Page 349 - Avian Virology: Current Research and Future Trends
P. 349

340  |  Coppo et al.
          Guy, J.S., Barnes, H.J., and Smith, L. (1991). Increased virulence of   International Chicken Genome Sequencing Consortium (2004). Sequence
            modified-live infectious laryngotracheitis vaccine virus following   and  comparative  analysis  of  the  chicken  genome  provide  unique
            bird-to-bird passage. Avian Dis. 35, 348–355.          perspectives on vertebrate evolution. Nature 432, 695–716.
          Haddadi, S., Kim, D.S., Jasmine, H., van der Meer, F., Czub, M., and   Jerome, K.R., Chen, Z., Lang, R., Torres, M.R., Hofmeister, J., Smith, S.,
            Abdul-Careem, M.F. (2013). Induction of toll-like receptor 4 signaling in   Fox, R., Froelich, C.J., and Corey, L. (2001). HSV and glycoprotein J
            avian macrophages inhibits infectious laryngotracheitis virus replication   inhibit caspase activation and apoptosis induced by granzyme B or Fas. J.
            in  a nitric  oxide  dependent way.  Vet.  Immunol.  Immunopathol.  155,   Immunol. 167, 3928–3935.
            270–275. https://doi.org/10.1016/j.vetimm.2013.08.005  Johnson, D.I., Vagnozzi, A., Dorea, F., Riblet, S.M., Mundt, A., Zavala, G.,
          Haddadi, S., Thapa, S., Kameka, A.M., Hui, J., Czub, M., Nagy, E., Muench,   and García, M. (2010). Protection against infectious laryngotracheitis
            G., and Abdul-Careem, M.F. (2015). Toll-like receptor 2 ligand,   by  in  ovo vaccination with commercially available viral vector
            lipoteichoic acid is inhibitory against infectious laryngotracheitis virus   recombinant vaccines. Avian Dis.  54, 1251–1259. https://doi.
            infection in vitro and in vivo. Dev. Comp. Immunol. 48, 22–32. https://  org/10.1637/9401-052310-Reg.1
            doi.org/10.1016/j.dci.2014.08.011                   Johnson, M.A., Prideaux, C.T., Kongsuwan, K., Sheppard, M., and Fahey,
          Han, M.G., Kweon, C.H., Mo, I.P., and Kim, S.J. (2002). Pathogenicity   K.J. (1991). Gallid herpesvirus 1 (infectious laryngotracheitis virus):
            and  vaccine  efficacy  of  a  thymidine  kinase  gene  deleted  infectious   cloning and physical maps of the SA-2 strain. Arch. Virol. 119, 181–198.
            laryngotracheitis virus expressing the green fluorescent protein   Johnson, M.A., Prideaux, C.T., Kongsuwan, K., Tyack, S.G., and Sheppard,
            gene. Arch. Virol.  147, 1017–1031. https://doi.org/10.1007/  M. (1995a). ICP27 immediate early gene, glycoprotein K (gK) and
            s00705-001-0794-y                                      DNA helicase homologues of infectious laryngotracheitis virus (gallid
          Harris, S.L., Frank, I., Yee, A., Cohen, G.H., Eisenberg, R.J., and Friedman,   herpesvirus 1) SA-2 strain. Arch. Virol. 140, 623–634.
            H.M. (1990). Glycoprotein C of herpes simplex virus type 1 prevents   Johnson, M.A., Tyack, S.G., Prideaux, C., Kongsuwan, K., and Sheppard,
            complement-mediated cell lysis and virus neutralization. J. Infect. Dis.   M. (1995b). Nucleotide sequence of infectious laryngotracheitis virus
            162, 331–337.                                          (gallid herpesvirus 1) ICP4 gene. Virus Res. 35, 193–204.
          Helferich, D., Veits, J., Mettenleiter, T.C., and Fuchs, W. (2007a).   Johnson, M.A., Tyack, S.G., Prideaux, C.T., Kongsuwan, K., and Sheppard,
            Identification of transcripts and protein products of the UL31, UL37,   M. (1997). Nucleotide sequence of the left-terminus of infectious
            UL46, UL47, UL48, UL49 and US4 gene homologues of avian infectious   laryngotracheitis virus (Gallid herpesvirus 1) SA-2 strain. Arch. Virol.
            laryngotracheitis virus. J. Gen. Virol. 88, 719–731.   142, 1903–1910.
          Helferich, D., Veits, J., Teifke, J.P., Mettenleiter, T.C., and Fuchs, W. (2007b).   Jordan, F.T., Evanson, H.M., and Bennett, J.M. (1967). The survival of the
            The UL47 gene of avian infectious laryngotracheitis virus is not essential   virus of infectious laryngotracheitis. Zentralblatt Veterinarmedizin
            for in vitro replication but is relevant for virulence in chickens. J. Gen.   Reihe B 14, 135–150.
            Virol. 88, 732–742.                                 Kaiser, P., Poh, T.Y., Rothwell, L., Avery, S., Balu, S., Pathania, U.S., Hughes,
          Honda, T., Okamura, H., Taneno, A., Yamada, S., and Takahashi, E. (1994).   S., Goodchild, M., Morrell, S., Watson, M.,  et al. (2005). A genomic
            The role of cell-mediated immunity in chickens inoculated with the   analysis of chicken cytokines and chemokines. J. Interferon Cytokine
            cell-associated vaccine of attenuated infectious laryngotracheitis virus. J.   Res. 25, 467–484. https://doi.org/10.1089/jir.2005.25.467
            Vet. Med. Sci. 56, 1051–1055.                       Kanabagatte Basavarajappa, M., Kumar, S., Khattar, S.K., Gebreluul,
          Hook, L.M., Lubinski, J.M., Jiang, M., Pangburn, M.K., and Friedman,   G.T., Paldurai, A., and Samal, S.K. (2014). A recombinant Newcastle
            H.M. (2006). Herpes simplex virus type 1 and 2 glycoprotein C   disease virus (NDV) expressing infectious laryngotracheitis virus
            prevents complement-mediated neutralization induced by natural   (ILTV) surface glycoprotein D protects against highly virulent ILTV
            immunoglobulin M antibody. J. Virol. 80, 4038–4046.    and NDV challenges in chickens. Vaccine 32, 3555–3563. https://doi.
