Literature DB >> 22190012

Complete molecular genome analyses of equine rotavirus A strains from different continents reveal several novel genotypes and a largely conserved genotype constellation.

Jelle Matthijnssens1, Samuel Miño2, Hajnalka Papp3, Christiaan Potgieter4, Luis Novo1, Elisabeth Heylen1, Mark Zeller1, Lorena Garaicoechea2, Alejandra Badaracco2, György Lengyel5, Péter Kisfali6, Ann Cullinane7, P J Collins8, Max Ciarlet9, Helen O'Shea8, Viviana Parreño2, Krisztián Bányai3, María Barrandeguy2, Marc Van Ranst1.   

Abstract

In this study, the complete genome sequences of seven equine group A rotavirus (RVA) strains (RVA/Horse-tc/GBR/L338/1991/G13P[18], RVA/Horse-wt/IRL/03V04954/2003/G3P[12] and RVA/Horse-wt/IRL/04V2024/2004/G14P[12] from Europe; RVA/Horse-wt/ARG/E30/1993/G3P[12], RVA/Horse-wt/ARG/E403/2006/G14P[12] and RVA/Horse-wt/ARG/E4040/2008/G14P[12] from Argentina; and RVA/Horse-wt/ZAF/EqRV-SA1/2006/G14P[12] from South Africa) were determined. Multiple novel genotypes were identified and genotype numbers were assigned by the Rotavirus Classification Working Group: R9 (VP1), C9 (VP2), N9 (NSP2), T12 (NSP3), E14 (NSP4), and H7 and H11 (NSP5). The genotype constellation of L338 was unique: G13-P[18]-I6-R9-C9-M6-A6-N9-T12-E14-H11. The six remaining equine RVA strains showed a largely conserved genotype constellation: G3/G14-P[12]-I2/I6-R2-C2-M3-A10-N2-T3-E2/E12-H7, which is highly divergent from other known non-equine RVA genotype constellations. Phylogenetic analyses revealed that the sequences of these equine RVA strains are related distantly to non-equine RVA strains, and that at least three lineages exist within equine RVA strains. A small number of reassortment events were observed. Interestingly, the three RVA strains from Argentina possessed the E12 genotype, whereas the three RVA strains from Ireland and South Africa possessed the E2 genotype. The unusual E12 genotype has until now only been described in Argentina among RVA strains collected from guanaco, cattle and horses, suggesting geographical isolation of this NSP4 genotype. This conserved genetic configuration of equine RVA strains could be useful for future vaccine development or improvement of currently used equine RVA vaccines.

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Year:  2011        PMID: 22190012     DOI: 10.1099/vir.0.039255-0

Source DB:  PubMed          Journal:  J Gen Virol        ISSN: 0022-1317            Impact factor:   3.891


  19 in total

1.  Characterization of a novel G3P[3] rotavirus isolated from a lesser horseshoe bat: a distant relative of feline/canine rotaviruses.

Authors:  Biao He; Fanli Yang; Weihong Yang; Yuzhen Zhang; Yun Feng; Jihua Zhou; Jinxin Xie; Ye Feng; Xiaolei Bao; Huancheng Guo; Yingying Li; Lele Xia; Nan Li; Jelle Matthijnssens; Hailin Zhang; Changchun Tu
Journal:  J Virol       Date:  2013-09-11       Impact factor: 5.103

Review 2.  Rotavirus diversity and evolution in the post-vaccine world.

Authors:  John T Patton
Journal:  Discov Med       Date:  2012-01       Impact factor: 2.970

3.  Cloning and nucleotide sequence analyses of 11 genome segments of two American and one British equine rotavirus strains.

Authors:  Yongping Ma; Xiaobo Wen; Yasutaka Hoshino; L Yuan
Journal:  Vet Microbiol       Date:  2015-01-15       Impact factor: 3.293

4.  Group A Rotaviruses in Chinese Bats: Genetic Composition, Serology, and Evidence for Bat-to-Human Transmission and Reassortment.

Authors:  Biao He; Xiaohong Huang; Fuqiang Zhang; Weilong Tan; Jelle Matthijnssens; Shaomin Qin; Lin Xu; Zihan Zhao; Ling'en Yang; Quanxi Wang; Tingsong Hu; Xiaolei Bao; Jianmin Wu; Changchun Tu
Journal:  J Virol       Date:  2017-05-26       Impact factor: 5.103

5.  Exotic rotaviruses in animals and rotaviruses in exotic animals.

Authors:  Souvik Ghosh; Nobumichi Kobayashi
Journal:  Virusdisease       Date:  2014-02-13

6.  Rotavirus G and P types circulating in the eastern region of Kenya: predominance of G9 and emergence of G12 genotypes.

Authors:  Nicholas M Kiulia; Martin M Nyaga; Mapaseka L Seheri; Marianne Wolfaardt; Walda B van Zyl; Mathew D Esona; Grace Irimu; Murithi Inoti; Bernard W Gatinu; Peter K Njenga; Maureen B Taylor; Atunga Nyachieo
Journal:  Pediatr Infect Dis J       Date:  2014-01       Impact factor: 2.129

7.  Comparative genomic analysis of genogroup 1 (Wa-like) rotaviruses circulating in the USA, 2006-2009.

Authors:  Sunando Roy; Mathew D Esona; Ewen F Kirkness; Asmik Akopov; J Kyle McAllen; Mary E Wikswo; Margaret M Cortese; Daniel C Payne; Umesh D Parashar; Jon R Gentsch; Michael D Bowen
Journal:  Infect Genet Evol       Date:  2014-10-06       Impact factor: 3.342

8.  Engineering and expression of a human rotavirus candidate vaccine in Nicotiana benthamiana.

Authors:  Francisco F P G Pêra; David L R Mutepfa; Ayesha M Khan; Johann H Els; Sandiswa Mbewana; Alberdina A A van Dijk; Edward P Rybicki; Inga I Hitzeroth
Journal:  Virol J       Date:  2015-12-02       Impact factor: 4.099

9.  Full genome characterization of the first G3P[24] rotavirus strain detected in humans provides evidence of interspecies reassortment and mutational saturation in the VP7 gene.

Authors:  Slavica Mijatovic-Rustempasic; Sunando Roy; Elizabeth N Teel; Geoffrey A Weinberg; Daniel C Payne; Umesh D Parashar; Michael D Bowen
Journal:  J Gen Virol       Date:  2015-11-20       Impact factor: 3.891

10.  Antibody response in vaccinated pregnant mares to recent G3BP[12] and G14P[12] equine rotaviruses.

Authors:  Manabu Nemoto; Hiroshi Tsunemitsu; Harutaka Murase; Yasuo Nambo; Shinsuke Sato; Yasuhiro Orita; Hiroshi Imagawa; Hiroshi Bannai; Koji Tsujimura; Takashi Yamanaka; Tomio Matsumura; Takashi Kondo
Journal:  Acta Vet Scand       Date:  2012-11-06       Impact factor: 1.695

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