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Topic:Virus

The study of viral infections that affect equine species assesses the relationship between viruses and horses. Infections can lead to a range of clinical symptoms and may impact the health and performance of horses. Common equine viruses include Equine Influenza Virus, Equine Herpesvirus, and West Nile Virus, among others. Understanding the mechanisms of viral transmission, pathogenesis, and host immune responses is essential for developing effective prevention and treatment strategies. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, molecular biology, and clinical management of viral infections in horses.
Zoonotic Alphaviruses in Fatal and Neurologic Infections in Wildlife and Nonequine Domestic Animals, South Africa.
Emerging infectious diseases    May 23, 2020   Volume 26, Issue 6 1182-1191 doi: 10.3201/eid2606.191179
Steyn J, Fourie I, Steyl J, Williams J, Stivaktas V, Botha E, van Niekerk S, Reininghaus B, Venter M.Alphaviruses from Africa, such as Middelburg virus (MIDV), and Sindbis virus (SINV), were detected in horses with neurologic disease in South Africa, but their host ranges remain unknown. We investigated the contribution of alphaviruses to neurologic infections and death in wildlife and domestic animals in this country. During 2010-2018, a total of 608 clinical samples from wildlife and nonequine domestic animals that had febrile, neurologic signs or unexplained deaths were tested for alphaviruses. We identified 32 (5.5%) of 608 alphavirus infections (9 SINV and 23 MIDV), mostly in neurotissue...
Impact of the Southern Oscillation Index, Temperature, and Precipitation on Eastern Equine Encephalitis Virus Activity in Florida.
Journal of medical entomology    May 22, 2020   Volume 57, Issue 5 1604-1613 doi: 10.1093/jme/tjaa084
Miley KM, Downs J, Beeman SP, Unnasch TR.Eastern equine encephalitis virus (EEEV), an Alphavirus from family Togaviridae, is a highly pathogenic arbovirus affecting the eastern United States, especially Florida. Effects of the Southern Oscillation Index (SOI), precipitation, and cooling degree days on EEEV horse case data in Florida from 2004 to 2018 were modeled using distributed lag nonlinear models (DLNMs). The analysis was conducted at statewide and regional scales. DLNMs were used to model potential delayed effects of the covariates on monthly counts of horse cases. Both models confirmed a seasonal trend in EEEV transmission and...
Complete genomic sequences of Venezuelan equine encephalitis virus subtype IIID isolates from mosquitoes.
Archives of virology    May 16, 2020   Volume 165, Issue 7 1715-1717 doi: 10.1007/s00705-020-04647-x
Padilla SL, Prieto K, Dohm DJ, Turell MJ, Klein TA, Fernández R, Watts DM, Lowen RG, Palacios GF, Pitt ML, Wiley MR, Nasar F.Venezuelan equine encephalitis virus (VEEV) is an important pathogen of medical and veterinary importance in the Americas. In this report, we present the complete genome sequences of five VEEV isolates obtained from pools of Culex (Melanoconion) gnomatos (4) or Culex (Melanoconion) pedroi (1) from Iquitos, Peru. Genetic and phylogenetic analyses showed that all five isolates grouped within the VEEV complex sister to VEEV IIIC and are members of subtype IIID. This is the first report of full-length genomic sequences of VEEV IIID.
Equine penile squamous cell carcinoma: expression of biomarker proteins and EcPV2.
Scientific reports    May 12, 2020   Volume 10, Issue 1 7863 doi: 10.1038/s41598-020-64014-3
Arthurs C, Suarez-Bonnet A, Willis C, Xie B, Machulla N, Mair TS, Cao K, Millar M, Thrasivoulou C, Priestnall SL, Ahmed A.Equine penile squamous cell carcinoma (EpSCC) is a relatively common cutaneous neoplasm with a poor prognosis. In this study, we aimed to determine the protein expression and colocalisation of FRA1, c-Myc, Cyclin D1, and MMP7 in normal (NT), tumour (T), hyperplastic epidermis and/or squamous papilloma (Hyp/Pap), poorly-differentiated (PDSCC), or well-differentiated (WDSCC) EpSCC using a tissue array approach. Further objectives were to correlate protein expression to (i) levels of inflammation, using a convolutional neural network (ii) equine papillomavirus 2 (EcPV2) infection, detected using ...
