• Aoki, S.T., Settembre, E.C., Trask, S.D., Greenberg, H.B., Harrison, S.C.,Dormitzer, P.R., 2009. Structure of rotavirus outer-layer protein VP7 bound with a neutralizing fab. Science, 324, 1444-1447.

  • Clark, H.F., Hoshino, Y., Bell, L.M., Groff, J., Hess, G., Bachman, P.,Offit, P.A., 1987. Rotavirus isolate WI61 representing a presumptive new human serotype. J. Clin. Microbiol., 25, 1757-1762.

  • Colic, D., Kresic, N., Mihaljevic, Z., Andreanszky, T., Balic, D., Lolic, M.,Brnic, D., 2021. A remarkable genetic diversity of rotavirus A circulating in red fox population in Croatia. Pathogens, 10, 485.

  • Cook, N., Bridger, J., Kendall, K., Gomara, M.I., El-Attar, L.,Gray, J., 2004. The zoonotic potential of rotavirus. J. Infect., 48, 289-302.

  • Dong, H., Sun, Y., Zhao, L., Deng, L., Zhu, R., Chen, D., Jia, L., Liu, L., Zhang, Y.,Qian, Y., 2016. Rotavirus G9-Ⅵ Re-emerging and circulating predominantly in children with diarrhea in Beijing. Bingdu Xuebao, 32, 436-444.

  • Dong, H.J., Liu, L.Y., Jia, L.P., Zhao, L.Q., Jin, F.H., Zhou, L.,Qian, Y., 2023. Prevalence and genomic analysis of T203-like G9 (G9-VI) rotaviruses circulating in children with gastroenteritis in Beijing, China. Arch. Virol., 168, 257.

  • Dormitzer, P.R., Nason, E.B., Prasad, B.V.V.,Harrison, S.C., 2004. Structural rearrangements in the membrane penetration protein of a non-enveloped virus. Nature, 430, 1053-1058.

  • Dormitzer, P.R., Sun, Z.Y.J., Wagner, G.,Harrison, S.C., 2002. The rhesus rotavirus VP4 sialic acid binding domain has a galectin fold with a novel carbohydrate binding site. EMBO J., 21, 885-897.

  • Fang, Z.Y., Yang, H., Qi, J., Zhang, J., Sun, L.W., Tang, J.Y., Ma, L., Du, Z.Q., He, A.H., Xie, J.P., et al., 2002. Diversity of rotavirus strains among children with acute diarrhea in China: 1998-2000 surveillance study. J. Clin. Microbiol., 40, 1875-1878.

  • Hoshino, Y., Honma, S., Jones, R.W., Ross, J., Santos, N., Gentsch, J.R., Kapikian, A.Z.,Hesse, R.A., 2005. A porcine G9 rotavirus strain shares neutralization and VP7 phylogenetic sequence lineage 3 characteristics with contemporary human G9 rotavirus strains. Virology, 332, 177-188.

  • Khamrin, P., Peerakome, S., Wongsawasdi, L., Tonusin, S., Sornchai, P., Maneerat, V., Khamwan, C., Yagyu, F., Okitsu, S., Ushijima, H.,Maneekarn, N., 2006. Emergence of human G9 rotavirus with an exceptionally high frequency in children admitted to hospital with diarrhea in Chiang Mai, Thailand. J. Med. Virol., 78, 273-280.

  • Kim, H.H., Park, J.G., Matthijnssens, J., Kim, H.J., Kwon, H.J., Son, K.Y., Ryu, E.H., Kim, D.S., Lee, W.S., Kang, M.I., Yang, D.K., Lee, J.H., Park, S.J.,Cho, K.O., 2013. Pathogenicity of porcine G9P[23] and G9P[7] rotaviruses in piglets. Vet. Microbiol., 166, 123-137.

  • Li, Y., Wang, F., Kan, R., Cao, H., Tang, C., Yue, H.,Zhang, B., 2022. Genetic and immunological characterization of G9 group A porcine rotaviruses in China. Zoonoses Public Health, 69, 694-703.

  • Liu, H.X., Tian, H.L., Hao, P.C., Du, H.M., Wang, K., Qiu, Y.D., Yin, X.R., Wu, N.N., Du, Q., Tong, D.W.,Huang, Y., 2024. PoRVA G9P[23] and G5P[7] infections differentially promote PEDV replication by reprogramming glutamine metabolism. PLoS Pathog., 20, e1012305.

  • Liu, X., Wang, M., Li, S., Li, J., Xiao, J., Li, H., Zhang, Q., Kong, X., Wang, H., Li, D.,Duan, Z., 2022. Genomic and evolutionary characteristics of G9P[8], the dominant group a rotavirus in China (2016-2018). Front. Microbiol., 13, 997957.

