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1.
J Med Virol ; 94(6): 2388-2401, 2022 06.
Article in English | MEDLINE | ID: mdl-35072274

ABSTRACT

The newly established virus family Phenuiviridae in Bunyavirales harbors viruses infecting three kingdoms of host organisms (animals, plants, and fungi), which is rare in known virus families. Many phenuiviruses are arboviruses and replicate in two distinct hosts (e.g., insects and humans or rice). Multiple phenuivirid species, such as Dabie bandavirus, Rift Valley fever phlebovirus, and Rice stripe tenuivirus, are highly pathogenic to humans, animals, or plants. They impose heavy global burdens on human health, livestock industry, and agriculture and are research hotspots. In recent years the taxonomy of Phenuiviridae has been expanded greatly, and research on phenuiviruses has made significant progress. With these advances, this review drew a novel panorama regarding the biomedical significance, distribution, morphology, genomics, taxonomy, evolution, replication, transmission, pathogenesis, and control of phenuiviruses, to aid researchers in various fields to recognize this highly adaptive and important virus family and conduct relevant risk analysis.


Subject(s)
Arboviruses , Phlebovirus , RNA Viruses , Animals , Genomics , Humans
2.
BMC Vet Res ; 17(1): 113, 2021 Mar 07.
Article in English | MEDLINE | ID: mdl-33678176

ABSTRACT

BACKGROUND: Pet dogs are important companion animals that share the environment within households, and play an important role in local community life. In addition, pet dogs also are reservoirs of zoonotic agents, including Rickettsia spp., thus increasing the risk of rickettsial infections in humans. It's meaningful to investigate the epidemiology of rickettsial agents in pet dogs, and make contribute to the surveillance of rickettsioses in human in China. RESULTS: In this study, a total of 496 pet dogs' blood samples and 343 ticks infested in pet dogs were collected, and the presence and prevalence of Rickettsia were determined by amplifying the partial gltA and 17-kDa genes, with an overall positive rate of 8.1 % in blood samples and 14.0 % in tick samples. In addition, the rrs, gltA, groEL, and ompA genes of rickettsial were also recovered to determine the species of Rickettsia detected furtherly. Sequencing blast and phylogenetic analyses revealed the presence of three human pathogenic Rickettsia species (Rickettsia raoultii, Candidatus Rickettsia tarasevichiae and Rickettsia felis) in samples associated with pet dogs. Moreover, all the sequences of Rickettsia that we obtained presented close relationship with others available in GenBank, and Rickettsia raoultii was the most predominant Rickettsia species infected in pet dogs' blood samples or in tick samples. CONCLUSIONS: This study provides the molecular epidemiology data about the Rickettsia spp. infection associated with pet dogs in urban areas of Harbin city. Three rickettisae species pathogenic to humans were identified from pet dogs' blood and the infested ticks in urban areas of Harbin city. Considering the intimate relationship between human and pets, these results indicate the potential transmission risk of human rickettisal infections from pet dogs through ectoparasites, and also highlighting that more attention should be paid to rickettsial infection in pet dogs and the infested ticks from the "One health" perspective.


Subject(s)
Dog Diseases/microbiology , Ixodidae/microbiology , Rickettsia Infections/veterinary , Rickettsia/isolation & purification , Animals , China/epidemiology , Dog Diseases/epidemiology , Dogs , Female , Male , Rickettsia/classification , Rickettsia/genetics , Rickettsia Infections/blood , Rickettsia Infections/epidemiology , Tick Infestations/veterinary
3.
BMC Vet Res ; 15(1): 476, 2019 Dec 30.
Article in English | MEDLINE | ID: mdl-31888625

