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Foot-and-mouth disease in British deer: transmission of virus to cattle, sheep and deer.

After exposure for two hours to cattle with foot-and-mouth disease, each of the five species of deer found in the British countryside became infected. Clinical disease was typical and severe in the roe and muntjac deer, with some animals dying, less severe in the sika deer and usually subclinical in the fallow and red deer. Each species transmitted disease to its own species and to cattle and sheep. The amounts of virus present in the blood, and in oesophageal/pharyngeal samples and excreted as an aerosol during the course of the infection in the deer were similar to those recorded for the sheep and cattle in the same experiment. The fallow and sika deer commonly carried virus in the pharynx beyond 28 days after exposure; some red deer also became carriers. In epidemics of foot-and-mouth disease in the UK, it is likely that deer would have such intimate contact with farm animals as occurred in this study. The natural behavior of free-living deer in the UK suggests that, although the five species are susceptible to foot-and-mouth disease, they are unlikely to be an important factor in the maintenance and transmission of the virus during an epidemic of foot-and-mouth disease in domestic livestock.

Air Microbiology↗

A major difference in the strategy of the calici- and picornaviruses and its significance in classification.

Pig kidney (1BRS-2) cells infected with vesicular exanthema virus (VEV), a calicivirus, did not contain any large precursor polypeptides similar to those found when they were infected with foot-and-mouth disease virus (FMDV). The largest induced protein found in the VEV-infected cells had a molecular weight identical with that of the virus structural polypeptide. This difference in strategy between VEV and FMDV, taken in conjunction with the morphological and structural differences described previously, provides strong evidence that the caliciviruses should not be included in the family Picornaviridae.

Animals↗

[Physico-chemical properties of swine vesicular disease virus].

Titration of SVDV on primary pig kidney cell cultures revealed a plating efficiency of less than or equal to 0,9 X 10(-3). Concentration and purification of the SVD-Virus propagated on pig kidney cell cultures were done by chloroform treatment, adsorption, differential- and density gradient centrifugation. The following physical parameters were found: SVDV is an isometrical RNA-virus having a diameter of 25,1 +/- 1,0 nm. It is resistent to the action of chloroform, ether and pH. The virus has a sedimentation coefficient of 156 +/- 3S and a bouyant density in CsCl of 1,33 +/- 0,01 g/ml. Within the family of picornaviruses the SVDV belongs to the subgroup of enteroviruses and can be distinguished from the foot-and-mouth disease virus by the difference in pH-sensitivity and bouyant density in CsCl.

Animals↗

Redox cycling of viral RNA polymerase controls picornavirus replication.

Picornaviruses, including foot-and-mouth disease virus (FMDV), enterovirus 71 (EV71) and encephalomyocarditis virus (EMCV), are important pathogens that cause fever, herpes, and myocarditis in humans and animals. The interplay between picornaviruses and their hosts remains enigmatic. Here we perform porcine genome-wide CRISPR/Cas9 screens and identify methionine sulfoxide reductase B3 (MSRB3) as an essential factor for FMDV. MSRB3 deficiency inhibits FMDV replication. Mechanistically, MSRB3 eliminates methionine oxidation of FMDV 3D polymerase and stabilizes its expression. Further studies show that radical SAM domain-containing protein 1 (RSAD1) catalyzes methionine oxidation of FMDV 3D polymerase and promotes its aggregation and subsequent degradation through the autophagy-lysosome pathway. Importantly, RSAD1-MSRB3-mediated redox modification also affects the stability of 3D polymerases of EV71 and EMCV, and regulates their infectivity and pathogenesis both in vitro and in vivo. Collectively, this study corroborates that RSAD1-MSRB3-mediated redox cycling of 3D polymerase plays a conserved function in modulating picornavirus infection, providing insights into viral pathogenesis and broad-spectrum antiviral development.

Animals↗

Characterization of the minor polypeptides in the foot-and-mouth disease particle.