  • Lopez, S.,Arias, C.F., 2004. Multistep entry of rotavirus into cells: a Versaillesque dance. Trends Microbiol., 12, 271-278.

  • Matthijnssens, J., Heylen, E., Zeller, M., Rahman, M., Lemey, P.,Van Ranst, M., 2010. Phylodynamic analyses of rotavirus genotypes G9 and G12 underscore their potential for swift global spread. Mol. Biol. Evol., 27, 2431-2436.

  • Mukherjee, A., Dutta, D., Ghosh, S., Bagchi, P., Chattopadhyay, S., Nagashima, S., Kobayashi, N., Dutta, P., Krishnan, T., Naik, T.,Chawla-Sarkar, M., 2009. Full genomic analysis of a human group A rotavirus G9P[6] strain from Eastern India provides evidence for porcine-to-human interspecies transmission. Arch. Virol., 154, 733-746.

  • Parashar, U.D., Hummelman, E.G., Bresee, J.S., Miller, M.A.,Glass, R.I., 2003. Global illness and deaths caused by rotavirus disease in children. Emerg. Infect. Dis., 9, 565-572.

  • Qiao, M.L., Li, M.Z., Li, Y., Wang, Z.W., Hu, Z.Q., Qing, J., Huang, J.P., Jiang, J.P., Jiang, Y.Q., Zhang, J.Y., Gao, C.L., Yang, C., Li, X.W.,Zhou, B., 2024. Recent molecular characterization of porcine rotaviruses detected in China and their phylogenetic relationships with human rotaviruses. Viruses-Basel, 16, 453.

  • Reslan, L., Mishra, N., Finianos, M., Zakka, K., Azakir, A., Guo, C., Thakka, R., Dbaibo, G., Lipkin, W.I.,Zaraket, H., 2021. The origins of G12P[6] rotavirus strains detected in Lebanon. J. Gen. Virol., 102, 001535.

  • Rojas, M., Dias, H.G., Goncalves, J.L.S., Manchego, A., Rosadio, R., Pezo, D.,Santos, N., 2019. Genetic diversity and zoonotic potential of rotavirus strains in the Southern Andean Highlands, Peru. Transboundary and Emerging Diseases, 66, 1718-1726.

  • Shi, H.Y., Chen, J.F., Li, H.X., Sun, D.B., Wang, C.B.,Feng, L., 2012. Molecular characterization of a rare G9P[23] porcine rotavirus isolate from China. Arch. Virol., 157, 1897-1903.

  • Troeger, C., Khalil, I.A., Rao, P.C., Cao, S.J., Blacker, B.F., Ahmed, T., Armah, G., Bines, J.E., Brewer, T.G., Colombara, D., et al., 2018. Rotavirus vaccination and the global burden of rotavirus diarrhea among children younger than 5 years. JAMA Pediatr., 172, 958-965.

  • Wu, L., Jing, Z., Pan, Y., Guo, L., Li, Z., Feng, L.,Tian, J., 2024. Emergence of a novel pathogenic porcine G1P[7] rotavirus in China. Virology, 598, 110185.

  • Yang, J.H., Wang, T., Wang, Y., Lu, B.J., Bai, X., Zhang, L., Wang, M.,Wang, H.Z., 2007. Emergence of human rotavirus group a genotype G9 strains, Wuhan, China. Emerg. Infect. Dis., 13, 1587-1589.

  • Yodmeeklin, A., Khamrin, P., Chuchaona, W., Kumthip, K., Kongkaew, A., Vachirachewin, R., Okitsu, S., Ushijima, H.,Maneekarn, N., 2017. Analysis of complete genome sequences of G9P[19] rotavirus strains from human and piglet with diarrhea provides evidence for whole-genome interspecies transmission of nonreassorted porcine rotavirus. Infect. Genet. Evol., 47, 99-108.

  • Zeller, M., Heylen, E., De Coster, S., Van Ranst, M.,Matthijnssens, J., 2012. Full genome characterization of a porcine-like human G9P[6] rotavirus strain isolated from an infant in Belgium. Infect. Genet. Evol., 12, 1492-1500.

  • Zhang, Y.C., Cui, P.F., Shi, J.Z., Zeng, X.Y., Jiang, Y.P., Chen, Y., Zhang, J., Wang, C.C., Wang, Y., Tian, G.B., Chen, H.L., Kong, H.H.,Deng, G.H., 2024. A broad-spectrum vaccine candidate against H5 viruses bearing different sub-clade 2.3.4.4 HA genes. NPJ Vaccines, 9, 152.