ABSTRACT

BACKGROUND: Babesia spp. are important emerging tick-borne protozoan hemoparasites, and pose a great impact on companion animals. Canine babesiosis has been well described worldwide, while felis babesiosis has primarily been reported from South Africa. To the best of our knowledge, Babesia spp. infections in dogs have been well elucidated in pet dog population in China, no report about Babesia spp. infection in cat population in mainland China. RESULTS: In this study, a total of 203 blood samples were collected from pet cats in Shenzhen city, and detected the presence of Babesia spp. with nested-PCR. Sequence comparison based on the 18S rRNA gene and ITS region revealed that three cats (1.48%) were infected with Babesia. vogeli. Notably, the sequences of ITS region obtained in this study shared the highest nucleotide identity with the sequence of B. vogeli strain isolated in cat from Taiwan. CONCLUSIONS: This study is the first report about babesiosis in domestic cats, and also provides molecular evidence of Babesia spp. infection in cat in mainland China. The data present in this study suggest B. vogeli may be circulating in cat population in mainland China. Further study to investigate the epidemiology of Babesia infection in cat nationwide is warranted.


Subject(s)
Babesia/isolation & purification , Babesiosis/epidemiology , Cat Diseases/parasitology , Animals , Babesia/classification , Babesiosis/blood , Cat Diseases/epidemiology , Cats , China/epidemiology , DNA, Protozoan , Female , Male , Polymerase Chain Reaction/veterinary , RNA, Ribosomal, 18S/genetics
4.
BMC Vet Res ; 15(1): 131, 2019 May 06.
Article in English | MEDLINE | ID: mdl-31060564

ABSTRACT

BACKGROUND: Hepatitis E virus (HEV) is one of most important zoonotic viruses, and it can infect a wide range of host species. Avian HEV has been identified as the aetiological agent of big liver and spleen disease or hepatitis-splenomegaly syndrome in chickens. HEV infection is common among chicken flocks in China, and there are currently no practical measures for preventing the spread of the disease. The predominant avian HEV genotype circulating in China have been identified as genotype 3 strains, although some novel genotypes have also been identified from chicken flocks in China. RESULTS: In this study, we used a meta-transcriptomics approach to identify a new subtype of genotype 3 avian HEV in broiler chickens at a poultry farm located in Shenzhen, Guangdong Province, China. The complete genome sequence of the avian HEV, designated CaHEV-GDSZ01, is 6655-nt long, including a 5' UTR of 24 nt and a 3' UTR of 125 nt (excluding the poly(A) tail), and contains three open reading frames (ORFs). Sequence analysis indicated that the complete ORF1 (4599 nt/1532 aa), ORF2 (1821 nt/606 aa) and ORF3 (264 nt/87 aa) of CaHEV-GDSZ01 share the highest nucleotide sequence identity (85.8, 86.7 and 95.8%, respectively) with the corresponding ORFs of genotype 3 avian HEV. Phylogenetic analyses further demonstrated that the avian HEV identified in this study is a new subtype of genotype 3 avian HEV. CONCLUSIONS: Our results demonstrate that a new subtype of genotype 3 avian HEV is endemic in Guangdong, China, and could cause high mortality in infected chickens. This study also provides full genomic data for better understanding the evolutionary relationships of avian HEV circulating in China. Altogether, the results presented in this study suggest that more attention should be paid to avian HEV and its potential disease manifestation.


Subject(s)
Gene Expression Profiling/veterinary , Hepatitis, Viral, Animal/virology , Hepevirus/genetics , Poultry Diseases/virology , Animals , Chickens , China/epidemiology , Genotype , Hepatitis, Viral, Animal/epidemiology , Poultry Diseases/epidemiology , Poultry Diseases/mortality , RNA Virus Infections/epidemiology , RNA Virus Infections/veterinary , RNA Virus Infections/virology
5.
BMC Vet Res ; 15(1): 143, 2019 May 10.
Article in English | MEDLINE | ID: mdl-31077188