West Nile Virus Mosquito Vectors (Diptera: Culicidae) in Germany.
Viruses    April 28, 2020   Volume 12, Issue 5 493 doi: 10.3390/v12050493
Kampen H, Holicki CM, Ziegler U, Groschup MH, Tews BA, Werner D.In 2018, West Nile virus (WNV) broke out for the first time in Germany, with continuation of the epidemic in 2019, involving birds, horses and humans. To identify vectors and characterize the virus, mosquitoes were collected in both years in zoological gardens and on a horse meadow immediately following the diagnosis of disease cases in birds and horses. Mosquitoes were identified and screened for WNV by qRT-PCR, with virus-positive samples being sequenced for the viral envelope protein gene. While no positive mosquitoes were found in 2018, seven mosquito pools tested positive for WNV in 2019 ...
Smartphone-based multiplex 30-minute nucleic acid test of live virus from nasal swab extract.
Lab on a chip    April 26, 2020   Volume 20, Issue 9 1621-1627 doi: 10.1039/d0lc00304b
Sun F, Ganguli A, Nguyen J, Brisbin R, Shanmugam K, Hirschberg DL, Wheeler MB, Bashir R, Nash DM, Cunningham BT.Rapid, sensitive and specific detection and reporting of infectious pathogens is important for patient management and epidemic surveillance. We demonstrated a point-of-care system integrated with a smartphone for detecting live virus from nasal swab media, using a panel of equine respiratory infectious diseases as a model system for corresponding human diseases such as COVID-19. Specific nucleic acid sequences of five pathogens were amplified by loop-mediated isothermal amplification on a microfluidic chip and detected at the end of reactions by the smartphone. Pathogen-spiked horse nasal swab...
Epidemiological and virological findings during an outbreak of equine influenza in Uruguay in 2018.
Revue scientifique et technique (International Office of Epizootics)    April 15, 2020   Volume 38, Issue 3 737-749 doi: 10.20506/rst.38.3.3023
Castro ER, Perez R, Rodriguez S, Bassetti L, Negro R, Vidal R.Equine influenza is one of the major respiratory infectious diseases in horses. In 2018, equine influenza virus (EIV) was confirmed as the cause of outbreaks of respiratory disease in horses in Chile and Argentina. In the same year, for the first time in Uruguay, EIV infection was confirmed by isolation and molecular analysis to be the cause of respiratory disease among hundreds of clinically affected thoroughbred horses in training and racing facilities. The virus was detected in nasopharyngeal swabs by a pan-reactive influenza type A realtime reverse transcription polymerase chain reaction (...
Management Strategies for Reducing the Risk of Equines Contracting Vesicular Stomatitis Virus (VSV) in the Western United States.
Journal of equine veterinary science    April 14, 2020   Volume 90 103026 doi: 10.1016/j.jevs.2020.103026
Peck DE, Reeves WK, Pelzel-McCluskey AM, Derner JD, Drolet B, Cohnstaedt LW, Swanson D, McVey DS, Rodriguez LL, Peters DPC.Vesicular stomatitis viruses (VSVs) cause a condition known as vesicular stomatitis (VS), which results in painful lesions in equines, cattle, swine, and camelids, and when transmitted to humans, can cause flu-like symptoms. When animal premises are affected by VS, they are subject to a quarantine. The equine industry more broadly may incur economic losses due to interruptions of animal trade and transportation to shows, competitions, and other events. Equine owners, barn managers, and veterinarians can take proactive measures to reduce the risk of equines contracting VS. To identify appropria...
Molecular detection, histopathological analysis, and immunohistochemical characterization of equine infectious anemia virus in naturally infected equids.
Archives of virology    April 7, 2020   Volume 165, Issue 6 1333-1342 doi: 10.1007/s00705-020-04616-4
Bueno BL, Câmara RJF, Moreira MVL, Galinari GCF, Souto FM, Victor RM, Bicalho JM, Ecco R, Dos Reis JKP.Equine infectious anemia (EIA), a disease caused by equine infectious anemia virus (EIAV), is considered an obstacle to the development of the horse industry. There is no treatment or vaccine available for EIA, and its pathogenesis, as well as the immune response against the virus, is not fully understood. Therefore, an immunohistochemistry assay was developed for the detection of viral antigens in tissues of equids naturally infected with EIAV. Sections of organs of six equids from Apodi-RN, Brazil, that tested positive for EIA by serological tests (ELISA and AGID) were fixed in 10% formalin ...
