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Oropouche orthobunyavirus

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replication of the viral genome. Hence, one segment will restrict the molecular evolution of another segment and this is said to be inherited as a pair. On the contrary, the M segment codes for viral glycoproteins and these could be more prone to mutations due to a higher selective pressure in their coding region because these proteins are major host range determinants.
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virus and this virus holds various components of genetic L, M and S segments from the two parental viruses. In reassortment, the S and L segments are usually exchanged between species further, the S segment, that is coded by the nucleocapsid protein, and the L polymerase function together to create a
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The virus causes Oropouche fever, an urban arboviral disease that has since resulted in >30 epidemics during 1960–2009. Between 1961 and 1980, OROV was reported in the northern state of Pará, Brazil, and from 1980 to 2004, OROV had spread to the Amazonas, Amapá, Acre, Rondônia, Tocantins, and
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As of 2011, based on the small segment (SRNA) genetic information, there were 4 major genotypes (I–IV) of OROV. Genotype I was isolated from strains in Acre, Amazonas, Maranhão, Tocantins, Pará, Trinidad, and Tobago. Genotype II was obtained during the spread in Amapá, Pará, Rondônia, and Peru.
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Vasconcelos, Helena B.; Azevedo, Raimunda S. S.; Casseb, Samir M.; Nunes-Neto, Joaquim P.; Chiang, Jannifer O.; Cantuária, Patrick C.; Segura, Maria N. O.; Martins, Lívia C.; Monteiro, Hamilton A. O. (2009-02-01). "Oropouche fever epidemic in Northern Brazil: Epidemiology and molecular
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Travassos da Rosa, Jorge Fernando; de Souza, William Marciel; Pinheiro, Francisco de Paula; Figueiredo, Mário Luiz; Cardoso, Jedson Ferreira; Acrani, Gustavo Olszanski; Nunes, Márcio Roberto Teixeira (2017-05-03).
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mosquitoes in Brazil. The virus is considered a public health threat in tropical and subtropical areas of Central and South America, with over half a million infected people as of 2005. OROV is considered to be an
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Acrani, Gustavo Olszanski; Gomes, Rogério; Proença-Módena, José Luiz; da Silva, Andrei Furlan; Oliveira Carminati, Patricia; Silva, Maria Lucia; Santos, Rodrigo Ivo Marques; Arruda, Eurico (2010).
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studies of the oropouche virus in human tissues that have been recorded to this date. It is likely that this virus shares similar morphological characteristics with other members of the
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Vasconcelos, Helena Baldez; Nunes, Márcio R.T.; Casseb, Lívia M.N.; Carvalho, Valéria L.; Pinto Da Silva, Eliana V.; Silva, Mayra; Casseb, Samir M.M.; Vasconcelos, Pedro F.C. (2011).
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Vasconcelos, Helena Baldez; Nunes, Márcio R.T.; Casseb, Lívia M.N.; Carvalho, Valéria L.; Pinto da Silva, Eliana V.; Silva, Mayra; Casseb, Samir M.M.; Vasconcelos, Pedro F.C. (2011).
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A possible dispersal could be predicted for the four genotypes based on time-scaled analysis and epidemiologic data association. Genotype I possibly dispersed towards western
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Genotype III was isolated from samples in Acre, Minas Gerais, Panama, and RondĂ´nia. The final genotype IV was isolated from Amazonas.
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in orthobunyaviruses. This occurs when two genetically related viruses infect the same cell at the same time forming a
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of nucleocapsid genes in different oropouche virus strains, it has been revealed that there are three unique
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fragmentation. In UV-inactivated OROV, virus-receptor binding was not enough and that viral uncoating and
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genus. Members of the Orthobunyavirus genus have a three part, single-stranded, negative sense
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OROV is considered to be an arbovirus due to the method of transmission by the mosquitoes
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of small (S), medium (M) and large (L) RNA segments. These segments function to encode
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is said to be one of the most important mechanisms in explaining the viral
599: 271:(I, II, III) which have been spreading through Central and South America. 2074: 808: 336: 268: 1962: 1911: 1889: 1408: 324: 2000: 1779: 1508: 1497: 348: 256: 2051: 179:. When OROV infects humans, it causes a rapid fever illness called 57: 239:
family of arboviruses. OROV is a single-stranded, negative sense
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and the RNA polymerase in that sequential order. Through
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The American Journal of Tropical Medicine and Hygiene
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mosquitoes. In 1960, OROV was isolated from a sloth (
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Nunes, Marcio Roberto Teixeira; et al. (2005).
