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1. Surveillance of Human Rotaviruses in Wuhan, China (2019-2022): Whole-Genome Analysis of Emerging DS-1-like G8P[8] Rotavirus.

2. A reverse genetics system for human rotavirus G2P[4].

3. Risk factors for bovine rotavirus infection and genotyping of bovine rotavirus in diarrheic calves in Bangladesh.

4. Molecular characterization of unusual bovine rotavirus A strains having high genetic relatedness with human rotavirus: evidence for zooanthroponotic transmission.

5. Analysis of structure-function relationship in porcine rotavirus A enterotoxin gene.

6. Unexpected detection of porcine rotavirus C strains carrying human origin VP6 gene.

7. Whole genome analysis provides evidence for porcine-to-simian interspecies transmission of rotavirus-A.

8. Distribution of two distinct rotavirus B (RVB) strains in the north-central Bangladesh and evidence for reassortment event among human RVB revealed by whole genomic analysis.

9. Multispecies reassortant bovine rotavirus strain carries a novel simian G3-like VP7 genotype.

10. Whole genomic analysis of a porcine G6P[13] rotavirus strain.

11. Analysis of codon usage pattern evolution in avian rotaviruses and their preferred host.

12. Genomic characterization of G3P[6], G4P[6] and G4P[8] human rotaviruses from Wuhan, China: Evidence for interspecies transmission and reassortment events.

13. Hospital based surveillance and genetic characterization of rotavirus strains in children (<5 years) with acute gastroenteritis in Kolkata, India, revealed resurgence of G9 and G2 genotypes during 2011-2013.

14. Molecular analysis of non structural rotavirus group A enterotoxin gene of bovine origin from India.

15. Molecular epidemiology and genetic evolution of the whole genome of G3P[8] human rotavirus in Wuhan, China, from 2000 through 2013.

16. Whole genomic analyses of equine group A rotaviruses from Japan: evidence for bovine-to-equine interspecies transmission and reassortment events.

17. Whole genomic analyses of asymptomatic human G1P[6], G2P[6] and G3P[6] rotavirus strains reveal intergenogroup reassortment events and genome segments of artiodactyl origin.

18. Complex evolutionary patterns of two rare human G3P[9] rotavirus strains possessing a feline/canine-like H6 genotype on an AU-1-like genotype constellation.

19. The origin of two rare human P[10] rotavirus strains.

20. The first identification of rare human group A rotavirus strain G3P[10] with severe infantile diarrhea in eastern India.

21. Rotaviral enterotoxin nonstructural protein 4 targets mitochondria for activation of apoptosis during infection.

22. Identification of common human host genes involved in pathogenesis of different rotavirus strains: an attempt to recognize probable antiviral targets.

23. Evidence for the porcine origin of equine rotavirus strain H-1.

24. Whole-genomic analysis of a human G1P[9] rotavirus strain reveals intergenogroup-reassortment events.

25. Whole genomic analysis of human G1P[8] rotavirus strains from different age groups in China.

26. Detection of human G10 rotavirus strains with similarity to bovine and bovine-like equine strains from untypable samples.

27. Whole genomic analysis reveals the porcine origin of human G9P[19] rotavirus strains Mc323 and Mc345.

28. Prevalence of human rotavirus genotypes in Wuhan, China, during 2008-2011: changing trend of predominant genotypes and emergence of strains with the P[8]b subtype of the VP4 gene.

29. Detection and full genomic analysis of G6P[9] human rotavirus in Japan.

30. Whole-genome analysis reveals the complex evolutionary dynamics of Kenyan G2P[4] human rotavirus strains.

31. Full genomic analyses of human rotavirus G4P[4], G4P[6], G9P[19] and G10P[6] strains from North-eastern India: evidence for interspecies transmission and complex reassortment events.

32. Whole-genomic analysis of rotavirus strains: current status and future prospects.

33. Full genomic analyses of human rotavirus strains possessing the rare P[8]b VP4 subtype.

34. Active participation of cellular chaperone Hsp90 in regulating the function of rotavirus nonstructural protein 3 (NSP3).

35. Full genomic analyses of two human G2P[4] rotavirus strains detected in 2005: identification of a caprine-like VP3 gene.

36. Emergence of G9 as a predominant genotype of human rotaviruses in Cuba.

37. Whole-genome characterization of human group C rotaviruses: identification of two lineages in the VP3 gene.

38. Full genomic analysis of a G8P[1] rotavirus strain isolated from an asymptomatic infant in Kenya provides evidence for an artiodactyl-to-human interspecies transmission event.

39. Full genomic analysis of a simian SA11-like G3P[2] rotavirus strain isolated from an asymptomatic infant: identification of novel VP1, VP6 and NSP4 genotypes.

40. Phylogenetic analysis of human rotavirus in Myanmar: detection of Indian-Bangladeshi G1/G2 lineages, Chinese G3 lineage and OP354-like P[8] lineage (P[8]b subtype).

41. Complete genome constellation of a caprine group A rotavirus strain reveals common evolution with ruminant and human rotavirus strains.

42. Analysis of genetic diversity and molecular evolution of human group B rotaviruses based on whole genome segments.

43. Rotavirus nonstructural protein 1 suppresses virus-induced cellular apoptosis to facilitate viral growth by activating the cell survival pathways during early stages of infection.

44. Full genomic analysis and possible origin of a porcine G12 rotavirus strain RU172.

45. Identification of P[8]b subtype in OP354-like human rotavirus strains by a modified RT-PCR method.

46. Full genomic analysis of a porcine-bovine reassortant G4P[6] rotavirus strain R479 isolated from an infant in China.

47. Molecular characterization of the VP1, VP2, VP4, VP6, NSP1 and NSP2 genes of bovine group B rotaviruses: identification of a novel VP4 genotype.

48. Detection of group B rotavirus in an adult with acute gastroenteritis in Yangon, Myanmar.

49. The molecular chaperone heat shock protein-90 positively regulates rotavirus infectionx.

50. Phylogenetic analysis of rotaviruses with predominant G3 and emerging G9 genotypes from adults and children in Wuhan, China.

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