In addition to the four major polypeptides VP1 and VP4, foot-and-mouth disease virus particles contain two minor polypeptides, mol. wt. 40 X 10(3) (P40) and 52 X 10(3) (P52). Extensive purification procedures failed to remove these minor polypeptides from the virus particles. Polypeptide P40 co-electrophoresed in SDS-polyacrylamide gels with VP0, the probable precursor of VP2 and VP4 and was inaccessible to iodination in situ. The second minor polypeptide, P52, co-electrophoresed with the virus infection associated (VIA) antigen found in large amounts in harvests of the virus grown in BHK 21 cells. Polypeptide P52 was shown to be located near the surface of the virus particle by iodination experiments and by its removal on incubating the particles with trypsin or chymotrypsin. Pactamycin mapping showed that this polypeptide was not a precursor of the structural polypeptides. About one copy of P52 and 4 copies of P40 were found in the virus particles sedimenting at 146S. However a larger number of copies was found in those virus particles sedimenting faster than the 146S peak.

Animals↗

The importance of picornavirus infections in respiratory disease of man and other mammals.

Picornaviruses may be divided, by physicochemical properties, into enteroviruses, cardioviruses, caliciviruses, rhinoviruses and foot-and-mouth diseases viruses. Although the respiratory tract may be the primary site of entry and multiplication for enteroviruses, cardioviruses and FMD viruses, few agents in these groups cause respiratory disease. A notable exception is coxsackievirus A21 which is an important cause of upper respiratory tract diseases in military recruits. The picornaviruses which most frequently cause respiratory illness are rhinoviruses and caliciviruses. There are over one hundred rhinovirus serotypes which infect man and they have been isolated from up to 50 percent of cases of mild respiratory illness, from 1-2 percent of healthy adults and from 5-10 percent of healthy children. About 10 percent of rhinovirus infections in adults are symptomless. The two bovine serotypes of rhinovirus and the two equine serotypes frequently infect cattle and horses respectively but seldom cause disease. Numerous calicivirus serotypes have been found in 17 percent of cats with respiratory disease and in 19 percent of clinically normal cats. However, experimental inoculation with caliciviruses has confirmed their causative role in respiratory disease of cats. The high rate of virus isolation from normal cats is probably due to their ability to carry virus in an infectious form for up to two years after initial infection and illness.

Adult↗

The role of sheep and goats in the epizootiology of foot-and-mouth disease in Kenya.

The pathogenicity of two bovine field strains of virus for indigenous goats was examined in the laboratory. The goats failed to develop clinical disease or become virus carriers although the majority showed a definite immune response. A field survey in a foot-and-mouth disease enzootic area showed that the indigenous sheep and goat populations were frequently exposed to infection as evidenced by a high proportion of sero-positive animals but the incidence of virus carriers was very low in goats and no carriers were detected in sheep.

Animals↗

4D-DIA proteomics reveals distinct proteolytic landscapes induced by mechanical stress, Agrobacterium, and a viral capsid precursor.

Nicotiana benthamiana is a widely used platform for plant molecular farming, yet recombinant protein yields are frequently compromised by the host's innate defense mechanisms, particularly proteolytic degradation. While the general effects of Agroinfiltration are known, the distinct contributions of mechanical injury, bacterial perception, and product-specific stress remain poorly resolved. Here we utilized high-depth 4D-DIA proteomics to dissect the host response across three dimensions: physical stress (buffer infiltration), pathogen-associated stress (Agrobacterium), and product-associated stress (GFP vs. the FMDV capsid precursor P1_2A). We demonstrate that buffer infiltration is not a neutral event but an independent inducer of cell wall remodeling and oxidative stress. By filtering out these background effects, we defined a core Agrobacterium-responsive proteome characterized by a growth-defense trade-off. We also expanded the known protease repertoire of N. benthamiana to 1,505 enzymes through improved genomic annotation. We found that the expression of the FMDV capsid precursor P1_2A was associated with a distinct and more pronounced protease profile compared to soluble GFP, characterized by the upregulation of subtilases and cysteine proteases. These findings suggest that host proteolytic responses vary with the recombinant cargo, a factor worth considering when designing engineering strategies for the production of complex biopharmaceuticals in plants.

