Skip to main content
Erschienen in: Archives of Virology 10/2017

24.06.2017 | Review

Recent progress in the development of white spot syndrome virus vaccines for protecting shrimp against viral infection

verfasst von: Shuying Feng, Chen Wang, Shu Hu, Qiongya Wu, Aifang Li

Erschienen in: Archives of Virology | Ausgabe 10/2017

Einloggen, um Zugang zu erhalten

Abstract

White spot syndrome virus (WSSV) has been extensively investigated since the white spot disease outbreak in shrimp in 1990. These investigations have mainly focused on determining the function of viral structural proteins, and on utilizing the envelope proteins as subunit vaccines to protect the host. These studies have shown that a WSSV vaccine can be a practical and effective approach for controlling WSSV infection. The development of such a vaccine has become an intense focus of research in the field. This research has resulted in significant progress in the development of WSSV vaccines. However, because of the progress of this work, periodic summaries are needed to facilitate further research on the development of effective WSSV vaccines. This paper provides a comprehensive summary on the status of WSSV vaccines with regard to the following aspects: subunit vaccines, inactivated whole virus vaccines, DNA vaccines, protective antibodies, and the application of RNAi technology. Current limitations in this area of research are also described, as well as prospects for the development and application of improved WSSV vaccines in the future, and for investigating other important aquatic diseases.
Literatur
1.
Zurück zum Zitat Van Hulten MC, Witteveldt J, Peters S, Kloosterboer N, Tarchini R, Fiers M et al (2001) The white spot syndrome virus DNA genome sequence. Virology 286(1):7–22PubMedCrossRef Van Hulten MC, Witteveldt J, Peters S, Kloosterboer N, Tarchini R, Fiers M et al (2001) The white spot syndrome virus DNA genome sequence. Virology 286(1):7–22PubMedCrossRef
2.
Zurück zum Zitat Seibert CH, Pinto AR (2012) Challenges in shrimp aquaculture due to viral diseases: distribution and biology of the five major penaeid viruses and interventions to avoid viral incidence and dispersion. Braz J Microbiol 43(3):857–864PubMedPubMedCentralCrossRef Seibert CH, Pinto AR (2012) Challenges in shrimp aquaculture due to viral diseases: distribution and biology of the five major penaeid viruses and interventions to avoid viral incidence and dispersion. Braz J Microbiol 43(3):857–864PubMedPubMedCentralCrossRef
3.
Zurück zum Zitat Vidya R, Makesh M, Purushothaman CS, Chaudhari A, Gireesh-Babu P, Rajendran KV (2016) Report of leucine-rich repeats (LRRs) from Scylla serrata: ontogeny, molecular cloning, characterization and expression analysis following ligand stimulation, and upon bacterial and viral infections. Gene 590(1):159–168PubMedCrossRef Vidya R, Makesh M, Purushothaman CS, Chaudhari A, Gireesh-Babu P, Rajendran KV (2016) Report of leucine-rich repeats (LRRs) from Scylla serrata: ontogeny, molecular cloning, characterization and expression analysis following ligand stimulation, and upon bacterial and viral infections. Gene 590(1):159–168PubMedCrossRef
4.
Zurück zum Zitat Lin YC, Chen JC, Man SN, Morni WZ, Suhaili AS, Cheng SY et al (2012) Modulation of innate immunity and gene expressions in white shrimp Litopenaeus vannamei following long-term starvation and re-feeding. Results Immunol 2:148–156PubMedPubMedCentralCrossRef Lin YC, Chen JC, Man SN, Morni WZ, Suhaili AS, Cheng SY et al (2012) Modulation of innate immunity and gene expressions in white shrimp Litopenaeus vannamei following long-term starvation and re-feeding. Results Immunol 2:148–156PubMedPubMedCentralCrossRef
5.
Zurück zum Zitat Raj S, Vijayan KK, Alavandi SV, Balasubramanian CP, Santiago TC (2012) Effect of temperature and salinity on the infectivity pattern of white spot syndrome virus (WSSV) in giant tiger shrimp Penaeus monodon (Fabricius, 1837). Indian J Fish 59(3):109–115 Raj S, Vijayan KK, Alavandi SV, Balasubramanian CP, Santiago TC (2012) Effect of temperature and salinity on the infectivity pattern of white spot syndrome virus (WSSV) in giant tiger shrimp Penaeus monodon (Fabricius, 1837). Indian J Fish 59(3):109–115
6.