ABSTRACT

BACKGROUND: Novel Muscovy duck reovirus (N-MDRV), emerged in southeast China in 2002, which can infect a wide range of waterfowl and induces clinical signs and cytopathic effects that are distinct from those of classical MDRV, and continues to cause high morbidity and 5-50% mortality in ducklings. The present study aimed to investigate the characteristics of two novel reoviruses isolated from Muscovy ducklings in Guangdong, China. RESULTS: Two novel MDRV strains, designated as MDRV-SH12 and MDRV-DH13, were isolated from two diseased Muscovy ducklings in Guangdong province, China in June 2012 and September 2013, respectively. Sequencing of the complete genomes of these two viruses showed that they consisted of 23,418 bp and were divided into 10 segments, ranging from 1191 bp (S4) to 3959 bp (L1) in length, and all segments contained conserved sequences in the 5' non-coding region (GCUUUU) and 3' non-coding region (UCAUC). Pairwise sequence comparisons demonstrated that MDRV-SH12 and MDRV-DH13 showed the highest similarity with novel MDRVs. Phylogenetic analyses of the nucleotide sequences of all 10 segments revealed that MDRV-SH12 and MDRV-DH13 were clustered together with other novel waterfowl-origin reoviruses and were distinct from classical waterfowl-origin and chicken-origin reoviruses. The analyses also showed possible genetic re-assortment events in segment M2 between waterfowl-origin and chicken-origin reoviruses and the segments encoding λA, µA, µNS, σA, and σNS between classical and novel waterfowl-origin reoviruses. Potential recombination events detection in segment S2 suggests that MDRV-SH12 and MDRV-DH13 may be recombinants of classical and novel WRVs. CONCLUSIONS: The results presented in this study, the full genomic data for two novel MDRV strains, will improve our understanding of the evolutionary relationships among the waterfowl-origin reoviruses circulating in China, and may aid in the development of more effective vaccines against various waterfowl-origin reoviruses.


Subject(s)
Bird Diseases/virology , Orthoreovirus, Avian/classification , Orthoreovirus, Avian/genetics , Phylogeny , Reoviridae Infections/veterinary , Animals , China , Conserved Sequence , Ducks , Genome, Viral/genetics , Reoviridae Infections/virology , Sequence Analysis, DNA
6.
Front Microbiol ; 15: 1394510, 2024.
Article in English | MEDLINE | ID: mdl-38817972

ABSTRACT

Influenza A virus (IAV) is a highly contagious pathogen causing dreadful losses to humans and animals around the globe. As is known, immune escape is a strategy that benefits the proliferation of IAVs by antagonizing, blocking, and suppressing immune surveillance. The HA protein binds to the sialic acid (SA) receptor to enter the cytoplasm and initiate viral infection. The conserved components of the viral genome produced during replication, known as the pathogen-associated molecular patterns (PAMPs), are thought to be critical factors for the activation of effective innate immunity by triggering dependent signaling pathways after recognition by pattern recognition receptors (PRRs), followed by a cascade of adaptive immunity. Viral infection-induced immune responses establish an antiviral state in the host to effectively inhibit virus replication and enhance viral clearance. However, IAV has evolved multiple mechanisms that allow it to synthesize and transport viral components by "playing games" with the host. At its heart, this review will describe how host and viral factors interact to facilitate the viral evasion of host immune responses.

7.
Acta Trop ; 250: 107109, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38151070

ABSTRACT

Q fever is a significant zoonotic disease caused by Coxiella burnetii, an obligate intracellular gram-negative bacterium. Although C. burnetii infection has been identified in various animal species, domestic ruminants serve as the primary reservoirs and main sources of human infection. Understanding of the epidemiology of C. burnetii in domestic ruminants is crucial for preventing and controlling of C. burnetii infection in humans. In this study, spleen tissues from sheep and goats were collected in Hennan province, China. Through PCR screening, C. burnetii was detected in sheep and goats in Henan province with an overall infection rate of 6.8 %. Sequence comparison and phylogenetic analysis revealed that all newly identified C. burnetii strains shared a close genetic relationship with those found in humans worldwide. These findings highlight the high risk of C. burnetii infection among slaughterhouse workers and emphasize the importance of epidemiological studies that investigate samples from both humans and animals within the "One Health" framework. Such surveillance will contribute to a better understanding of the epidemic situation and aid in the development of effective prevention and control strategies for C. burnetii infections in humans.


