombination analyses demonstrated that the S1 gene of the GX-NN130048 isolate originated from recombination events between vaccine strain 4/91 and a LX4-like isolate. Serotyping results suggested that seven serotypes prevailed during 2012-2013 in Guangxi Province, and that only one isolate was consistent with the vaccine strain H120 in serotype (which has been used widely in recent years). The serotype of recombinant isolate GX-NN130048 was different from those of its parent strains. These results suggested that not only the genotype, but also the serotype of IBV field isolates in Guangxi Province had distinct variations, and that increasing numbers of genotypes and serotypes are in circulation. We showed that recombination events can lead to the emergence of new serotypes. Our study provides new evidence for understanding of the molecular mechanisms of IBV variations, and the development of new vaccines against IBVs.
Animals
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Antibodies, Viral
;
blood
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Chickens
;
China
;
Coronavirus Infections
;
blood
;
veterinary
;
virology
;
Genetic Variation
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Genotype
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Infectious bronchitis virus
;
classification
;
genetics
;
immunology
;
isolation & purification
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Molecular Sequence Data
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Phylogeny
;
Poultry Diseases
;
blood
;
virology
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Sequence Homology, Amino Acid
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Spike Glycoprotein, Coronavirus
;
chemistry
;
genetics
;
immunology
4.Cross-species Transmission of Avian Leukosis Virus Subgroup J.
Yanwei SHEN ; Menglian HE ; Ji ZHANG ; Manda ZHAO ; Guihua WANG ; Ziqiang CHENG
Chinese Journal of Virology 2016;32(1):46-55
Avian leukosis virus subgroup J (ALV-J) is an avian retrovirus that can induce myelocytomas. A high-frequency mutation in gene envelope endows ALV-J with the potential for cross-species transmission. We wished to ascertain if the ALV-J can spread across species under selection pressure in susceptible and resistant hosts. First, we inoculated (in turn) two susceptible host birds (specific pathogen-free (SPF) chickens and turkeys). Then, we inoculated three resistant hosts (pheasants, quails and ducks) to detect the viral shedding, pathologic changes, and genetic evolution of different isolates. We found that pheasants and quails were infected under the selective pressure that accumulates stepwise in different hosts, and that ducks were not infected. Infection rates for SPF chickens and turkeys were 100% (16/16), whereas those for pheasants and quails were 37.5% (6/16) and 11.1% (3/27). Infected hosts showed immune tolerance, and inflammation and tissue damage could be seen in the liver, spleen, kidneys and cardiovascular system. Non-synonymous mutation and synonymous ratio (NS/S) analyses revealed the NS/S in hypervariable region (hr) 2 of pheasants and quails was 2.5. That finding suggested that mutation of isolates in pheasants and quails was induced by selective pressure from the resistant host, and that the hr2 region is a critical domain in cross-species transmission of ALV-J. Sequencing showed that ALV-J isolates from turkeys, pheasants and quails had moved away from the original virus, and were closer to the ALV-J prototype strain HPRS-103. However, the HPRS-103 strain cannot infect pheasants and quails, so further studies are needed.
Amino Acid Sequence
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Animals
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Avian Leukosis
;
transmission
;
virology
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Avian Leukosis Virus
;
classification
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genetics
;
physiology
;
Chickens
;
Ducks
;
virology
;
Galliformes
;
virology
;
Host Specificity
;
Molecular Sequence Data
;
Poultry Diseases
;
transmission
;
virology
;
Quail
;
virology
;
Sequence Alignment
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Turkeys
;
virology
;
Viral Envelope Proteins
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chemistry
;
genetics
;
metabolism
5.Lentivirus Delivery of the Short Hairpin RNA Targeting NDV P Gene Inhibits Production of the Newcastle Disease Virus in Chicken Embryo Fibroblasts and Chicken Embryos.
