Literature DB >> 17659802

Genetic diversity and reassortments among Akabane virus field isolates.

Takahiko Kobayashi1, Tohru Yanase, Makoto Yamakawa, Tomoko Kato, Kazuo Yoshida, Tomoyuki Tsuda.   

Abstract

Sequencing and phylogenetic analysis were carried out for 35 Akabane virus (AKAV) field isolates collected from Japan, Taiwan, Australia and Kenya, and for one Tinaroo virus (TINV). Of the three RNA segments, the M RNA segment encoding the glycoproteins that induce neutralization antibodies was the most variable among the isolates. The difference in the M RNA segments among Asian (Japanese and Taiwanese) isolates was not large (<12.3% nucleotide (nt) and <5.9% amino acid (aa) differences), rather than those between Asian and Australian isolates (13.4-14.9% nt and 6.2-8.2% aa difference). In phylogenetic trees, the Australian isolates form a separate branch from Asian isolates. All three RNA segments of the Kenyan isolate MP496 were genetically distant from those of the other AKAV field isolates. Although the S and L RNA segments of TINV, which is regarded as a strain of AKAV, was closely related to those of the Asian and Australian AKAV isolates, the M RNA was divergent that of the most distant AKAV isolate, MP496. Discrepancies among the phylogenetic trees of the S, M and L RNA segments indicate genomic reassortment events among AKAV field isolates.

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Year:  2007        PMID: 17659802     DOI: 10.1016/j.virusres.2007.06.007

Source DB:  PubMed          Journal:  Virus Res        ISSN: 0168-1702            Impact factor:   3.303


  15 in total

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Authors:  Jason T Ladner; Nazir Savji; Loreen Lofts; Amelia Travassos da Rosa; Michael R Wiley; Marie C Gestole; Gail E Rosen; Hilda Guzman; Pedro F C Vasconcelos; Marcio R T Nunes; Tadeusz J Kochel; W Ian Lipkin; Robert B Tesh; Gustavo Palacios
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2.  Heparan Sulfate Proteoglycan Is an Important Attachment Factor for Cell Entry of Akabane and Schmallenberg Viruses.

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3.  A novel panel of monoclonal antibodies against Schmallenberg virus nucleoprotein and glycoprotein Gc allows specific orthobunyavirus detection and reveals antigenic differences.

Authors:  Kerstin Wernike; Emiliana Brocchi; Paolo Cordioli; Yann Sénéchal; Christian Schelp; Anne Wegelt; Andrea Aebischer; Gleyder Roman-Sosa; Ilona Reimann; Martin Beer
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4.  Schmallenberg Virus Recurrence, Germany, 2014.

Authors:  Kerstin Wernike; Bernd Hoffmann; Franz J Conraths; Martin Beer
Journal:  Emerg Infect Dis       Date:  2015-07       Impact factor: 6.883

Review 5.  Bunyavirus-vector interactions.

Authors:  Kate McElroy Horne; Dana L Vanlandingham
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6.  Molecular characterization of an Akabane virus isolate from West Java, Indonesia.

Authors:  Suryo Purnomo Edi; Afif Ibrahim; Rinto Sukoco; Lukman Bunali; Masaji Taguchi; Tomoko Kato; Tohru Yanase; Hiroaki Shirafuji
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7.  Bovine epizootic encephalomyelitis caused by Akabane virus in southern Japan.

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8.  Experimental infection of cows with newly isolated Akabane virus strain (AKAV-7) causing encephalomyelitis.

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9.  Monitoring for bovine arboviruses in the most southwestern islands in Japan between 1994 and 2014.

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Journal:  BMC Vet Res       Date:  2016-06-24       Impact factor: 2.741

Review 10.  Schmallenberg virus: a systematic international literature review (2011-2019) from an Irish perspective.

Authors:  Áine B Collins; Michael L Doherty; Damien J Barrett; John F Mee
Journal:  Ir Vet J       Date:  2019-10-09       Impact factor: 2.146

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