Zurück zum Zitat Melena J, Bayot B, Betancourt I, Amano Y, Panchana F, Alday V et al (2006) Pre-exposure to infectious hypodermal and haematopoietic necrosis virus or to inactivated white spot syndrome virus (WSSV) confers protection against WSSV in Penaeus vannamei (Boone) post-larvae. J Fish Dis 29(10):589–600PubMedCrossRef Melena J, Bayot B, Betancourt I, Amano Y, Panchana F, Alday V et al (2006) Pre-exposure to infectious hypodermal and haematopoietic necrosis virus or to inactivated white spot syndrome virus (WSSV) confers protection against WSSV in Penaeus vannamei (Boone) post-larvae. J Fish Dis 29(10):589–600PubMedCrossRef
7.
Zurück zum Zitat Bindhu F, Velmurugan S, Donio MB, Michaelbabu M, Citarasu T (2014) Influence of Agathi grandiflora active principles inhibit viral multiplication and stimulate immune system in Indian white shrimp Fenneropenaeus indicus against white spot syndrome virus infection. Fish Shellfish Immunol 41(2):482–492PubMedCrossRef Bindhu F, Velmurugan S, Donio MB, Michaelbabu M, Citarasu T (2014) Influence of Agathi grandiflora active principles inhibit viral multiplication and stimulate immune system in Indian white shrimp Fenneropenaeus indicus against white spot syndrome virus infection. Fish Shellfish Immunol 41(2):482–492PubMedCrossRef
8.
Zurück zum Zitat Kimbrell DA, Beutler B (2001) The evolution and genetics of innate immunity. Nat Rev Gen 2:256–267CrossRef Kimbrell DA, Beutler B (2001) The evolution and genetics of innate immunity. Nat Rev Gen 2:256–267CrossRef
9.
Zurück zum Zitat Kurtz J, Franz K (2003) Innate defence: evidence for memory in invertebrate immunity. Nature 425(6953):37–38PubMedCrossRef Kurtz J, Franz K (2003) Innate defence: evidence for memory in invertebrate immunity. Nature 425(6953):37–38PubMedCrossRef
10.
Zurück zum Zitat Witteveldt J, Cifuentes CC, Vlak JM, Van Hulten MC (2004) Protection of Penaeus monodon against white spot syndrome virus by oral vaccination. J Virol 78(4):2057–2061PubMedPubMedCentralCrossRef Witteveldt J, Cifuentes CC, Vlak JM, Van Hulten MC (2004) Protection of Penaeus monodon against white spot syndrome virus by oral vaccination. J Virol 78(4):2057–2061PubMedPubMedCentralCrossRef
11.
Zurück zum Zitat Witteveldt J, Vlak Just M, Van Hulten MCW (2004) Protection of Penaeus monodon against white spot syndrome virus using a WSSV subunit vaccine. Fish Shellfish Immunol 16(5):571–579PubMedCrossRef Witteveldt J, Vlak Just M, Van Hulten MCW (2004) Protection of Penaeus monodon against white spot syndrome virus using a WSSV subunit vaccine. Fish Shellfish Immunol 16(5):571–579PubMedCrossRef
12.
Zurück zum Zitat Bright Singh IS, Manjusha M, Pai SS, Philip R (2005) Fenneropenaeus indicus is protected from white spot disease by oral administration of inactivated white spot syndrome virus. Dis Aquat Organ 66(3):265–270PubMedCrossRef Bright Singh IS, Manjusha M, Pai SS, Philip R (2005) Fenneropenaeus indicus is protected from white spot disease by oral administration of inactivated white spot syndrome virus. Dis Aquat Organ 66(3):265–270PubMedCrossRef
13.
Zurück zum Zitat Rout N, Kumar S, Jaganmohan S, Murugan V (2007) DNA vaccines encoding viral envelope proteins confer protective immunity against WSSV in black tiger shrimp. Vaccine 25(15):2778–2786PubMedCrossRef Rout N, Kumar S, Jaganmohan S, Murugan V (2007) DNA vaccines encoding viral envelope proteins confer protective immunity against WSSV in black tiger shrimp. Vaccine 25(15):2778–2786PubMedCrossRef
14.