Prevalence of equine hepacivirus infection in Mongolia.
Virus research    April 4, 2020   Volume 282 197940 doi: 10.1016/j.virusres.2020.197940
Date T, Sugiyama M, Lkhagvasuren D, Wakita T, Oyunsuren T, Mizokami M.Equine hepacivirus (EHV) belongs to the hepacivirus A and is related to hepatitis C virus (HCV). This virus shows hepatic tropism and is known to chronically infect horses. EHV has been reported from various countries, but the prevalence in Mongolia, where large horse populations are pastured, remains unknown. This study collected serum samples from horses in six areas across Mongolia, in order to investigate the status of infection. The possibility of human infection was also examined. The results showed an infection rate among horses of about 40 % in all regions. However, no evidence of EHV ...
Comparative analysis of CpG islands in equine infectious anemia virus strains.
Virus genes    April 1, 2020   Volume 56, Issue 3 339-346 doi: 10.1007/s11262-020-01749-1
Liu Q, Yu YY, Wang HY.Increasing evidence suggests that DNA methylation has key roles in the replication of retroviruses, including lentiviruses, and pathogenesis of diseases. However, the precise characteristics of CpG islands are not known for many retroviruses. In this study, we compared the distribution of CpG islands among strains of equine infectious anemia virus (EIAV), a lentivirus in the family Retroviridae and a model for HIV research. We identified CpG islands in 32 full-length EIAV genomic sequences obtained from the GenBank database using MethPrimer. Only one CpG island, from 100 to 120 bp, was identi...
Detection of the epidemic of the H3N8 subtype of the equine influenza virus in large-scale donkey farms.
International journal of veterinary science and medicine    March 31, 2020   Volume 8, Issue 1 26-30 doi: 10.1080/23144599.2020.1739844
Yongfeng Y, Xiaobo S, Nan X, Jingwen Z, Wenqiang L.To monitor the occurrence of equine influenza in large-scale donkey farms in Liaocheng City, Shandong Province, serological investigation and sequence analysis of HA/M protein gene of equine influenza virus (EIV) were carried out. Samples (n = 65) of the lung and nasal swab were collected in six different large-scale donkey farms and detected with RT-PCR for HA and M protein gene. The homology and evolution of HA and M genes were analysed with known sequences. Antibody titres of serum samples (n = 120, unvaccinated) level was determined by the HI test. The average seropositive rate was 32....
Ozone therapy in veterinary medicine: A review.
Research in veterinary science    March 25, 2020   Volume 130 240-246 doi: 10.1016/j.rvsc.2020.03.026
Sciorsci RL, Lillo E, Occhiogrosso L, Rizzo A.Ozone (O) is a triatomic form of oxygen. As O rapidly dissociates into water and releases a reactive form of oxygen that may oxidize cells, the gas mixture of O/O is used in medicine. ATP is widely available for cellular activity. O can be administered via the systemic and local routes. Although O is known as one of the most powerful oxidants, it also promotes antioxidant enzymes. Additionally, it stimulates some of the cells of the immune system and inactivates pathogens, including bacteria, fungi, yeasts, protozoa, and viruses. Owing to these activities, O is used to improve several diseases...
First report of equine parvovirus-hepatitis-associated Theiler’s disease in Europe.
Equine veterinary journal    March 25, 2020   Volume 52, Issue 6 841-847 doi: 10.1111/evj.13254
Vengust M, Jager MC, Zalig V, Cociancich V, Laverack M, Renshaw RW, Dubovi E, Tomlinson JE, Van de Walle GR, Divers TJ.Equine parvovirus-hepatitis (EqPV-H) has been proposed as the aetiological cause of Theiler's disease, also known as serum hepatitis. EqPV-H-associated Theiler's disease has not been previously reported in Europe. Objective: To determine whether EqPV-H infection was associated with a 2018-2019 outbreak of Theiler's disease in four horses on a studfarm. Methods: Descriptive case series. Methods: The medical records of four horses from the same farm diagnosed with fatal Theiler's disease were examined retrospectively. Information collected included a clinical history, physical examination findin...
Tropism, pathology, and transmission of equine parvovirus-hepatitis.
