Search PubMedSearch

SEARCH · Search PubMed

Results for “Orbivirus”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Genetic relatedness of two new Orbivirus serogroups: Orungo and Lebombo.

Orungo and Lebombo orbivirus isolates were examined for their intra- and intergroup genetic relatedness by blot hybridization and gene reassortment; blot hybridization was also used to examine the relatedness of selected Orungo and Lebombo isolates to known orbiviruses. Among the Orungo isolates, greater than 74% sequence similarity was shown in the majority of their genes. Gene 2 was the most divergent gene, with four unique types identified, and genes 5, 6 and 10 were variant among the isolates. Plaque reduction neutralization tests revealed at least four serotypes, a result which correlated with the hybridization data. Gene reassortment was shown between two representative Orungo isolates. Among the Lebombo isolates, two hybridization types were identified between which gene reassortment was demonstrated. Unique genes were not shown, whereas genes 2, 5 and 10 exhibited minor sequence variability. Geographic distribution correlated with relatedness among the Lebombo isolates, which was not the case among the Orungo isolates. Orungo and Lebombo viruses did not cross-hybridize or reassort their genes in vitro, in intergroup studies. In blot hybridization tests of Orungo and Lebombo isolates with known orbivirus serogroups and ungrouped orbiviruses, no strong cross-hybridization was seen. These results demonstrate that Orungo and Lebombo are distinct from each other and from other orbiviruses, and should therefore be recognized as two new Orbivirus serogroups.

Autoradiography

The complete nucleotide sequence of bluetongue virus serotype 1 RNA3 and a comparison with other geographic serotypes from Australia, South Africa and the United States of America, and with other orbivirus isolates.

The sequence of the RNA segment 3 of bluetongue virus (BTV) serotype 1 from Australia is presented along with its deduced amino acid sequence. DNA copies of this genome segment were inserted either into the E. coli plasmid pBR322 by homopolymeric tailing or by direct insertion of double-stranded DNA fragments generated by restriction endonuclease cleavage into the appropriate M13 bacteriophage vectors (Vieira, J. and Messing, J., 1982, Gene 19, 259-268). Direct comparisons were made to the nucleotide sequence data of Purdy, M. et al., 1984 (J. Virol. 51, 754-759) and Ghiasi, H. et al., 1985 (Virus Res. 3, 181-190) for the United States of America (US) isolates of BTV, serotypes 10 and 17, respectively. A method for the rapid cloning, sequencing and alignment of orbivirus RNA 3 segments was utilised to compare other geographical isolates of BTV, as well as those of other orbivirus serotypes, in particular, epizootic haemorrhagic disease of deer virus (EHDV) and Warrego. The comparison of this sequence data reveals that BTV isolates can be separated into distinct geographical types which in turn are distinct from the other orbivirus isolates studied. The sequence conservation at the amino acid level for the gene product of RNA3 (VP3) does not enable distinctions to be made amongst the BTV isolates at a geographical level, but does afford easy distinction into the different orbivirus groups. A possible evolutionary schematic is presented for the orbiviruses studied.

Amino Acid Sequence

Comparison of the non-structural protein, NS1, of tick-borne and insect-borne orbiviruses.

The nucleotide sequence of RNA segment 6 of Broadhaven virus (BRDV), a tick-borne orbivirus, was determined principally from two overlapping cDNA clones and RNA end sequence analysis. The genome segment is 1714 base pairs in length and has a coding capacity for a protein of 537 amino acids, having a net charge of +4.0 at neutral pH. Comparison of the predicted amino acid sequence of BRDV RNA segment 6 with the NS1 sequence of insect-borne orbiviruses, bluetongue virus (BTV), African horse sickness virus (AHSV) and epizootic haemorrhagic disease virus (EHDV) of deer, revealed amino acid identities of 21, 22 and 21%, respectively. This compares with amino acid identities of 31 to 50% between the NS1 proteins of these gnat-transmitted orbiviruses. A recombinant baculovirus was produced containing a full-length clone of BRDV segment 6, which expressed a protein of 61 kD in infected Spodoptera frugiperda cells. Like other orbivirus NS1 proteins the expressed protein formed tubules similar to those produced in BRDV-infected BHK21 cells.