          Huemer, H.P., Larcher, C., Dierich, M.P., and Falke, D. (1992). Factors   org/10.1016/j.vaccine.2014.04.068
            influencing the interaction of herpes simplex virus glycoprotein C with   Kanabagatte Basavarajappa, M., Song, H., Lamichhane, C., and Samal, S.K.
            the third component of complement. Arch. Virol. 127, 291–303.  (2015). Glycoprotein-based enzyme-linked immunosorbent assays
          Huemer, H.P., Wang, Y., Garred, P., Koistinen, V., and Oppermann, S. (1993).   for serodiagnosis of infectious laryngotracheitis. J. Clin. Microbiol. 53,
            Herpes simplex virus glycoprotein C: molecular mimicry of complement   1727–1730. https://doi.org/10.1128/JCM.02540-14
            regulatory proteins by a viral protein. Immunology 79, 639–647.  Kawaguchi, T., Nomura, K., Hirayama, Y., and Kitagawa, T. (1987).
          Hughes, C.S., and Jones, R.C. (1988). Comparison of cultural methods for   Establishment and characterization of a chicken hepatocellular
            primary isolation of infectious laryngotracheitis virus from field material.   carcinoma cell line, LMH. Cancer Res. 47, 4460–4464.
            Avian Pathol. 17, 295–303.                          Kent, J.R., Kang, W., Miller, C.G., and Fraser, N.W. (2003). Herpes simplex
          Hughes, C.S., Jones, R.C., Gaskell, R.M., Jordan, F.T., and Bradbury, J.M.   virus latency-associated transcript gene function. J. Neurovirol.  9,
            (1987). Demonstration in live chickens of the carrier state in infectious   285–290.
            laryngotracheitis. Res. Vet. Sci. 42, 407–410.      Kim, H.R., Kang, M.S., Kim, M.J., Lee, H.S., and Kwon, Y.K. (2013).
          Hughes, C.S., Gaskell, R.M., Jones, R.C., Bradbury, J.M., and Jordan, F.T.   Restriction fragment length polymorphism analysis of multiple genome
            (1989). Effects of certain stress factors on the re-excretion of infectious   regions of Korean isolates of infectious laryngotracheitis virus collected
            laryngotracheitis virus from latently infected carrier birds. Res. Vet. Sci.   from chickens. Poult. Sci.  92, 2053–2058. https://doi.org/10.3382/
            46, 274–276.                                           ps.2013-03134
          Hughes, C.S., Gaskell, R.M., Bradbury, J.M., Jordan, F.T., and Jones, R.C.   King, A.M.Q., Adams, M.J., Carstens, E.B., and Lefkowitz, E.J. (2012). Virus
            (1991a). Survey of field outbreaks of avian infectious laryngotracheitis   Taxonomy: Classification and Nomenclature of Viruses: Ninth Report
            in England and Wales. Vet. Rec. 129, 258–260.          of the International Committee on Taxonomy of Viruses (Waltham:
          Hughes, C.S., Williams, R.A., Gaskell, R.M., Jordan, F.T., Bradbury, J.M.,   Academic Press, London), pp. 99–107.
            Bennett, M., and Jones, R.C. (1991b). Latency and reactivation of   Kingsley, D.H., and Keeler, C.L. (1999). Infectious laryngotracheitis virus,
            infectious laryngotracheitis vaccine virus. Arch. Virol. 121, 213–218.  an alpha herpesvirus that does not interact with cell surface heparan
          Humberd, J., García, M., Riblet, S.M., Resurreccion, R.S., and Brown, T.P.   sulfate. Virology 256, 213–219.
            (2002). Detection of infectious laryngotracheitis virus in formalin-fixed,   Kingsley, D.H., Hazel, J.W., and Keeler, C.L. (1994). Identification and
            paraffin-embedded tissues by nested polymerase chain reaction. Avian   characterization of the infectious laryngotracheitis virus glycoprotein C
            Dis.  46, 64–74. https://doi.org/10.1637/0005-2086(2002)046[0064:  gene. Virology 203, 336–343.
            DOILVI]2.0.CO;2                                     Kirkpatrick, N.C., Mahmoudian, A., Colson, C.A., Devlin, J.M., and
          Hung, S.L., Peng, C., Kostavasili, I., Friedman, H.M., Lambris, J.D.,   Noormohammadi, A.H. (2006a). Relationship between mortality,
            Eisenberg, R.J., and Cohen, G.H. (1994). The interaction of glycoprotein   clinical signs and tracheal pathology in infectious laryngotracheitis.
            C of herpes simplex virus types 1 and 2 with the alternative complement   Avian Pathol. 35, 449–453.
            pathway. Virology 203, 299–312.                     Kirkpatrick, N.C., Mahmoudian, A., O’Rourke, D., and Noormohammadi,
                                                                   A.H. (2006b). Differentiation of infectious laryngotracheitis virus isolates
   344   345   346   347   348   349   350   351   352   353   354