Emerging microbes & infections    March 20, 2020   Volume 9, Issue 1 651-663 doi: 10.1080/22221751.2020.1741326
Tomlinson JE, Jager M, Struzyna A, Laverack M, Fortier LA, Dubovi E, Foil LD, Burbelo PD, Divers TJ, Van de Walle GR.Equine parvovirus-hepatitis (EqPV-H) has recently been associated with cases of Theiler's disease, a form of fulminant hepatic necrosis in horses. To assess whether EqPV-H is the cause of Theiler's disease, we first demonstrated hepatotropism by PCR on tissues from acutely infected horses. We then experimentally inoculated horses with EqPV-H and 8 of 10 horses developed hepatitis. One horse showed clinical signs of liver failure. The onset of hepatitis was temporally associated with seroconversion and a decline in viremia. Liver histology and in situ hybridization showed lymphocytic infiltrate...
A Subset of Equine Gastric Squamous Cell Carcinomas Is Associated With Equus Caballus Papillomavirus-2 Infection.
Veterinary pathology    March 17, 2020   Volume 57, Issue 3 427-431 doi: 10.1177/0300985820908797
Alloway E, Linder K, May S, Rose T, DeLay J, Bender S, Tucker A, Luff J.Squamous cell carcinoma (SCC) is the most common neoplasm of the equine stomach. However, the mechanisms underlying malignant transformation are unknown. As papillomavirus-2 (EcPV-2) is a likely cause of some genital SCCs, we hypothesized that EcPV-2 is associated with a subset of equine gastric SCCs. To this aim, we performed polymerase chain reaction (PCR) and in situ hybridization (ISH) for EcPV-2 E6/ E7 oncogenes on 11 gastric SCCs and on gastric samples from 15 control horses with no SCC. PCR for EcPV-2 was positive in 7/11 (64%) gastric SCCs; non-SCC gastric samples were all negative. I...
Molecular and cellular evidence of natural Venezuelan equine encephalitis virus infection in frugivorous bats in Colombia.
Veterinary world    March 16, 2020   Volume 13, Issue 3 495-501 doi: 10.14202/vetworld.2020.495-501
Guzmán C, Calderón A, Oviedo T, Mattar S, Castañeda J, Rodriguez V, Moraes Figueiredo LT.Venezuelan equine encephalitis virus (VEEV) is an alphavirus that causes encephalitis with a high impact on public health in Latin America. However, only in Guatemala, Trinidad and Tobago, and Mexico have found antibodies in VEEV in bats, using immunohistochemistry, the sensitivity and specificity are improved; thus, it is better for demonstrating natural infection in bats as potential hosts. This study aimed to determine the presence of VEEV in tissues of frugivorous bats. Methods: A prospective descriptive cross-sectional study with a non-probabilistic sampling was carried out in 12 localiti...
RNA Extraction from Equine Samples for Equine Influenza Virus.
Methods in molecular biology (Clifton, N.J.)    March 15, 2020   Volume 2123 369-382 doi: 10.1007/978-1-0716-0346-8_28
Balasuriya UBR.The primary goals of this chapter are to discuss common viral RNA isolation and purification methods that are routinely used by various diagnostic laboratories and to highlight the advantages and drawbacks of each method and to identify the most suitable and reliable method to increase the sensitivity and specificity of RT-PCR assays for the detection of equine influenza virus (EIV) in clinical specimens. Our experiences and review of literature show that magnetic bead-based nucleic extraction methods (manual and automatic) work well for isolation and purification of EIV RNA from nasal swab sp...
Equine Influenza Diagnosis: Sample Collection and Transport.
Methods in molecular biology (Clifton, N.J.)    March 15, 2020   Volume 2123 361-367 doi: 10.1007/978-1-0716-0346-8_27
Chambers TM, Reedy SE.In horses, presumptive diagnosis of equine influenza is commonly made on the basis of clinical signs. This alone is insufficient for confirmation of equine influenza, because other equine infectious respiratory diseases can in some degree have similar clinical presentations. Surveillance and control of equine influenza also necessitate detection of subclinical cases. Effective diagnosis of equine influenza virus infection is critically dependent on obtaining adequate specimens of virus-containing respiratory secretions for testing. These specimens are also valuable as sources for isolation of ...
A Brief Introduction to Equine Influenza and Equine Influenza Viruses.