Shaohua YANG ; Chuantian XU ; Lin ZHANG ; Yanyan HUANG ; Qinghua HUANG ; Beixia HU ; Xiumei ZHANG
Chinese Journal of Virology 2016;32(1):39-45
Small interfering ribonucleic acid (siRNA)-induced RNA degradation can inhibit viral infection, and has been investigated extensively for its efficacy as antiviral therapy. The potential therapeutic role of lentiviral-mediated short hairpin ribonucleic acid (shRNA) to Newcastle disease virus (NDV) replication in vivo has been explored less often. We constructed two recombinant lentiviral vectors containing shRNA against the phosphoprotein (P) of the NDV, RNAi-341 and RNAi-671. Recombinant shRNA lentivirus vectors were co-transfected into 293T cells, along with helper plasmids, to package the recombinant shRNA lentivirus. Lentivirus-based shRNAs were titrated and transduced into NDV-susceptible chicken embryo fibroblasts (CEFs) and chick embryos. Antiviral activity against the NDV strain was evaluated by virus titration and real-time reverse transcription-polymerase chain reaction. RNAi-341 and RNAi-671 strongly suppressed transient expression of a FLAG-tagged P fusion protein in 293T cells. RNAi-341 and RNAi-671 NDV reduced virus titers by 66.6-fold and 30.6-fold, respectively, in CEFs 16 h after infection. RNAi-341 and RNAi-671 reduced virus titers in specific pathogen-free chick embryos by 99% and 98%, respectively, 48 h after infection. Both shRNAs inhibited accumulation of not only P-gene mRNA, but also nucleocapsid, M-, F-, HN-, and L-gene mRNA. RNAi-341 silenced P-gene mRNA more potently than RNAi-671. These results suggest that shRNAs silencing the P gene had substantial antiviral properties and inhibited NDV replication in CEFs and chick embryos.
Animals
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Chick Embryo
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Chickens
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Down-Regulation
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Fibroblasts
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virology
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Gene Targeting
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Lentivirus
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genetics
;
metabolism
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Newcastle Disease
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virology
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Newcastle disease virus
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genetics
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physiology
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Phosphoproteins
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genetics
;
metabolism
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Poultry Diseases
;
virology
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RNA Interference
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RNA, Small Interfering
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genetics
;
metabolism
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Viral Proteins
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genetics
;
metabolism
;
Virus Replication
6.Detection of Avian Influenza Virus in Environmental Samples Collected from Live Poultry Markets in China during 2009-2013.
Ye ZHANG ; Xiaodan LI ; Shumei ZOU ; Hong BO ; Libo DONG ; Rongbao GAO ; Dayan WANG ; Yuelong SHU
Chinese Journal of Virology 2015;31(6):615-619
Abstract: To investigate the distribution of avian influenza virus in environmental samples from live poultry markets (LPM) in China, samples were collected and tested by nucleic acid during 2009-2013 season. Each sample was tested by real-time RT PCR using flu A specific primers. If any real-time PCR was positive, the sample was inoculated into specific-pathogen-free (SPF) embryonated chicken eggs for viral isolation. The results indicated that the positive rate of nucleic acid in enviromental samples exhibited seasonality. The positive rate of nucleic acid was significantly higher in Winter and Spring. The positive rate of nucleic acid in LPM located in the south of China was higher than in northern China. Samples of Sewage for cleaning poultry and chopping board showed that higher positive rate of nucleic acid than other samples. The Subtype identification showed that H5 and H9 were main subtypes in the enviromental samples. Viral isolation indicated H5 subtypes was more than H9 subtypes between 2009 and 2013 while H9 subtypes increased in 2013. Our findings suggested the significance of public health based on LPM surveillance and provided the basis of prevention and early warning for avian flu infection human.
Animals
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China
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Feces
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virology
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Fresh Water
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virology
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Influenza A virus
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classification
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genetics
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isolation & purification
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Influenza in Birds
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virology
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Poultry
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Poultry Diseases
;
virology
;
Public Health
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Seasons
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Sewage
;
virology
7.Phylogenetic and Molecular Analysis of an H7N7 Avian Influenza Virus Isolated in East Dongting Lake in 2012.
Yi YAO ; Cui Ling XU ; Jing Hong SHI ; Yun ZHU ; Yun Fei LI ; Tian BAI ; Fang Cai LI ; Tao CAI ; Fan YUAN ; Tao CHEN ; Hao YANG ; Wen Chao LI ; Heng Jiao ZHANG ; Hong ZHANG ; Yue Long SHU
Biomedical and Environmental Sciences 2015;28(7):518-526
OBJECTIVEIn March 2012, an H7N7 subtype avian influenza virus (AIV) named A/wild goose/Dongting/PC0360/2012 (H7N7) (DT/PC0360) was recovered from a wild goose in East Dongting Lake. We performed whole-genome sequencing of the isolate, and analyzed the phylogenetic and molecular characterization.