Proteomics↗

[Studies on the Relationship between immunity and the level of neutralizing antibodies in pigs vaccinated against foot-and-mouth disease (author's transl)].

The statistical relationship between the titers of neutralizing antibodies and the immunity of 706 pigs vaccinated against FMD was studied. This was done for each of four virus strains separately. Whereas no correlation between both test systems could be detected in case of the strains A5 Westerwald, C Detmold and O1Santander, a significant correlation was ascertained for the strain O1Kaufbeuren. Becuase of the different findings depending on the virus strain under study it was concluded that the antibody titer alone does not provide a useful measure for potency testing of FMD-vaccines for pigs.

Animals↗

[Effect of migillin on protein synthesis in intact and virally infected TKCE and FL cells].

The effect of migillin was studied with respect to protein synthesis in the cells of TKCE (transplantable line of cells of the kidneys of cow embryos) and FL--intact and infected with viruses of aphtous fever A22, strain 550 and poliomyelitis of type III, strain Saukett respectively. Simultaneously the effect of migillin on sensitivity of the cells to the above viruses was tested. The synthesis of protein was determined by incorporation of C14-glycine into the acid insoluble fraction of the cells. It was found that protein synthesis significantly increased under the effect of migillin in both the intact cells and the cells infected with the viruses. The viruses of aphtous fever and poliomyelitis inhibited the synthesis of proteins. The antibiotic increased the activity of dehydrogenases and respiration of HEp-2 cells. Migillin markedly suppressed reproduction of the poliomyelitis virus, the effect on the virus of aphtous fever was lower in the cell culture. In guinea pigs the antiviral effect of the antibiotic resulted in prolongation of the incubation period and retardation of the aphtous fever process generalization. The results of the experiments showed that migillin stimulated the activity of dehydrogenases, respiration, protein synthesis in the cell cultures and possessed antiviral activity in vitro and in vivo.

Amnion↗

The pathogenicity of bovine strains of foot and mouth disease virus for impala and wildebeest.

Impala (Aepyceros melampus) and wildebeest (Connochaetes taurinus) were infected with bovine strains of foot and mouth disease virus by intradermolingual inoculation. No clinical signs developed in the impala but mild atypical lesions developed in the tongues of the wildebeest with generalized spread to one foot in two of the eight animals exposed. All the impala but only some of the wildebeest developed viraemia. No virus could be isolated from any tissues in either species after the 7th day following virus inoculation. Immune response occurred in both species. A field survey revealed few animals of either species with significant antibody titers and no virus 'carriers' were found.

Animals↗

Recurring hemolytic anemia, babesiasis, and influenza A viruses in a yak at low altitude in Nepal.

Episodes of hemolysis and leukocytosis which were associated with Babesia bigemina followed each of 3 challenge exposures to influenza A viruses. It is possible that viral infection altered the immunologic host-parasite equilibrium. Acute thrombocytopenia and rouleaux formation were also observed. Death, attributed to liver flukes, occurred 168 days after the yak was transferred from high to low altitude. A 2nd yak died of foot-and-mouth disease, thus supporting the Nepali belief that yaks will not survive at the lower altitudes of Kathmandu.

Altitude↗

Experiments on the preparations and testing of associated vaccine against foot and mouth disease and vesicular disease in swine.

Tests for associated immunization of swine against Foot and Mouth Disease (FMD) and Vesicular Disease (SVD) of swine were carried out. As a result of this investigation, it was established that the prepared and tested inactivated oil vaccine is harmless and immunogenic in sensitive animals. In investigating the course of immunity, the presence of antibody against both antigens was demonstrated in vaccinated animals. All once-vaccinated animals were defended against the virus of SVD during challenge, and 75% of them were defended against FMD. After revaccination, all immunized swine were defended against infection with both viruses. The question of the quality of the associated vaccine and the possibilities of its massive use in industrial swine rearing was discussed.

Adjuvants, Immunologic↗