Zurück zum Zitat Robalino J, Browdy CL, Prior S, Metz A, Parnell P, Gross P et al (2004) Induction of antiviral immunity by double stranded RNA in a marine invertebrate. J Virol 78(19):10442–10448PubMedPubMedCentralCrossRef Robalino J, Browdy CL, Prior S, Metz A, Parnell P, Gross P et al (2004) Induction of antiviral immunity by double stranded RNA in a marine invertebrate. J Virol 78(19):10442–10448PubMedPubMedCentralCrossRef
15.
Zurück zum Zitat Satoh J, Nishizawa T, Yoshimizu M (2008) Protection against white spot syndrome virus (WSSV) infection in kuruma shrimp orally vaccinated with WSSV rVP26 and rVP28. Dis Aquat Organ 82(2):89–96PubMedCrossRef Satoh J, Nishizawa T, Yoshimizu M (2008) Protection against white spot syndrome virus (WSSV) infection in kuruma shrimp orally vaccinated with WSSV rVP26 and rVP28. Dis Aquat Organ 82(2):89–96PubMedCrossRef
16.
Zurück zum Zitat Valdez A, Yepiz-Plascencia G, Ricca E, Olmos J (2014) First Litopenaeus vannamei WSSV 100% oral vaccination protection using CotC: Vp26 fusion protein displayed on Bacillus subtilis spores surface. J Appl Microbiol 117(2):347–357PubMedCrossRef Valdez A, Yepiz-Plascencia G, Ricca E, Olmos J (2014) First Litopenaeus vannamei WSSV 100% oral vaccination protection using CotC: Vp26 fusion protein displayed on Bacillus subtilis spores surface. J Appl Microbiol 117(2):347–357PubMedCrossRef
17.
Zurück zum Zitat Van Hulten MC, Westenberg M, Goodall SD, Vlak JM (2000) Identification of two major virion protein genes of white spot syndrome virus of shrimp. Virology 266(2):227–236PubMedCrossRef Van Hulten MC, Westenberg M, Goodall SD, Vlak JM (2000) Identification of two major virion protein genes of white spot syndrome virus of shrimp. Virology 266(2):227–236PubMedCrossRef
18.
Zurück zum Zitat Van Hulten MC, Witteveldt J, Snippe M (2001) White spot syndrome virus envelope protein VP28 is involved in the systemic infection of shrimp. Virology 285(2):228–233PubMedCrossRef Van Hulten MC, Witteveldt J, Snippe M (2001) White spot syndrome virus envelope protein VP28 is involved in the systemic infection of shrimp. Virology 285(2):228–233PubMedCrossRef
19.
Zurück zum Zitat Yang JY, Chang CI, Liu KF, Hseu JR, Chen LH, Tsai JM (2012) Viral resistance and immune responses of the shrimp Litopenaeus vannamei vaccinated by two WSSV structural proteins. Immunol Lett 148(1):41–48PubMedCrossRef Yang JY, Chang CI, Liu KF, Hseu JR, Chen LH, Tsai JM (2012) Viral resistance and immune responses of the shrimp Litopenaeus vannamei vaccinated by two WSSV structural proteins. Immunol Lett 148(1):41–48PubMedCrossRef
20.
Zurück zum Zitat Fu LL, Li WF, Du HH, Dai W, Xu ZR (2008) Oral vaccination with envelope protein VP28 against white spot syndrome virus in Procambarus clarkii using Bacillus subtilis as delivery vehicles. Lett Appl Microbiol 46(5):581–586PubMedCrossRef Fu LL, Li WF, Du HH, Dai W, Xu ZR (2008) Oral vaccination with envelope protein VP28 against white spot syndrome virus in Procambarus clarkii using Bacillus subtilis as delivery vehicles. Lett Appl Microbiol 46(5):581–586PubMedCrossRef
21.
Zurück zum Zitat Fu LL, Shuai JB, Xu ZR, Li JR, Li WF (2010) Immune responses of Fenneropenaeus chinensis against white spot syndrome virus after oral delivery of VP28 using Bacillus subtilis as vehicles. Fish Shellfish Immunol 28(1):49–55PubMedCrossRef Fu LL, Shuai JB, Xu ZR, Li JR, Li WF (2010) Immune responses of Fenneropenaeus chinensis against white spot syndrome virus after oral delivery of VP28 using Bacillus subtilis as vehicles. Fish Shellfish Immunol 28(1):49–55PubMedCrossRef
22.