Amino Acid Sequence

Characterization of Nugget virus, a serotype of the Kemerovo group of orbiviruses.

The genome of Nugget virus, a serotype of the Kemerovo group of orbiviruses, consists of 10 segments of double-stranded RNA. The properties of the virus are consistent with its classification as an orbivirus , but the unusual patterns of separation of viral RNA and polypeptides compared with that reported for most other orbiviruses suggests the possibility of heterogeneity within the genus Orbivirus .

Electrophoresis, Polyacrylamide Gel

Comparison of the major structural core proteins of tick-borne and Culicoides-borne orbiviruses.

Comparison of sequence data for Broadhaven (BRD) virus, a tick-borne orbivirus, and bluetongue virus (BTV), the type species of the genus, indicated that RNA segments 2 and 7 of BRD virus encode the two structural core proteins, VP2 and VP7, respectively. Segment 2 is 2792 nucleotides in length with a coding capacity for a protein (VP2) of 908 amino acids and a net charge of +8.5 at neutral pH. Segment 7 is 1174 nucleotides in length with a coding capacity for a protein (VP7) of 356 amino acids and a net charge of +11.5 at neutral pH. Comparison of the two sequences with BTV serotype 10 revealed amino acid identity of 35% between the product of segment 2 and BTV VP3, and 21% between the product of segment 7 and BTV VP7. The core proteins therefore show evidence of significant evolutionary divergence compared with that shown between different insect-borne orbiviruses. In particular, the amino terminus of BRD virus VP7 differed markedly from the equivalent region in VP7 of BTV and African horse sickness virus. This region is thought to interact with the outer capsid layer of insect-borne orbiviruses.

Amino Acid Sequence

Phylogenetic analyses of the complete nucleotide sequence of the capsid protein (VP3) of Australian epizootic haemorrhagic disease of deer virus (serotype 2) and cognate genes from other orbiviruses.

The complete nucleotide sequence of the minor capsid protein (VP3) of epizootic haemorrhagic disease of deer virus (EHDV; Australian serotype 2) was determined using a combination of cloning and sequencing methods. Gene segment 3 that coded for the EHDV VP3 capsid protein was 2768 nucleotides in length with a coding region of 2697 nucleotides flanked by 5' and 3' non-coding regions of 17 and 53 nucleotides, respectively. A protein of 899 amino acids (Mr 103,160) having no overall charge at neutral pH was deduced from the nucleotide sequence. Comparisons with equivalent regions from the other Australian EHDV serotypes showed the VP3 genes and the segments that coded for them were similar, varying by a maximum of 5%. Comparisons with known cognate genes from bluetongue viruses showed that their VP3 genes and the proteins translated from them were remarkably similar to those of EHDV, having approximately 70% to 80% homology at either level, respectively. In an attempt to delineate the evolution of orbiviruses, we have obtained sequence data from the VP3 genes from representative members of all Australian orbiviruses now known. Computer analyses of this data enabled a phylogenetic tree for the orbiviruses to be proposed that incorporated the concept of topotypes.

Amino Acid Sequence

Biological and antigenic characterization of Netivot virus, an unusual new Orbivirus recovered from mosquitoes in Israel.

