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Avian Metapneumoviruses |   129
          Gharaibeh, S.M., and Algharaibeh, G.R. (2007). Serological and molecular   Herfst, S., de Graaf, M., Schickli, J.H., Tang, R.S., Kaur, J., Yang, C.F.,
            detection of avian pneumovirus in chickens with respiratory disease in   Spaete, R.R., Haller, A.A., van den Hoogen, B.G., Osterhaus, A.D., et al.
            Jordan. Poult. Sci. 86, 1677–1681.                    (2004). Recovery of human metapneumovirus genetic lineages a and B
          Giraud, P., Bennejean, G., Guittet, M., and Toquin,  D. (1986). Turkey   from cloned cDNA. J. Virol. 78, 8264–8270. https://doi.org/10.1128/
            rhinotracheitis in France: preliminary investigations on a ciliostatic virus.   JVI.78.15.8264-8270.2004.
            Vet. Rec. 119, 606–607.                             Hu, H., Roth, J.P., Estevez, C.N., Zsak, L., Liu, B., and Yu, Q. (2011).
          Giraud, P., Le Gros, F.X., Bouquet, J.F., Toquin, D., and Bennejean, G.   Generation and evaluation of a recombinant Newcastle disease virus
            (1987a). Turkey Rhinotracheitis: Isolation of a viral agent and first trials   expressing the glycoprotein (G) of avian metapneumovirus subgroup
            with experimental inactivated or attenuated vaccines. Paper presented at:   C as a bivalent vaccine in turkeys. Vaccine 29, 8624–8633. https://doi.
            36th Western Poultry Disease Conference (Davis, California).  org/10.1016/j.vaccine.2011.09.007.
          Giraud, P., Toquin, D., Picault, J.P., Guittet, M., and Bennejean, G. (1987b).   Hu, H., Roth, J.P., Zsak, L., and Yu, Q. (2017). Engineered Newcastle disease
            Le sérodiagnostic de l’infection par le virus de la rhinotrachéite de la   virus expressing the F and G proteins of AMPV-C confers protection
            dinde, la poule et la pintade: la séroneutralisation béta sur cellules MA   against challenges in turkeys. Sci. Rep. 7, 4025. https://doi.org/10.1038/
            104. Bull. Lab. Vet. 27–28, 71–76.                    s41598-017-04267-7.
          Gough, R.E., Collins, M.S., Cox, W.J., and Chettle, N.J. (1988). Experimental   Jones, R.C. (1996). Avian pneumovirus infection: Questions still
            infection of turkeys, chickens, ducks, geese, guinea fowl, pheasants and   unanswered. Avian Pathol. 25, 639–648.
            pigeons with turkey rhinotracheitis virus. Vet. Rec. 123, 58–59.  Jones, R.C. (2001). Pneumovirinae, 5 edn. (W.B. Saunders, Harcourt
          Gough, R.E., Drury, S.E., Aldous, E., and Laing, P.W. (2001). Isolation and   Publishers, London, UK).
            identification of avian pneumovirus from pheasants. Vet. Rec. 149, 312.  Jones,  R.C.,  and  Rautenschlein,  S.  (2013).  Avian  metapneumovirus.  In
          Govindarajan, D., and Samal, S.K. (2004). Sequence analysis of the large   Diseases of Poultry, Swayne, D.E., ed. (Wiley-Blackwell, Ames, IA), pp.
            polymerase (L) protein of the US strain of avian metapneumovirus   112–138.
            indicates a close resemblance to that of the human metapneumovirus.   Jones, R.C., Williams, R.A., Baxter-Jones, C., Savage, C.E., and Wilding, G.P.
            Virus Res. 105, 59–66. https://doi.org/10.1016/j.virusres.2004.04.014.  (1988).  Experimental  infection  of laying turkeys with  rhinotracheitis
          Govindarajan, D., and Samal, S.K. (2005). Analysis of the complete genome   virus: distribution of virus in the tissues and serological response. Avian
            sequence of avian metapneumovirus subgroup C indicates  that it   Pathol. 17, 841–850.
            possesses the longest genome among metapneumoviruses. Virus Genes   Jones,  R.C.,  Naylor,  C.J., al-Afaleq,  A.,  Worthington,  K.J.,  and  Jones,  R.
            30, 331–333. https://doi.org/10.1007/s11262-005-6775-6.  (1992).  Effect  of  cyclophosphamide  immunosuppression  on  the
          Govindarajan, D., Yunus, A.S., and Samal, S.K. (2004). Complete sequence   immunity of turkeys to viral rhinotracheitis. Res. Vet. Sci. 53, 38–41.
            of the G glycoprotein gene of avian metapneumovirus subgroup C and   Juhasz,  K.,  and  Easton,  A.J. (1994).  Extensive  sequence  variation  in  the
            identification of a divergent domain in the predicted protein. J. Gen.   attachment (G) protein gene of avian pneumovirus: evidence for
            Virol. 85, 3671–3675.                                 two distinct subgroups. J. Gen. Virol.  75, 2873–2880.  https://doi.