Methods in molecular biology (Clifton, N.J.)    March 15, 2020   Volume 2123 355-360 doi: 10.1007/978-1-0716-0346-8_26
Chambers TM.Equine influenza virus (EIV) is a common respiratory pathogen of horses and other equids in most parts of the world. EIV are Type A influenza viruses and two subtypes are known: H3N8 and H7N7. Both are believed to have evolved from avian influenza virus ancestors. The H3N8 subtype circulates widely, but the H7N7 subtype is thought to be extinct. The clinical disease in horses, caused by either subtype, is an upper respiratory infection of varying severity depending upon the immune status of the individual animal. It is not normally life-threatening in itself except in very young foals; however...
Type A Influenza Virus Detection from Horses by Real-Time RT-qPCR and Insulated Isothermal RT-PCR.
Methods in molecular biology (Clifton, N.J.)    March 15, 2020   Volume 2123 383-392 doi: 10.1007/978-1-0716-0346-8_29
Balasuriya UBR.Equine influenza (EI) is a highly contagious disease of horses caused by the equine influenza virus (EIV) H3N8 subtype. EI is the most important respiratory virus infection of horses and can disrupt major equestrian events and cause significant economic losses to the equine industry worldwide. Influenza H3N8 virus spreads rapidly in susceptible horses and can result in very high morbidity within 24-48 h after exposure to the virus. Therefore, rapid and accurate diagnosis of EI is critical for implementation of prevention and control measures to avoid the spread of EIV and to reduce the econom...
Equine Parvovirus-Hepatitis in China: Characterization of Its Genetic Diversity and Evidence for Natural Recombination Events Between the Chinese and American Strains.
Frontiers in veterinary science    March 10, 2020   Volume 7 121 doi: 10.3389/fvets.2020.00121
Lu G, Wu L, Ou J, Li S.Equine parvovirus-hepatitis (EqPV-H) was first reported in a horse that died of equine serum hepatitis in the USA in 2018, and was determined having a strong association with equine serum hepatitis in the following studies. As a newly discovered virus, the genomic sequences of only seven EqPV-H strains have been reported. Considering this, an epidemiological study was performed to investigate the prevalence of EqPV-H in equines in Guangdong Province in China, and obtain genomic sequences of the field prevalent EqPV-H strains. The detection rate of EqPV-H was finally determined to be 8.33% (95%...
African Horse Sickness Fever in Vaccinated Horses: Short Communication.
Journal of equine veterinary science    March 5, 2020   Volume 88 102967 doi: 10.1016/j.jevs.2020.102967
Wernery U, Joseph S, Raghavan R, Dyer B, Spendrup S.Our investigation has shown that multiple vaccinations with inactivated African horse sickness (AHS) vaccines containing all 9 serotypes and produced at the Central Veterinary Research Laboratory in Dubai, UAE, protect horses from AHS. However, the immunization did not prevent African horse sickness fever (AHSF) in approximately 10% of the vaccinated horses despite high enzyme-linked immunosorbent assay and virus neutralizing antibodies. African horse sickness fever is a very mild form of AHS with similar clinical signs. From all 6 horses which had developed AHSF, no virus was isolated from ED...
Complete Genome Sequence of Mycoplasma felis Strain Myco-2, Isolated from an Equine Tracheal Wash Sample in Japan.
Microbiology resource announcements    February 27, 2020   Volume 9, Issue 9 doi: 10.1128/MRA.00057-20
Kinoshita Y, Niwa H, Uchida-Fujii E, Nukada T.Mycoplasma felis causes conjunctivitis in cats and respiratory diseases in horses. We report here the complete genome assembly of equine Mycoplasma felis strain Myco-2, which was isolated from an ill horse in Japan.
Spread of equine arteritis virus among Hucul horses with different EqCXCL16 genotypes and analysis of viral quasispecies from semen of selected stallions.
Scientific reports    February 19, 2020   Volume 10, Issue 1 2909 doi: 10.1038/s41598-020-59870-y
Socha W, Sztromwasser P, Dunowska M, Jaklinska B, Rola J.Equine arteritis virus (EAV) is maintained in the horse populations through persistently infected stallions. The aims of the study were to monitor the spread of EAV among Polish Hucul horses, to analyse the variability of circulating EAVs both between- and within-horses, and to identify allelic variants of the serving stallions EqCXCL16 gene that had been previously shown to strongly correlate with long-term EAV persistence in stallions. Serum samples (n = 221) from 62 horses including 46 mares and 16 stallions were collected on routine basis between December 2010 and May 2013 and tested f...