The antigenic and biological characteristics of a new Orbivirus, designated Netivot virus, are described. This agent was originally recovered in cultures of the C6/36 clone of Aedes albopictus cells from a pool of Culex pipiens captured in Israel. Netivot virus is not pathogenic for newborn mice, nor did it initially produce detectable cytopathic effect (CPE) in Vero cells. It is closely related antigenically to Umatilla and Llano Seco viruses; these 3 agents appear to constitute a new serogroup within the genus Orbivirus. Netivot virus is also more distantly related to a number of other orbiviruses in the blue-tongue, epizootic hemorrhagic disease of deer, and Eubenangee serogroups. Netivot virus replicated to high titer and produced CPE in a variety of mosquito cell cultures, but it did not grow in 2 sand fly cell lines. Inoculation of Ae. aegypti and Ae. albopictus with Netivot virus resulted in almost 100% mortality in both species within 15 days after infection. The recovery of this and a number of other yet unidentified viral agents from field-collected mosquitoes in cultures of C6/36 cells, but not in the conventional vertebrate assay systems, suggests the existence in nature of many yet unrecognized mosquito-associated viruses. It also demonstrates the value of using new isolation methods in arbovirus studies.

Aedes

Speciation in orbiviruses.

The definition of Orbivirus species should be based on the ability of virus populations to reassort genetic information. Application of the definition of biological species to orbiviruses enables consideration to be given the evolutionary tendencies of virus populations and to mechanisms for generating diversity within orbiviruses.

Bluetongue virus

Problems in the interpretation of diagnostic tests due to cross-reactions between orbiviruses and broad serological responses in animals.

Tests presently used for the diagnosis of infections by bluetongue virus (BTV) or related orbiviruses are based on the use of 2 types of serological reactions. Those that are considered group-reactive tests are the agar gel diffusion precipitin (AGDP), complement-fixation (CF) and fluorescent antibody tests and those that are considered type-specific are a wide variety of virus neutralization tests (50% and 80% plaque reduction, plaque inhibition and microtiter neutralization) and cross-protection tests. These tests suffer from problems of standardization between laboratories and of specificity. Group-reactive tests (AGDP and CF) for the BTV serogroup also detect cross-reactions with viruses in the epizootic hemorrhagic disease virus (EHDV), Eubenangee (EUB) and Palyam (PAL) serogroups, with the EHDV cross-reactions being of particular concern. Further, multiple infections of cattle with PAL serogroup members can produce antibodies which will react to BTV and EHDV serogroup antigens in serological tests. Multiple infections of animals with related viruses can produce antibodies which will cross-react with orbiviruses in type-specific, virus neutralization tests to a virus which the animal has not previously been exposed. These observations stress the need to evaluate the tests at present being used, to assess the risks of cross-reactions between related orbiviruses and to develop new tests of defined specificity.

Animals

Enhanced neurovirulence of tick-borne orbiviruses resulting from genetic modulation.

The genome of orbiviruses (Reoviridae family) comprises 10 segments of double-stranded RNA. The fourth largest segment of the tick-borne Kemerovo (KEM) group orbiviruses is the genetic determinant of neurovirulence in experimentally infected mice, and segment 6 determines serotype. Reassortant viruses derived from a cross between two KEM-related viruses, Great Island (GI) and Wexford (WEX), that had the heterotypic gene combination W4G6 (segment 4 of WEX virus and segment 6 from GI virus) were nonpathogenic in mice. This apparent genetic modulation of neurovirulence may have resulted from steric interaction between the two outer capsid proteins of nonpathogenic reassortants. Further data are consistent with this hypothesis. Reassortants generated from additional KEM group viruses showed various degrees of enhanced neurovirulence in terms of their PFU/LD50 (ratio of infectivity in cell culture and in mice) and ASTmax (the average survival time at the highest virus dilution resulting in 100% mortality). Some reassortants were more pathogenic than either of their parental viruses. The results indicate that the gene determining neurovirulence dictates ASTmax, and the PFU/LD50 is a measure of the interaction between the products of the gene determining neurovirulence and that determining serotype. The nonpathogenic phenotype of a low passage isolate (St. Abb's 84-34 virus), derived from a single tick, generated neurovirulent reassortants. This result indicates that genetic modulation of KEM group viruses may occur in nature.

Animals

Comparison of the nonstructural protein, NS3, of tick-borne and insect-borne orbiviruses.