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due to the method of transmission by the mosquitoes
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Genotype II possibly emerged in 25: 375:were needed to induce apoptosis. 1108:Western equine encephalomyelitis 1098:Eastern equine encephalomyelitis 44: 1233:Crimean–Congo hemorrhagic fever 640:characterization of isolates". 1395:Kemerovo tickborne viral fever 751:10.1016/j.virusres.2009.12.013 1: 1652:Hantavirus pulmonary syndrome 891:Jamestown Canyon encephalitis 1546:Venezuelan hemorrhagic fever 689:Emerging Infectious Diseases 642:Journal of Clinical Virology 513:Emerging Infectious Diseases 461:Emerging Infectious Diseases 401:Emerging Infectious Diseases 355:Experimentation and research 186:Coquillettidia venezuelensis 175:) is one of the most common 1568:Brazilian hemorrhagic fever 1556:Argentine hemorrhagic fever 304:Transmission and dispersion 2147: 1580:Bolivian hemorrhagic fever 1460:Sandfly fever Naples virus 1248:Huaiyangshan banyangvirus 654:10.1016/j.jcv.2008.11.006 168:Oropouche orthobunyavirus 157:Oropouche orthobunyavirus 39: 34:Oropouche orthobunyavirus 32: 1864:SARS-related coronavirus 1827:Henipavirus encephalitis 1685:Murid gammaherpesvirus 4 1530:Viral hemorrhagic fevers 1311:Viral hemorrhagic fevers 1283:Arbovirus encephalitides 1259:Arbovirus encephalitides 1229:Viral hemorrhagic fevers 1194:Banna virus encephalitis 1094:Arbovirus encephalitides 1039:Viral hemorrhagic fevers 1005:Saint Louis encephalitis 972:Arbovirus encephalitides 923:Viral hemorrhagic fevers 857:Arbovirus encephalitides 363:to study how it induces 243:. There are no specific 1968:Yaba monkey tumor virus 1325:Kyasanur Forest disease 1287:Tick-borne encephalitis 988:Australian encephalitis 881:California encephalitis 1315:Omsk hemorrhagic fever 896:La Crosse encephalitis 701:10.3201/eid1512.090917 525:10.3201/eid1705.101333 473:10.3201/eid1110.050464 413:10.3201/eid1705.101333 317:Culex quinquefasciatus 215:Culex quinquefasciatus 1748:Marburg virus disease 1299:Powassan encephalitis 976:Japanese encephalitis 600:10.4269/ajtmh.16-0672 265:phylogenetic analysis 198:Ochlerotatus serratus 1174:Semliki Forest virus 275:Genomic reassortment 235:OROV belongs to the 192:Bradypus tridactylus 41:Virus classification 1721:Ebola virus disease 1385:Colorado tick fever 1140:O'nyong'nyong fever 1933:Simian foamy virus 2131:Orthobunyaviruses 2118: 2117: 2058:Taxon identifiers 2049: 2048: 2045: 2044: 2041: 2040: 1976: 1975: 1884: 1883: 1694: 1693: 1492: 1491: 1488: 1487: 1403: 1402: 1202: 1201: 947:Rift Valley fever 695:(12): 2063–2064. 467:(10): 1610–1613. 177:orthobunyaviruses 164: 163: 16:(Redirected from 2138: 2111: 2110: 2098: 2097: 2085: 2084: 2083: 2053: 1987: 1897: 1707: 1516: 1505: 1480:Chandipura virus 1416: 1356:Orthomyxoviridae 1215: 1162:Ross River fever 927:Bunyamwera fever 843: 832: 802: 795: 788: 779: 772: 771: 753: 729: 723: 722: 712: 680: 674: 673: 636: 630: 629: 619: 594:(5): 1019–1030. 578: 553: 552: 550: 549: 536: 504: 495: 494: 484: 452: 443: 442: 432: 392: 237:Peribunyaviridae 195:) and a pool of 132:Peribunyaviridae 49: 48: 30: 27:Species of virus 21: 2146: 2145: 2141: 2140: 2139: 2137: 2136: 2135: 2121: 2120: 2119: 2114: 2106: 2101: 2093: 2088: 2079: 2078: 2073: 2066:Oropouche virus 2060: 2050: 2037: 2017: 1982: 1972: 1947: 1917: 1891: 1880: 1843: 1818:Paramyxoviridae 1811: 1764: 1701: 1690: 1668: 1599: 1510: 1499: 1484: 1464: 1448:Pappataci fever 1441:Oropouche virus 1436:Oropouche fever 1410: 1399: 1369: 1349: 1267: 1239:Heartland virus 1209: 1198: 1178: 1150:Pogosta disease 1078: 1025:West Nile fever 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1274:Flaviviridae 1272: 1263:Bhanja virus 1220:Bunyavirales 1218: 1183: 1083: 1055:Yellow fever 1043:Dengue fever 963:Flaviviridae 961: 906:Tahyna virus 871:Bwamba Fever 848:Bunyavirales 846: 744:(1): 56–63. 