Identification of animal hosts of Fort Sherman virus, a New World zoonotic orthobunyavirus.
Transboundary and emerging diseases    February 16, 2020   Volume 67, Issue 4 1433-1441 doi: 10.1111/tbed.13499
de Oliveira Filho EF, Carneiro IO, Ribas JRL, Fischer C, Marklewitz M, Junglen S, Netto EM, Franke CR, Drexler JF.An orthobunyavirus termed Fort Sherman virus (FSV) was isolated in 1985 from a febrile US soldier in Panama, yet potential animal reservoirs remained unknown. We investigated sera from 192 clinically healthy peri-domestic animals sampled in northeastern Brazil during 2014-2018 by broadly reactive RT-PCR for orthobunyavirus RNA, including 50 cattle, 57 sheep, 35 goats and 50 horses. One horse sampled in 2018 was positive (0.5%; 95% CI, 0.01-3.2) at 6.2 × 103 viral RNA copies/mL. Genomic comparisons following virus isolation in Vero cells and deep sequencing revealed high identity of translat...
Annual booster vaccination and the risk of equine influenza to Thoroughbred racehorses.
Equine veterinary journal    February 12, 2020   Volume 52, Issue 4 509-515 doi: 10.1111/evj.13210
Gildea S, Lyons P, Lyons R, Gahan J, Garvey M, Cullinane A.Equine influenza (EI) outbreaks occurred among horses on four racing yards (two National Hunt, one Flat, one mixed National Hunt racing/breeding yard) in Ireland within a 4-week period. Objective: To carry out a detailed analysis of racing yards affected in order to identify the source of infection and monitor virus spread among a vaccinated population. Methods: Observational field study. Methods: Epidemiological and vaccination data along with repeat clinical samples were collected from 118 horses on four premises. Results: Failure to implement appropriate biosecurity measures following the i...
Molecular Detection and Genetic Characteristics of Equine Herpesvirus in Korea.
Pathogens (Basel, Switzerland)    February 11, 2020   Volume 9, Issue 2 110 doi: 10.3390/pathogens9020110
Seo MG, Ouh IO, Lee SK, Lee JS, Kwon OD, Kwak D.Respiratory diseases cause significant economic losses (especially in the horse racing industry). The present study describes the detection and genetic characteristics of equine herpesvirus (EHV) from a total of 1497 samples from clinically healthy horses in Korea, including 926 blood samples, 187 lung tissues, and 384 nasal swabs. EHV-2 and EHV-5 were detected in 386 (41.7%; 95% CI: 38.5-44.9) and 201 (21.7%; 95% CI: 19.1-24.4) blood samples, respectively, and in 25 (13.4%; 95% CI: 8.5-18.2) and 35 (18.7%; 95% CI: 13.1-24.3) lung tissues, respectively. EHV-1 and EHV-4 were not detected in eit...
Bearing the brunt: Mongolian khulan (Equus hemionus hemionus) are exposed to multiple influenza A strains.
Veterinary microbiology    February 5, 2020   Volume 242 108605 doi: 10.1016/j.vetmic.2020.108605
Soilemetzidou ES, de Bruin E, Eschke K, Azab W, Osterrieder N, Czirják GÁ, Buuveibaatar B, Kaczensky P, Koopmans M, Walzer C, Greenwood AD.The majority of influenza A virus strains are hosted in nature by avian species in the orders of Anseriformes and Charadriformes. A minority of strains have been able to cross species boundaries and establish themselves in novel non-avian hosts. Influenza viruses of horses, donkeys, and mules represent such successful events of avian to mammal influenza virus adaptation. Mongolia has over 3 million domestic horses and is home to two wild equids, the Asiatic wild ass or khulan (Equus hemionus hemionus), and Przewalski's horse (Equus ferus przewalskii). Domestic and wild equids are sympatric acr...
Special Issue “Equine Viruses”: Old “Friends” and New Foes?
Viruses    January 29, 2020   Volume 12, Issue 2 doi: 10.3390/v12020153
Paillot R.The Food and Agriculture Organization of the United Nations has recently estimated that the world equid population exceeds 110 million (FAOSTAT 2017).[...].
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