The complete nucleotide sequence of the smallest RNA segment (segment 10) of Broadhaven (BRD) virus, a tick-borne orbivirus, was determined from a full-length cDNA clone. The genome segment is 702 nucleotides in length and has a coding capacity for two proteins of either 205 or 199 amino acids, having net charges of +16.5 and +17.5, respectively, at neutral pH. Comparison of the sequence of RNA segment 10 of BRD, bluetongue, African horse sickness, and Palyam viruses revealed amino acid homology of 20 to 30% between the four orbiviruses, with one conserved region of 40 to 50% homology which, in segment 10 of BRD virus, is found between residues 26 and 71.

Amino Acid Sequence

Isolation of orbiviruses and uukuviruses from puffin ticks.

Two viruses were isolated from a pool of three female Ixodes uriae ticks found on a dead puffin (Fratercula arctica) on a beach at Arbroath, Scotland. Complement fixation tests showed that one of the viruses was an orbivirus belonging to the Kemerovo serogroup and was related to Cape Wrath virus. Cross-reactions did not occur in neutralisation tests with 4 Kemerovo group viruses previously isolated from I. uriae collected in British seabird colonies. The orbivirus was therefore named Arbroath virus. The other virus was of the Uukuniemi serogroup (family Bunyaviridae) and reacted in complement fixation and neutralisation tests with a virus isolated from I. uriae collected from a seabird colony at St Abb's Head, Scotland. Both the orbi- and the uukuviruses replicated in a tick (Rhipicephalus appendiculatus) cell line, RA-243.

Animals

The use of recombinant DNA probes to group and type orbiviruses. A comparison of Australian and South African isolates.

Under the appropriate conditions, recombinant DNA (rDNA) probes to either RNA segment 2 or segment 6 may be used to mimic the serotyping of bluetongue virus (BTV), but this may be attempted only on isolates originating in the same geographical area. Using an rDNA probe from RNA segment 3, group reactivities between the South African and Australian BTV isolates have been observed within those defined by serological methods, as have cross reactivities within the orbivirus group. Comparative hybridisation data is presented to show that variation within the RNA genome segments of BTV renders rDNA probes of RNA3 inadequate for serogrouping the orbiviruses. However, rDNA probes to RNA3 may be used to delineate the geographical origin of a BTV isolate.

Africa, Southern

Assignment of the genome segment coding for the neutralizing epitope(s) of orbiviruses in the Great Island subgroup (Kemerovo serogroup).

Reassortant viruses were produced from high-frequency recombination events between temperature-sensitive (ts) mutants of Broadhaven (BRD) (S. R. Moss and P. A. Nuttall, Virus Res. 4, 331-336, 1986) and Wexford (WEX) viruses, two serotypes in the Kemerovo serogroup of orbiviruses. The parental origin of each of the 10 genomic segments comprising each reassortant was determined by polyacrylamide gel electrophoresis. Comparison of neutralization titers with the results of genomic dsRNA analyses revealed that genome segment 5 codes for the neutralizing epitope(s). Kemerovo group viruses therefore differ from orbiviruses of the bluetongue serogroup in which segment 2 codes for the neutralizing epitopes (M. J. Grubman, J. A. Appleton, and G. J. Letchworth, Virology 131, 355-366, 1983; J. Kahlon, K. Sugiyama, and P. Roy, J. Virol. 48, 627-632, 1983). Results also indicated that the ts lesions in mutants of recombination groups II, III, and VI were in segments 1, 5, and 4, respectively. Reassortment of segments 2 and 10 appeared to be nonrandom, and evidence of possible "linkage" was obtained for segments 3 and 9.

Animals

Isolation and characterization of orbivirus genotypic variants.