METHODSRNA was extracted from environment samples (including fecal samples from wild bird or domestic ducks, and water samples) for detecting the presence of Influenza A Virus targeting Matrix gene, using realtime RT-PCR assay. The positive samples were performed virus isolation with embryonated eggs. The subtype of the isolates were identified by RT-PCR assay with the H1-H16 and N1-N9 primer set. The whole-genome sequencing of isolates were performed. Phylogenetic and molecular characterizations of the eight genes of the isolates were analyzed.
RESULTSOur results suggested that all the eight gene segments of DT/PC0360 belonged to the Eurasian gene pool, and the HA gene were belonged to distinct sublineage with H7N9 AIV which caused outbreaks in Mainland China in 2013. The hemagglutinin cleavage site of HA of DT/PC0360 showed characterization of low pathogenic avian influenza virus.
CONCLUSIONStrengthening the surveillance of AIVs of wild waterfowl and poultry in this region is vital for our knowledge of the ecology and mechanism of transmission to prevent an influenza pandemic.
Amino Acid Sequence ; Animals ; China ; Embryo, Nonmammalian ; virology ; Feces ; virology ; Geese ; virology ; Genome, Viral ; Influenza A Virus, H7N7 Subtype ; genetics ; isolation & purification ; Influenza in Birds ; virology ; Lakes ; virology ; Molecular Sequence Data ; Phylogeny ; Poultry Diseases ; virology ; RNA, Viral ; genetics ; Real-Time Polymerase Chain Reaction ; veterinary
8.Isolation and phylogenetic analysis of hemagglutinin gene of H9N2 influenza viruses from chickens in South China from 2012 to 2013.
Han Qin SHEN ; Zhuan Qiang YAN ; Fan Gui ZENG ; Chang Tao LIAO ; Qing Feng ZHOU ; Jian Ping QIN ; Qing Mei XIE ; Ying Zuo BI ; Feng CHEN
Journal of Veterinary Science 2015;16(3):317-324
As part of our ongoing influenza surveillance program in South China, 19 field strains of H9N2 subtype avian influenza viruses (AIVs) were isolated from dead or diseased chicken flocks in Guangdong province, South China, between 2012 and 2013. Hemagglutinin (HA) genes of these strains were sequenced and analyzed and phylogenic analysis showed that 12 of the 19 isolates belonged to the lineage h9.4.2.5, while the other seven belonged to h9.4.2.6. Specifically, we found that all of the viruses isolated in 2013 belonged to lineage h9.4.2.5. The lineage h9.4.2.5 viruses contained a PSRSSRdownward arrowGLF motif at HA cleavage site, while the lineage h9.4.2.6 viruses contained a PARSSRdownward arrowGLF at the same position. Most of the isolates in lineage h9.4.2.5 lost one potential glycosylation site at residues 200-202, and had an additional one at residues 295-297 in HA1. Notably, 19 isolates had an amino acid exchange (Q226L) in the receptor binding site, which indicated that the viruses had potential affinity of binding to human like receptor. The present study shows the importance of continuing surveillance of new H9N2 strains to better prepare for the next epidemic or pandemic outbreak of H9N2 AIV infections in chicken flocks.
Animals
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*Chickens
;
China
;
Hemagglutinin Glycoproteins, Influenza Virus/chemistry/*genetics/metabolism
;
Influenza A Virus, H9N2 Subtype/*genetics/metabolism
;
Influenza in Birds/virology
;
Phylogeny
;
Poultry Diseases/*virology
;
Sequence Analysis, RNA/veterinary
9.Rescue of the recombinant infectious bronchitis virus with the ectodomain region of H120 spike glycoprotein.