Subject(s)
Coxiella burnetii , Goat Diseases , Q Fever , Sheep Diseases , Animals , Sheep , Humans , Q Fever/epidemiology , Q Fever/veterinary , Goats , Molecular Epidemiology , Phylogeny , Seroepidemiologic Studies , Goat Diseases/epidemiology , Goat Diseases/microbiology , Sheep Diseases/microbiology , Coxiella burnetii/genetics , Ruminants/microbiology , China/epidemiology
8.
Front Vet Sci ; 11: 1389264, 2024.
Article in English | MEDLINE | ID: mdl-38756518

ABSTRACT

The genus Hepacivirus comprises a diverse range of genetically distinct viruses that infect both mammalian and non-mammalian hosts, with some posing significant risks to human and animal health. Members of the genus Hepacivirus are typically classified into fourteen species (Hepacivirus A-N), with ongoing discoveries of novel hepaciviruses like Hepacivirus P and Hepacivirus Q. In this study, a novel Hepacivirus was identified in duck liver samples collected from live poultry markets in Hunan province, China, using unbiased high-throughput sequencing and meta-transcriptomic analysis. Through sequence comparison and phylogenetic analysis, it was determined that this newly discovered Hepacivirus belongs to a new subspecies of Hepacivirus Q. Moreover, molecular screening revealed the widespread circulation of this novel virus among duck populations in various regions of Hunan province, with an overall prevalence of 13.3%. These findings significantly enhence our understanding of the genetic diversity and evolution of hepaciviruses, emphasizing the presence of genetically diverse hepaciviruses duck populations in China. Given the broad geographical distribution and relatively high positive rate, further investigations are essential to explore any potential associations between Hepacivirus Q and duck-related diseases.

9.
Ticks Tick Borne Dis ; 14(3): 102136, 2023 05.
Article in English | MEDLINE | ID: mdl-36736131

ABSTRACT

Ticks play an important role in the evolution and transmission of Anaplasmataceae bacteria which are agents of emerging infectious diseases. In this study, a total of 1286 adult ticks belonging to five species were collected from cattle, goats, horses and vegetation in Harbin area, Heilongjiang province, northeastern China. The tick-borne Anaplasmataceae bacteria were identified by amplifying and sequencing the 16S rRNA (rrs) and heat shock protein-60 encoding (groEL) genes. The results showed that Ixodes persulcatus was dominant (38.8%, 499/1283) among the five tick species, and Anaplasmataceae bacteria were detected in all tick species with an overall prevalence of 7.4%. Four species of Anaplasmataceae bacteria (Anaplasma phagocytophilum, Anaplasma ovis, Anaplasma bovis, and "Candidatus Neoehrlichia mikurensis"), which are pathogenic to humans and/or animals, were identified from tick samples by phylogenetic analyzes of the rrs and groEL gene sequences. Interestingly, the cluster 1 strains were first identified in Asian, and a novel cluster was also detected in this study. These data revealed the genetic diversity of Anaplasmataceae bacteria circulating in ticks in Harbin area, highlighting the need to investigate these tick-borne pathogens and their risks to human and animal health.


Subject(s)
Anaplasmataceae , Ixodes , Animals , Cattle , Humans , Horses , Anaplasmataceae/genetics , RNA, Ribosomal, 16S/genetics , Phylogeny , Ixodes/microbiology , Goats , China/epidemiology
10.
Front Vet Sci ; 10: 1093898, 2023.
Article in English | MEDLINE | ID: mdl-36937022

ABSTRACT

Bovine hepacivirus (BovHepV) is a member of the genus Hepacivirus of the family Flaviviridae, which can cause acute or persistent infections in cattle. Currently, BovHepV strains identified in cattle populations worldwide can be classified into two genotypes with eight subtypes in genotype 1. BovHepV has been identified in a wide geographic area in China. Interestingly, the viral RNA of BovHepV has also been detected in ticks in Guangdong province, China. In this study, Rhipicephalus microplus tick samples were collected in Heilongjiang province, northeastern China, and BovHepV was screened with an overall positive rate of 10.9%. Sequence comparison and phylogenetic analysis showed that the BovHepV strains detected in this study belong to the subtype G. This is the first report about the detection of BovHepV in ticks in Heilongjiang province, China, which expands our knowledge that ticks may be a transmission vector of BovHepV.