Zurück zum Zitat Sun YM, Li FH, Chi YH, Xiang JH (2013) Enhanced resistance of marine shrimp Exopalamon carincauda Holthuis to WSSV by injecting live VP28-recombinant bacteria. Acta Oceanol Sinica 32(2):52–58CrossRef Sun YM, Li FH, Chi YH, Xiang JH (2013) Enhanced resistance of marine shrimp Exopalamon carincauda Holthuis to WSSV by injecting live VP28-recombinant bacteria. Acta Oceanol Sinica 32(2):52–58CrossRef
23.
Zurück zum Zitat Solís-Lucero G, Manoutcharian K, Hernández-López J, Ascencio F (2016) Injected phage displayed VP28 vaccine reduces shrimp Litopenaeus vannamei mortality by white spot syndrome virus infection. Fish Shellfish Immunol 55:401–406PubMedCrossRef Solís-Lucero G, Manoutcharian K, Hernández-López J, Ascencio F (2016) Injected phage displayed VP28 vaccine reduces shrimp Litopenaeus vannamei mortality by white spot syndrome virus infection. Fish Shellfish Immunol 55:401–406PubMedCrossRef
24.
Zurück zum Zitat Syed Musthaq S, Madhan S, Sahul Hameed AS, Kwang J (2009) Localization of VP28 on the baculovirus envelope and its immunogenicity against white spot syndrome virus in Penaeus monodon. Virology 391(2):315–324PubMedCrossRef Syed Musthaq S, Madhan S, Sahul Hameed AS, Kwang J (2009) Localization of VP28 on the baculovirus envelope and its immunogenicity against white spot syndrome virus in Penaeus monodon. Virology 391(2):315–324PubMedCrossRef
25.
Zurück zum Zitat Syed MS, Kwang J (2011) Oral Vaccination of baculovirus-expressed VP28 displays enhanced protection against white spot syndrome virus in Penaeus monodon. PLoS One 6(11):e26428PubMedCrossRef Syed MS, Kwang J (2011) Oral Vaccination of baculovirus-expressed VP28 displays enhanced protection against white spot syndrome virus in Penaeus monodon. PLoS One 6(11):e26428PubMedCrossRef
26.
Zurück zum Zitat Jha RK, Xu ZR, Bai SJ, Sun JY, Wei FL, Shen J (2007) Protection of Procambarus clarkii against white spot syndrome virus using recombinant oral vaccine expressed in Pichia pastoris. Fish Shellfish Immunol 22(4):295–307PubMedCrossRef Jha RK, Xu ZR, Bai SJ, Sun JY, Wei FL, Shen J (2007) Protection of Procambarus clarkii against white spot syndrome virus using recombinant oral vaccine expressed in Pichia pastoris. Fish Shellfish Immunol 22(4):295–307PubMedCrossRef
27.
Zurück zum Zitat Wei KQ, Yang JX (2011) Histological alterations and immune response in the crayfish Procambarus clarkii given rVP28-incorporated diets. Fish Shellfish Immunol 31(6):1122–1128PubMedCrossRef Wei KQ, Yang JX (2011) Histological alterations and immune response in the crayfish Procambarus clarkii given rVP28-incorporated diets. Fish Shellfish Immunol 31(6):1122–1128PubMedCrossRef
28.
Zurück zum Zitat Feng S, Feng W, Zhao L, Gu H, Li Q, Shi K et al (2014) Preparation of transgenic Dunaliella salina for immunization against white spot syndrome virus in crayfish. Arch Virol 159(3):519–525PubMedCrossRef Feng S, Feng W, Zhao L, Gu H, Li Q, Shi K et al (2014) Preparation of transgenic Dunaliella salina for immunization against white spot syndrome virus in crayfish. Arch Virol 159(3):519–525PubMedCrossRef
29.
Zurück zum Zitat Caipang CM, Verjan N, Ooi EL, Kondo H, Hirono I, Aoki T et al (2008) Enhanced survival of shrimp, Penaeus (Marsupenaeus) japonicus from white spot syndrome disease after oral administration of recombinant VP28 expressed in Brevibacillus brevis. Fish Shellfish Immunol 25(3):315–320PubMedCrossRef Caipang CM, Verjan N, Ooi EL, Kondo H, Hirono I, Aoki T et al (2008) Enhanced survival of shrimp, Penaeus (Marsupenaeus) japonicus from white spot syndrome disease after oral administration of recombinant VP28 expressed in Brevibacillus brevis. Fish Shellfish Immunol 25(3):315–320PubMedCrossRef
30.