Yan-quan WEI ; Hui-chen GUO ; Hai-ming WANG ; De-hui SUN ; Shi-chong HAN ; Shi-qi SUN
Chinese Journal of Virology 2014;30(6):668-674
To explore the expression potential of heterogeneous genes using the backbone of infectious bronchitis virus (IBV) Beaudette strain, the ectodomain region of the Spike gene (1,302 bp) of IBV H120 strain was amplified by RT-PCR and replaced into the corresponding location of the IBV Beaudette strain full-length cDNA. This recombinant was designated as BeauR-H120(S1). BeauR-H120(S1) was directly used as the DNA template for the transcription of viral genomic RNA in vitro. Then, the transcription product was transfected into Vero cells by electroporation. At 48 h post-transfection, the transfected Vero cells were harvested, and passaging continued. A syncytium was not observed until the recombinant virus had passed through four passages. The presence of rBeau-H120(S1) was verified by the detection of the replaced ectodomain region of the H120 Spike gene using RT-PCR. Western blot analysis of rBeau-H120 (S1)-infected Vero cell lysates demonstrated that the nucleocapsid (N) protein was expressed, which implied that rBeau-H120(S1) could propagate in Vero cells. The TCIDs0 and EIDs0 data demonstrated that the titer levels of rBeau-H120(S1) reached 10(590+/-0.22)TCID50/mL and 10(6.13+/-0.23)EID50/mL in Vero cells and 9-day-old SPF chicken embryos, respectively. Protection studies showed that the percentage of antibody-positive chickens, which were vaccinated with rBeau-H120(S1) at 7 days after hatching, rose to 90% at 21 days post-inoculation. Inoculation provided an 85% rate of immune protection against a challenge of the virulent IBV M41 strain (103EID50/chicken). This recombinant virus constructed using reverse genetic techniques could be further developed as a novel genetic engineering vaccine against infectious bronchitis.
Animals
;
Cercopithecus aethiops
;
Chick Embryo
;
Chickens
;
Coronavirus Infections
;
veterinary
;
virology
;
Infectious bronchitis virus
;
chemistry
;
genetics
;
growth & development
;
metabolism
;
Poultry Diseases
;
virology
;
Protein Structure, Tertiary
;
Spike Glycoprotein, Coronavirus
;
chemistry
;
genetics
;
metabolism
;
Transfection
;
Vero Cells
10.Establishment of a method to detect duck hepatitis B virus covalently closed circular DNA based on rolling circle amplification.
He-Ling SU ; Hui-Min WANG ; Jing-Yuan RAN ; Zhi WANG ; Hong-Yan LI ; Yi YANG ; Dong-Ping XU ; Yong-Ming LIU
Chinese Journal of Virology 2014;30(4):382-386
Rolling circle amplification (RCA) is a newly developed experimental technique that can specific ally amplify circular DNA. Since 2008, RCA has been extensively used in hepatitis B virus (HBV) research, such as the amplification of the full-length sequence of the HBV genome, and the analysis of the drug-resistant mutations of HBV covalently closed circular DNA (cccDNA), amongst others. To create an easy assay for the analysis of duck hepatitis B virus (DHBV) cccDNA, this study established an RCA-based method. DHBV cccDNA was amplified from the DHBV DNA samples of duck liver with four pairs of sulfur-modified primers, which were designed according to the highly conserved sequence of DHBV using sera DHBV DNA as the negative control. DHBV cccDNA was detected in the obtained RCA products by the sequencing of RCA amplicons that were amplified with primer pairs on both sides of the gap of DH BV relaxed circular DNA, rather than by digesting RCA products with a restriction enzyme. The liver and sera DHBV DNA samples of 39 ducks infected with DHBV were examined with the RCA-based DHBV cccDNA detection method, and the results showed that while DHBV cccDNA was detected from all 39 liver DHBV DNA samples, no DHBV cccDNA was found in any of the sera DHBV DNA samples. These results suggest that the method established in the study is highly specific and sensitive for the detection of DHBV cccDNA. The establishment of this RCA-based DHBV method for cccDNA detection lays the groundwork for using a DHBV model to study the role of cccDNA in the pathogenesis of hepatitis B and to evaluate the effect of anti-virus therapies.
Animals
;
DNA Primers
;
genetics
;
DNA, Circular
;
genetics
;
DNA, Viral
;
genetics
;
Ducks
;
Hepadnaviridae Infections
;
veterinary
;
virology
;
Hepatitis B Virus, Duck
;
genetics
;
isolation & purification
;
Liver
;
virology
;
Polymerase Chain Reaction
;
methods
;
Poultry Diseases
;
virology

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