11.
Acta Trop ; 245: 106978, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37414268

ABSTRACT

Canine circovirus (CanineCV) is a single-stranded DNA virus that circulates in dogs and wild carnivores around the world. It has been suggested to be associated with diseases of respiratory and gastrointestinal systems, though its pathogenic potential remains unclear. Currently, CanineCV is divided into six genotypes (genotype 1-6), and genotypes 2, 3, and 4 have been described in China. In this study, 359 blood samples from pet dogs with or without clinical signs were collected in Harbin city. After PCR screening, a total of 34 samples were tested positive for CanineCV, and nine full-length genome sequences were recovered from positive samples. Pairwise sequence comparison showed that they shared 82.4-99.3% genome-wide identity with other CanineCVs available in GenBank. Additionally, recombination events were detected, all of which were determined to be associated with sequences obtained in China. The reconstructed phylogenetic tree based on the recombination-free complete genome sequences revealed that the complete genome sequences generated herein were clustered into genotypes 1 and 3. Furthermore, purifying selection was the dominant evolutionary pressure acting on the genomes of CanineCV. These results expand the knowledge about the genetic diversity of CanineCV circulating in China, and also promote us to better understand the evolution of CanineCV.


Subject(s)
Circovirus , Dogs , Animals , Phylogeny , Circovirus/genetics , Genome, Viral , Genotype , China/epidemiology
12.
Viruses ; 15(8)2023 08 08.
Article in English | MEDLINE | ID: mdl-37632047

ABSTRACT

Hantaviridae currently encompasses seven genera and 53 species. Multiple hantaviruses such as Hantaan virus, Seoul virus, Dobrava-Belgrade virus, Puumala virus, Andes virus, and Sin Nombre virus are highly pathogenic to humans. They cause hemorrhagic fever with renal syndrome (HFRS) and hantavirus cardiopulmonary syndrome or hantavirus pulmonary syndrome (HCPS/HPS) in many countries. Some hantaviruses infect wild or domestic animals without causing severe symptoms. Rodents, shrews, and bats are reservoirs of various mammalian hantaviruses. Recent years have witnessed significant advancements in the study of hantaviruses including genomics, taxonomy, evolution, replication, transmission, pathogenicity, control, and patient treatment. Additionally, new hantaviruses infecting bats, rodents, shrews, amphibians, and fish have been identified. This review compiles these advancements to aid researchers and the public in better recognizing this zoonotic virus family with global public health significance.


Subject(s)
Chiroptera , Orthohantavirus , RNA Viruses , Animals , Humans , Public Health , Shrews , Orthohantavirus/genetics
13.
Microorganisms ; 10(5)2022 Apr 22.
Article in English | MEDLINE | ID: mdl-35630318

ABSTRACT

Leptospirosis is a neglected zoonotic disease with global importance caused by pathogenic Leptospira. Rodents are considered the most significant reservoirs for both human and animal infection. Historically, Guangzhou has been an endemic region of human leptospirosis. Although the incidence in humans has significantly decreased in the past decades in China, the epidemiology of pathogenic Leptospira in wild rodents is of great significance for the prevention and control of human leptospirosis. In this study, a total of 296 wild rodents were trapped in urban areas of Guangzhou, in southern China, in 2020. Three pathogenic Leptospira species, i.e., Leptospira interrogans, L. borgpetersenii, and L. kirschneri, were detected by nested PCR in this wild rodent population with an overall prevalence of 9.5%. Additionally, L. interrogans was detected in three of the four captured rodent species, and the relative high prevalence suggests that L. interrogans probably represents the preponderant species of the pathogenic Leptospira circulating in Guangzhou. Taken together, this study reveals a high genetic diversity of pathogenic Leptospira disseminated among wild rodents in the urban areas of Guangzhou and emphasizes that the risk for the occurrence of human leptospirosis in Guangzhou remains high.