741: 737: 727: 692: 688: 678: 645: 641: 634: 591: 587: 546:. Retrieved 516: 512: 464: 460: 404: 400: 358: 345:Minas Gerais 322: 315: 309: 307: 298: 284:biodiversity 280:Reassortment 278: 234: 225: 213: 207: 196: 190: 184: 172: 167: 166: 165: 156: 155: 143: 131: 120:Bunyavirales 119: 107: 95: 83: 71: 64: 54:(unranked): 33: 1712:Filoviridae 1534:Lassa fever 1430:Adria virus 1128:Chikungunya 1085:Togaviridae 1015:Usutu virus 937:Ngari virus 861:Batai virus 373:replication 227:MaranhĂŁo. 2024:Poxviridae 1954:Poxviridae 1874:SARS-CoV-2 1376:Reoviridae 1254:Tete virus 1185:Reoviridae 1067:Zika fever 916:Tete virus 814:(A80–B34, 548:2013-04-08 379:References 361:HeLa cells 253:RNA genome 2033:Monkeypox 825:Arthropod 760:0168-1702 662:1386-6532 608:0002-9637 421:1080-6040 365:apoptosis 333:Tocantins 295:Genotypes 269:genotypes 241:RNA virus 204:arbovirus 151:Species: 79:Kingdom: 72:Riboviria 2125:Category 2095:11460400 2081:Q3560891 2075:Wikidata 1981:Multiple 1869:SARS-CoV 1859:MERS-CoV 1048:DENV-1-4 836:Mosquito 809:Zoonotic 768:20080135 719:19961705 670:19117799 626:28167595 543:21529387 491:16318707 439:21529387 341:RondĂ´nia 339:, Pará, 329:MaranhĂŁo 231:Virology 127:Family: 91:Phylum: 1983:vectors 1963:Tanapox 1912:B virus 1890:Primate 1409:Sandfly 1235:(CCHFV) 816:042–079 710:3044544 617:5417190 534:3321770 482:3366749 430:3321770 288:progeny 139:Genus: 115:Order: 103:Class: 2108:118655 2001:Rabies 1943:HTLV-2 1938:HTLV-1 1892:-borne 1780:Rabies 1702:-borne 1511:-borne 1509:Rodent 1500:-borne 1498:Mammal 1432:(ADRV) 1411:-borne 1210:-borne 838:-borne 827:-borne 766:  758:  717:  707:  668:  660:  624:  614:  606:  541:  531:  489:  479:  437:  427:  419:  349:Manaus 331:, and 2090:IRMNG 1741:ZEBOV 1645:THAIV 1133:CHIKV 337:Amapá 65:Realm 58:Virus 2103:NCBI 2006:RABV 1807:CHPV 1795:DUVV 1790:MOKV 1785:ABLV 1758:RAVV 1753:MARV 1736:TAFV 1731:SUDV 1726:BDBV 1657:ANDV 1640:AMRV 1635:SEOV 1630:PUUV 1625:HTNV 1620:DOBV 1595:CHPV 1590:LUJV 1584:MACV 1573:SABV 1561:JUNV 1550:GTOV 1539:LASV 1389:CTFV 1344:LGTV 1333:AHFV 1329:KFDV 1319:OHFV 1304:POWV 1292:TBEV 1208:Tick 1144:ONNV 1122:VEEV 1112:WEEV 1102:EEEV 1072:ZIKV 1019:USUV 1009:SLEV 998:KUNV 993:MVEV 951:RVFV 941:NRIV 931:BUNV 910:TAHV 900:LACV 875:BWAV 865:BATV 764:PMID 756:ISSN 715:PMID 666:PMID 658:ISSN 622:PMID 604:ISSN 539:PMID 487:PMID 435:PMID 417:ISSN 325:Pará 314:and 212:and 173:OROV 1837:NiV 1832:HeV 1800:LBV 1700:Bat 1662:SNV 1167:RRV 1060:YFV 1030:WNV 981:JEV 885:CEV 746:doi 742:149 705:PMC 697:doi 650:doi 612:PMC 596:doi 529:PMC 521:doi 477:PMC 469:doi 425:PMC 409:doi 369:DNA 2127:: 2105:: 2092:: 2077:: 1532:: 1313:: 1285:: 1261:: 1231:: 1096:: 1041:: 974:: 925:: 859:: 762:. 754:. 740:. 736:. 713:. 703:. 693:15 691:. 687:. 664:. 656:. 646:44 644:. 620:. 610:. 602:. 592:96 590:. 586:. 557:^ 537:. 527:. 517:17 515:. 511:. 499:^ 485:. 475:. 465:11 463:. 459:. 447:^ 433:. 423:. 415:. 405:17 403:. 399:. 387:^ 259:, 67:: 1250:) 1246:( 818:) 801:e 794:t 787:v 770:. 748:: 721:. 699:: 672:. 652:: 628:. 598:: 551:. 523:: 493:. 471:: 441:. 411:: 171:( 20:)

Index

Oropouche virus
Virus classification
Edit this classification
Virus
Riboviria
Orthornavirae
Negarnaviricota
Ellioviricetes
Bunyavirales
Peribunyaviridae
Orthobunyavirus
orthobunyaviruses
Oropouche fever
Coquillettidia venezuelensis
Bradypus tridactylus
Ochlerotatus serratus
arbovirus
Aedes serratus
Culex quinquefasciatus
Peribunyaviridae
RNA virus
ultrastructural
Orthobunyavirus
RNA genome
nucleocapsids
glycoproteins
phylogenetic analysis
genotypes
Reassortment
biodiversity

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