Literature DB >> 21609783

Multiple reassortment and interspecies transmission events contribute to the diversity of feline, canine and feline/canine-like human group A rotavirus strains.

Jelle Matthijnssens1, Simona De Grazia, Jan Piessens, Elisabeth Heylen, Mark Zeller, Giovanni M Giammanco, Krisztián Bányai, Canio Buonavoglia, Max Ciarlet, Vito Martella, Marc Van Ranst.   

Abstract

RNA-RNA hybridization assays and complete genome sequence analyses have shown that feline rotavirus (FRV) and canine rotavirus (CRV) strains display at least two distinct genotype constellations (genogroups), represented by the FRV strain RVA/Cat-tc/AUS/Cat97/1984/G3P[3] and the human rotavirus (HRV) strain RVA/Human-tc/JPN/AU-1/1982/G3P3[9], respectively. G3P[3] and G3P[9] strains have been detected sporadically in humans. The complete genomes of two CRV strains (RVA/Dog-tc/ITA/RV198-95/1995/G3P[3] and RVA/Dog-tc/ITA/RV52-96/1996/G3P[3]) and an unusual HRV strain (RVA/Human-tc/ITA/PA260-97/1997/G3P[3]) were determined to further elucidate the complex relationships among FRV, CRV and HRV strains. The CRV strains RV198-95 and RV52-96 were shown to possess a Cat97-like genotype constellation. However, 3 and 5 genes of RV198-95 and RV52-96, respectively, were found in distinct subclusters of the same genotypes, suggesting the occurrence of reassortment events among strains belonging to this FRV/CRV/HRV genogroup. Detailed phylogenetic analyses of the HRV strain PA260-97 showed that (i) 8 genome segments (VP3, VP4, VP6, VP7 and NSP2-5) clustered closely with RV198-95 and/or RV52-96; (ii) 2 genome segments (VP1 and VP2) were more closely related to HRV AU-1; and (iii) 1 genome segment (NSP1) was distantly related to any other established NSP1 genotypes and was ratified as a new NSP1 genotype, A15. These findings suggest that the human strain PA260-97 has a history of zoonotic transmission and is likely a reassortant among FRV/CRV strains from the Cat97 and AU-1-like genogroups. In addition, a potential third BA222-05-like genogroup of FRV and HRV strains should be recognized, consisting of rotavirus strains with a stable genetic genotype constellation of genes also partially related to bovine rotavirus (BRV) and bovine-like rotaviruses. The detailed phylogenetic analysis indicated that three major genotype constellations exist among FRV, CRV and feline/canine-like HRV strains, and that reassortment and interspecies transmission events contribute significantly to their wide genetic diversity.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21609783     DOI: 10.1016/j.meegid.2011.05.007

Source DB:  PubMed          Journal:  Infect Genet Evol        ISSN: 1567-1348            Impact factor:   3.342


  30 in total

1.  Detection of Common, Emerging and Uncommon VP4, and VP7 Human Group A Rotavirus Genotypes from Urban Sewage Samples in Uruguay.

Authors:  Luis Fernando Lopez Tort; Matías Victoria; Andrés Lizasoain; Mariana García; Mabel Berois; Juan Cristina; José Paulo Gagliardi Leite; Mariela Martínez Gómez; Marize Pereira Miagostovich; Rodney Colina
Journal:  Food Environ Virol       Date:  2015-08-13       Impact factor: 2.778

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

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

4.  Full-genome sequencing of a Hungarian canine G3P[3] Rotavirus A strain reveals high genetic relatedness with a historic Italian human strain.

Authors:  H Papp; E Mihalov-Kovács; R Dóró; S Marton; S L Farkas; G M Giammanco; S De Grazia; V Martella; K Bányai
Journal:  Virus Genes       Date:  2015-01-30       Impact factor: 2.332

5.  Effect of monovalent rotavirus vaccine on rotavirus disease burden and circulating rotavirus strains among children in Morocco.

Authors:  Mohammed Benhafid; Nezha Elomari; Meryem Azzouzi Idrissi; Ahmed Rguig; Jon R Gentsch; Umesh Parashar; Rajae Elaouad
Journal:  J Med Virol       Date:  2015-03-05       Impact factor: 2.327

6.  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

7.  Human G3P[9] rotavirus strains possessing an identical genotype constellation to AU-1 isolated at high prevalence in Brazil, 1997-1999.

Authors:  Takeshi Tsugawa; Kaitlin Rainwater-Lovett; Hiroyuki Tsutsumi
Journal:  J Gen Virol       Date:  2014-12-02       Impact factor: 3.891

8.  Dynamics of Virus Distribution in a Defined Swine Production Network Using Enteric Viruses as Molecular Markers.

Authors:  Virginie Lachapelle; Ann Letellier; Philippe Fravalo; Julie Brassard; Yvan L'Homme
Journal:  Appl Environ Microbiol       Date:  2017-02-01       Impact factor: 4.792

9.  Circulation of group A rotaviruses among neonates of human, cow and pig: study from Assam, a north eastern state of India.

Authors:  Rinky Sharma; Durlav Prasad Bora; Paromita Chakraborty; Sushmita Das; Nagendra Nath Barman
Journal:  Indian J Virol       Date:  2013-09-11

10.  Identification by full-genome analysis of a bovine rotavirus transmitted directly to and causing diarrhea in a human child.

Authors:  Yen Hai Doan; Toyoko Nakagomi; Yair Aboudy; Ilana Silberstein; Esther Behar-Novat; Osamu Nakagomi; Lester M Shulman
Journal:  J Clin Microbiol       Date:  2012-10-31       Impact factor: 5.948

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