14.
Viruses ; 14(2)2022 02 11.
Article in English | MEDLINE | ID: mdl-35215964

ABSTRACT

Hepaciviruses represent a group of viruses that pose a significant threat to the health of humans and animals. During the last decade, new members of the genus Hepacivirus have been identified in various host species worldwide, indicating the widespread distribution of genetically diversified hepaciviruses among animals. By applying unbiased high-throughput sequencing, a novel hepacivirus, provisionally designated Hepacivirus Q, was discovered in duck liver samples collected in Guangdong province of China. Genetic analysis revealed that the complete polyprotein of Hepacivirus Q shares 23.9-46.6% amino acid identity with other representatives of the genus Hepacivirus. Considering the species demarcation criteria for hepaciviruses, Hepacivirus Q should be regarded as a novel hepacivirus species of the genus Hepacivirus within the family Flaviviridae. Phylogenetic analyses also indicate the large genetic distance between Hepacivirus Q and other known hepaciviruses. Molecular detection of this novel hepacivirus showed an overall prevalence of 15.9% in duck populations in partial areas of Guangdong province. These results expand knowledge about the genetic diversity and evolution of hepaciviruses and indicate that genetically divergent hepaciviruses are circulating in duck populations in China.


Subject(s)
Ducks/virology , Genetic Variation , Hepacivirus/genetics , Poultry Diseases/epidemiology , Animals , Animals, Domestic , China/epidemiology , Genome, Viral , Hepacivirus/classification , Hepacivirus/isolation & purification , Host Specificity , Phylogeny , Polyproteins/genetics , Poultry Diseases/virology
15.
Front Microbiol ; 13: 942587, 2022.
Article in English | MEDLINE | ID: mdl-35859747

ABSTRACT

Bartonella spp. are gram-negative bacteria that can infect a wide spectrum of mammals. Rodents are considered to be the natural reservoir of many Bartonella species that are transmitted by various blood-sucking arthropods. The close contact between rodents and humans in urban areas increased the chance of transmitting rodent-borne Bartonella to humans. Investigation of the epidemiological characteristics of Bartonella infection in rodents is of great significance for the prevention and control of human Bartonellosis. In this study, rodents were captured to monitor the prevalence of Bartonella in urban areas of Guangzhou city. Six official or candidate species of Bartonella, including two confirmed zoonotic species, were detected with an overall prevalence of 6.4% in rodents captured herein. In addition, Rattus norvegicus was the predominant host species for Bartonella infection, and B. queenslandensis was the dominant species circulating in rodents in these areas. These results provide insights into the prevalence and genetic diversity of Bartonella species circulating in rodents in the urban areas of Guangzhou, and also urged the surveillance of rodent-associated Bartonella species in these areas.