          Govindarajan, D., Buchholz, U.J., and Samal, S.K. (2006). Recovery of avian   org/10.1099/0022-1317-75-11-2873.
            metapneumovirus subgroup C from cDNA: cross-recognition of avian   Kapczynski, D.R., Perkins, L.L., and Sellers, H.S. (2008). Mucosal
            and human metapneumovirus support proteins. J. Virol. 80, 5790–5797.  vaccination with formalin-inactivated avian metapneumovirus subtype
          Goyal, S.M., Chiang, S.J., Dar, A.M., Nagaraja, K.V., Shaw, D.P., Halvorson,   C does not protect turkeys following intranasal challenge. Avian Dis. 52,
            D.A., and Kapur, V. (2000). Isolation of avian pneumovirus from an   28–33. https://doi.org/10.1637/7821-122706-Reg.
            outbreak of respiratory illness in Minnesota turkeys. J. Vet. Diagn. Invest.   Khehra, R.S. (1998). Avian Pneumovirus in Chickens and Turkeys:
            12, 166–168. https://doi.org/10.1177/104063870001200214.  Studies on Some Aspects of Immunity and Pathogenesis. Ph.D. Thesis,
          Grant, M., Baxter-Jones, C., and Wilding, G.P. (1987). An enzyme-linked   University of Liverpool.
            immunosorbent assay for the serodiagnosis of turkey rhinotracheitis   Khehra, R.S., and Jones, R.C. (1999). In vitro and in vivo studies on the
            infection. Vet. Rec. 120, 279–280.                    pathogenicity of  avian pneumovirus for the chicken oviduct. Avian
          Guionie, O., Toquin, D., Sellal, E., Bouley, S., Zwingelstein, F., Allée, C.,   Pathol. 28, 257–262. https://doi.org/10.1080/03079459994740.
            Bougeard, S., Lemière, S., and Eterradossi,  N. (2007). Laboratory   Kim, J.I., Park, S., Lee, I., Park, K.S., Kwak, E.J., Moon, K.M., Lee, C.K., Bae,
            evaluation of a quantitative real-time reverse transcription PCR assay   J.Y., Park, M.S., and Song, K.J. (2016). Genome-Wide Analysis of Human
            for the detection and identification of the four subgroups of avian   Metapneumovirus Evolution. PLOS ONE 11, e0152962. https://doi.
            metapneumovirus. J. Virol. Methods 139, 150–158.      org/10.1371/journal.pone.0152962.
          Gulati, B.R., Cameron, K.T., Seal, B.S., Goyal, S.M., Halvorson, D.A., and   Kolli, D., Bao, X., Liu, T., Hong, C., Wang, T., Garofalo, R.P., and Casola,
            Njenga, M.K. (2000). Development of a highly sensitive and specific   A. (2011). Human metapneumovirus glycoprotein G inhibits
            enzyme-linked  immunosorbent  assay  based  on  recombinant  matrix   TLR4-dependent signaling in monocyte-derived dendritic cells. J.
            protein for detection of avian pneumovirus antibodies. J. Clin. Microbiol.   Immunol. 187, 47–54. https://doi.org/10.4049/jimmunol.1002589.
            38, 4010–4014.                                      Krempl, C., Murphy, B.R., and Collins, P.L. (2002). Recombinant respiratory
          Gulati, B.R., Munir, S., Patnayak, D.P., Goyal, S.M., and Kapur, V. (2001).   syncytial virus with the G and F genes shifted to the promoter-proximal
            Detection of antibodies to U.S. isolates of avian pneumovirus by a   positions. J. Virol. 76, 11931–11942.
            recombinant nucleocapsid protein-based sandwich enzyme-linked   Kwon, J.S., Lee, H.J., Jeong, S.H., Park, J.Y., Hong, Y.H., Lee, Y.J., Youn, H.S.,
            immunosorbent assay. J. Clin. Microbiol. 39, 2967–2970. https://doi.  Lee, D.W., Do, S.H., Park, S.Y., et al. (2010). Isolation and characterization
            org/10.1128/JCM.39.8.2967-2970.2001.                  of avian metapneumovirus from chickens in Korea. J. Vet. Sci. 11, 59–66.
          Hafez, H.M., and Woernle, H. (1989). Turkey rhinotracheitis, serological   Laconi, A., Clubbe, J., Falchieri, M., Lupini, C., Cecchinato, M., Catelli, E.,
            results in Baden-Wurttemnberg. Tierarztliche-Umschau 44, 476–480.  Listorti, V., and Naylor, C.J. (2016). A comparison of AMPV subtypes A
          Hafez, H.M., Hess, M., Prusas, C., Naylor, C.J., and Cavanagh, D. (2000).   and B full genomes, gene transcripts and proteins led to reverse-genetics
            Presence of avian pneumovirus type A in continental Europe during the   systems rescuing both subtypes. J. Gen. Virol. 97, 1324–1332. https://
            1980s. J. Vet. Med. B Infect. Dis. Vet. Public Health 47, 629–633.  doi.org/10.1099/jgv.0.000450.
          Hartmann, S., Sid, H., and Rautenschlein, S. (2015). Avian metapneumovirus   Lawrence, D.M., Patterson, C.E., Gales, T.L., D’Orazio, J.L., Vaughn, M.M.,
            infection of chicken and turkey tracheal organ cultures: comparison of   and Rall, G.F. (2000). Measles virus spread between neurons requires cell
            virus-host interactions. Avian Pathol. 44, 480–489. https://doi.org/10.1  contact but not CD46 expression, syncytium formation, or extracellular
            080/03079457.2015.1086974.                            virus production. J. Virol. 74, 1908–1918.
          Hastings, A.K., Amato, K.R., Wen, S.C., Peterson, L.S., and Williams, J.V.   Lee, E.h., Song, M.S., Shin, J.Y., Lee, Y.M., Kim, C.J., Lee, Y.S., Kim, H., and
            (2016). Human metapneumovirus small hydrophobic (SH) protein   Choi, Y.K. (2007). Genetic characterization of avian metapneumovirus
            downregulates type I IFN pathway signaling by affecting STAT1   subtype C isolated from pheasants in a live bird market. Virus Res. 128,
            expression and phosphorylation. Virology 494, 248–256. https://doi.  18–25.
            org/10.1016/j.virol.2016.04.022.
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