Orbivirus variants containing either RNA deletions or concatemeric RNAs have been isolated. A variant of Ibaraki virus (a member of the epizootic hemorrhagic disease of deer serogroup) contained an RNA 9 segment which had terminal sequences identical to RNA 9 of wild type virus but was approximately 140 base pairs (bp) shorter. In vitro translation showed that whereas RNA 9 of wild type virus generated the minor structural protein VP6 (molecular weight 38 K), the variant RNA 9 coded for a 32 K protein. Analysis of hybrid molecules formed after melting and reannealing mixtures of [32P]-pCp-labeled wild type and variant RNA 9 molecules indicated that generation of variant RNA 9 may have involved the loss of approximately 150 bp at a location 148 bp from one end of the wild type RNA molecule. Analysis of minor proteins generated by premature termination during in vitro translation of wild type and variant RNA 9 suggested that the deletion occurred towards the 3' end of the positive strand of wild type RNA 9. RNA genome segments 10 and 9 of bluetongue virus type 21 and Bunyip Creek (a Palyam serogroup member) respectively, were observed to form concatemers. Molecular weight estimates and T1 RNase mapping suggested that the concatemers were dimers in a 5'-3' to 5'-3' orientation. In vitro translation of dimeric RNAs yielded products apparently identical to those generated by monomeric RNAs. The possible ramifications of these results with respect to orbivirus evolution are discussed.

Animals

Isolation and preliminary characterization of an orbivirus of the Palyam serogroup from biting midge Culicoides oxystoma in Japan.

An orbivirus of the Palyam serogroup was isolated from Culicoides oxystoma collected in a cowshed in Kagoshima, Southern Kyushu Island, Japan. This is the first isolation of an orbivirus of the Palyam serogroup in Japan. The virus was a spherical non-enveloped RNA virus, approximately 60 nm in diameter. The virus was resistant to ethyl ether, sodium deoxycholate and freezing-thawing, but readily inactivated by trypsin. The virus was not stabilized by 1 M MgCl2, was labile at pH 3.0 and was not precipitated by protamine sulfate. Indirect immunofluorescent staining of infected Vero cells indicated the virus to be antigenically related to D'Aguilar and Bunyip Creek viruses of the Palyam serogroup. Neutralization tests showed the virus to have no relationship with D'Aguilar virus, but to have a one-way cross-reaction with Bunyip Creek virus. The virus was tentatively designated as Kagoshima virus. A serological survey indicated dissemination of the virus in cattle populations in Kagoshima Prefecture.

Animals

Susceptibility of orbiviruses to low pH and to organic solvents.

Six orbiviruses, Corriparta, Wallal, Eubenangee, D'Aguilar, Warrego and Mitchell River, were inactivated within 30 min in solutions of pH less than 6. All but Wallal virus resisted treatment with ether at 1 degrees for 22 h but only Corriparta virus resisted treatment with chloroform at 1 degrees for 22 h. The genomes of the orbiviruses, including Corriparta virus, after electrophoresis in acrylamide gels separated into basically similar patterns which were distinct from the pattern of reovirus RNA.

Chloroform

Orbiviruses and bunyaviruses from a seabird colony in Scotland.

Viruses isolated from ticks (Ixodes uriae) and a kittiwake (Rissa tridactyla) from a seabird colony at St. Abb's Head, Scotland, were shown by complement fixation tests (CFT) to be antigenically related to the Uukuniemi and Kemerovo serogroups. Electron microscopic examination of cell cultures infected with the Kemerovo group viruses revealed particles characteristic of orbiviruses, 72 +/- 3 nm in diam., with an inner core 37 +/- 3 nm in diam., in association with intracytoplasmic, densely staining granular areas, and with fibrillar and tubular structures. Cell cultures infected with the Uukuniemi group viruses revealed characteristic bunyavirus particles, 94 +/- 7 nm in diam., with a closely adherent envelope. Both orbi- and bunyaviruses were isolated from two tick pools and the kittiwake. A third tick pool contained an orbivirus which cross-reacted with the other isolates in CFT and fluorescent antibody tests, but was distinguished from them by neutralization tests.

Animals