16.
Front Microbiol ; 13: 977405, 2022.
Article in English | MEDLINE | ID: mdl-36090082

ABSTRACT

The increasing prevalence and transmission of tick-borne diseases, especially those emerging ones, have posed a significant threat to public health. Thus, the discovery of neglected pathogenic agents carried and transmitted by ticks is urgently needed. Using unbiased high-throughput sequencing, a novel Orthonairovirus designated as Meihua Mountain virus (MHMV), was identified in bloodsucking ticks collected from cattle and wild boars in Fujian province, Southeastern China. The full-length genome was determined by RT-PCR and RACE. Genomic architecture of MHMV shares typical features with orthonairoviruses. Phylogenetic analyses suggested that MHMV is clustered into the Nairobi sheep disease (NSD) genogroup of the genus Orthonairovirus and is closely related to the Hazara virus. The RdRp, GPC, and N protein of MHMV shares 62.3%-83.5%, 37.1%-66.1%, and 53.4%-77.3% amino acid identity with other NSD genogroup viruses, respectively, representing a novel species. The overall pooled prevalence of MHMV in ticks was 2.53% (95% CI: 1.62%-3.73%, 22 positives of 134 tick pools), with 7.38% (95% CI: 3.84%-12.59%, 11 positives of 18 pools) in Haemaphysalis hystricis, 6.02% (95% CI: 1.85%-14.22%, four positives of eight pools) in H. formosensis, 25.03% (95% CI: 9.23%-54.59%, six positive of eight pools) in Dermacentor taiwanensis, and 0.16% (95% CI: 0.01%-0.72%, one positive of 100 pools) in Rhipicephalus microplus. This study presented the first report of tick-carried Orthonairovirus in Fujian province and highlighted the broad geographic distribution and high genetic diversity of orthonairoviruses in China.

17.
Viruses ; 13(11)2021 11 02.
Article in English | MEDLINE | ID: mdl-34835012

ABSTRACT

Hepaciviruses represent a group of viruses that pose a significant threat to the health of humans and animals. New members of the genus Hepacivirus in the family Flaviviridae have recently been identified in a wide variety of host species worldwide. Similar to the Hepatitis C virus (HCV), bovine hepacivirus (BovHepV) is hepatotropic and causes acute or persistent infections in cattle. BovHepVs are distributed worldwide and classified into two genotypes with seven subtypes in genotype 1. In this study, three BovHepV strains were identified in the samples of ticks sucking blood on cattle in the Guangdong province of China, through unbiased high-throughput sequencing. Genetic analysis revealed the polyprotein-coding gene of these viral sequences herein shared 67.7-84.8% nt identity and 76.1-95.6% aa identity with other BovHepVs identified worldwide. As per the demarcation criteria adopted for the genotyping and subtyping of HCV, these three BovHepV strains belonged to a novel subtype within the genotype 1. Additionally, purifying selection was the dominant evolutionary pressure acting on the genomes of BovHepV, and genetic recombination was not common among BovHepVs. These results expand the knowledge about the genetic diversity and evolution of BovHepV distributed globally, and also indicate genetically divergent BovHepV strains were co-circulating in cattle populations in China.


Subject(s)
Cattle Diseases/virology , Genetic Variation , Hepacivirus/genetics , Hepacivirus/isolation & purification , Ticks/virology , Animals , Cattle , China , Evolution, Molecular , Genome, Viral , Genotype , Hepacivirus/classification , Hepatitis C/virology , Host Specificity , Persistent Infection , Phylogeny , Polyproteins/genetics , RNA, Viral/genetics , Transcriptome
18.
Nat Med ; 27(3): 434-439, 2021 03.
Article in English | MEDLINE | ID: mdl-33603240

ABSTRACT

The genus Orthonairovirus, which is part of the family Nairoviridae, includes the important tick-transmitted pathogens Crimean-Congo hemorrhagic fever virus and Nairobi sheep disease virus, as well as many other poorly characterized viruses found in ticks, birds and mammals1,2. In this study, we identified a new orthonairovirus, Songling virus (SGLV), from patients who reported being bitten by ticks in Heilongjiang Province in northeastern China. SGLV shared similar genomic and morphological features with orthonairoviruses and phylogenetically formed a unique clade in Tamdy orthonairovirus of the Nairoviridae family. The isolated SGLV induced cytopathic effects in human hepatoma cells in vitro. SGLV infection was confirmed in 42 hospitalized patients analyzed between 2017 and 2018, with the main clinical manifestations being headache, fever, depression, fatigue and dizziness. More than two-thirds (69%) of patients generated virus-specific antibody responses in the acute phase. Taken together, these results suggest that this newly discovered orthonairovirus is associated with human febrile illness in China.


Subject(s)
Fever/complications , Nairovirus/isolation & purification , Nairovirus/pathogenicity , Tick-Borne Diseases/virology , Virus Diseases/virology , Adult , Aged , China , Female , Fever/virology , Humans , Male , Middle Aged , Tick-Borne Diseases/complications , Virus Diseases/complications
19.
Zhongguo Shi Yan Xue Ye Xue Za Zhi ; 28(6): 1899-1903, 2020 Dec.
Article in Zh | MEDLINE | ID: mdl-33283717

ABSTRACT

OBJECTIVE: To investigate the expression of costimulatory molecule Tim3 and its subsets on NK cells in patients with acute myeloid leukemia. METHODS: 30 patients with acute myeloid leukemia treated in our hospital from August 2016 to August 2018 were randomly selected as the AML group, and 30 healthy persons in our hospital during the same period were randomly selected as the control group. The expression levels of CD56dim NK cells/CD3-CD56+NK cells and Tim3 on CD56dimNK cells in peripheral blood, CD56bright NK cells/CD3-CD56+NK cells and Tim3 on CD56brightNK cells in peripheral blood of the two groups were estimated. The expression of CD3-CD56+NK cells/lymphocytes and their Tim3, CD56dimNK cells/CD3-CD56+NK cells and their Tim3 expression, Tim3+NK, Tim3-NK IFN-gamma secretion levels before and after chemotherapy in the AML group were analyzed. RESULTS: The expression levels of CD56dim NK cells/CD3-CD56+NK cells and their Tim3 in peripheral blood of the AML group were significantly lower than those of the control group (P<0.05). The expression levels of CD56bright NK cells/CD3-CD56+NK cells and their Tim3 in peripheral blood of the AML group were significantly higher than those of the control group (P<0.05). CD3-CD56+NK cells/lymphocytes and Tim3+/CD3-CD56+NK cells in complete remission patients were significantly higher than at initial diagnosis (P<0.05). CD3-CD56+NK cells/lymphocytes and Tim3+/CD3-CD56+NK cells in patients with course of treatment ≥2 times and remission patients time more than 3 months were significantly higher than those in patients with chemotherapy course 1 time and remission time≤3 months (P<0.05). The expression levels of CD56dim NK cells/CD3-CD56+NK cells and their Tim3 in peripheral blood of patients at complete remission were significantly higher than at initial diagnosis (P<0.05). The expression levels of CD56bright NK cells/CD3-CD56+NK cells and Tim3 in peripheral blood of patients at complete remission were significantly lower than of the patients at initial diagnosis (P<0.05), and the IFN-gamma secretion level of Tim3+ NK cells was significantly lower than that of Tim3-NK cells in these patients (P<0.05). CONCLUSION: The expression of costimulatory molecule Tim3 in NK cells and its subsets of patients with acute myeloid leukemia is down-regulated.


Subject(s)
Hepatitis A Virus Cellular Receptor 2 , Killer Cells, Natural , Leukemia, Myeloid, Acute , CD56 Antigen , Flow Cytometry , Hepatitis A Virus Cellular Receptor 2/metabolism , Humans
20.
J Vet Diagn Invest ; 32(2): 287-290, 2020 Mar.
Article in English | MEDLINE | ID: mdl-32065061

ABSTRACT

Clostridium botulinum is an important pathogen that causes botulism in humans and animals worldwide. C. botulinum group III strains, which produce a single toxin of type C or D or a chimeric toxin of type C/D or D/C, are responsible for botulism in a wide range of animal species including cattle and birds. We used unbiased high-throughput RNA sequencing (i.e., metatranscriptomics) to identify a strain of group III C. botulinum from a deceased Mongolian wild ass (Equus hemionus). The strain was closely related to some European strains. Genetic analysis of the recovered bacterial sequences showed that the C. botulinum strain identified might represent a type C/D strain of group III. Infection by C. botulinum producing the mosaic toxin of type C/D is the most likely cause of the death of the wild ass.


Subject(s)
Botulism/veterinary , Clostridium botulinum/physiology , Equidae , Transcriptome , Animals , Botulism/diagnosis , Botulism/microbiology , China , Clostridium botulinum/genetics , Fatal Outcome
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