Zurück zum Zitat Wang Y, Zhang X, Yuan L, Xu T, Rao Y, Li J et al (2008) Generation of recombinant monoclonal antibodies to study structure-function of envelope protein VP28 of white spot syndrome virus from shrimp. Biochem Biophys Res Commun 372(4):902–906PubMedCrossRef Wang Y, Zhang X, Yuan L, Xu T, Rao Y, Li J et al (2008) Generation of recombinant monoclonal antibodies to study structure-function of envelope protein VP28 of white spot syndrome virus from shrimp. Biochem Biophys Res Commun 372(4):902–906PubMedCrossRef
31.
Zurück zum Zitat Qiu Z, Liu Q, Huang J (2012) Efficiency of two fragments of VP28 against white spot syndrome virus in Litopenaeus vannamei. Aquaculture 338:2–12CrossRef Qiu Z, Liu Q, Huang J (2012) Efficiency of two fragments of VP28 against white spot syndrome virus in Litopenaeus vannamei. Aquaculture 338:2–12CrossRef
32.
Zurück zum Zitat Mavichak R, Takano T, Kondo H, Hirono I, Wada S, Hatai K et al (2010) The effect of liposome-coated recombinant protein VP28 against white spot syndrome virus in kuruma shrimp, Marsupenaeus japonicus. J Fish Dis 33(1):69–74PubMedCrossRef Mavichak R, Takano T, Kondo H, Hirono I, Wada S, Hatai K et al (2010) The effect of liposome-coated recombinant protein VP28 against white spot syndrome virus in kuruma shrimp, Marsupenaeus japonicus. J Fish Dis 33(1):69–74PubMedCrossRef
33.
Zurück zum Zitat Jha RK, Xu ZR, Shen J, Bai SJ, Sun JY, Li WF (2006) The efficacy of recombinant vaccines against white spot syndrome virus in Procambarus clarkii. Immunol Lett 105(1):68–76PubMedCrossRef Jha RK, Xu ZR, Shen J, Bai SJ, Sun JY, Li WF (2006) The efficacy of recombinant vaccines against white spot syndrome virus in Procambarus clarkii. Immunol Lett 105(1):68–76PubMedCrossRef
34.
Zurück zum Zitat Du HH, Hou CL, Wu XG, Xie RH, Wang YZ (2013) Antigenic and immunogenic properties of truncated VP28 protein of white spot syndrome virus in Procambarus clarki. Fish Shellfish Immunol 34(1):332–338PubMedCrossRef Du HH, Hou CL, Wu XG, Xie RH, Wang YZ (2013) Antigenic and immunogenic properties of truncated VP28 protein of white spot syndrome virus in Procambarus clarki. Fish Shellfish Immunol 34(1):332–338PubMedCrossRef
35.
Zurück zum Zitat Witteveldt J, Vlak JM, Van Hulten MC (2006) Increased tolerance of Litopenaeus vannamei to white spot syndrome virus (WSSV) infection after oral application of the viral envelope protein VP28. Dis Aquat Organ 70(1–2):167–170PubMedCrossRef Witteveldt J, Vlak JM, Van Hulten MC (2006) Increased tolerance of Litopenaeus vannamei to white spot syndrome virus (WSSV) infection after oral application of the viral envelope protein VP28. Dis Aquat Organ 70(1–2):167–170PubMedCrossRef
36.
Zurück zum Zitat Vaseeharan B, Anand TP, Murugan T, Chen JC (2006) Shrimp vaccination trials with the VP292 protein of white spot syndrome virus. Lett Appl Microbiol 43(2):137–142PubMedCrossRef Vaseeharan B, Anand TP, Murugan T, Chen JC (2006) Shrimp vaccination trials with the VP292 protein of white spot syndrome virus. Lett Appl Microbiol 43(2):137–142PubMedCrossRef
37.
Zurück zum Zitat Ha YM, Soo-Jung G, Thi-Hoai N, Ra CH, Kim KH, Nam YK et al (2008) Vaccination of shrimp (Penaeus chinensis) against white spot syndrome virus (WSSV). J Microbiol Biotechnol 18(5):964–967PubMed Ha YM, Soo-Jung G, Thi-Hoai N, Ra CH, Kim KH, Nam YK et al (2008) Vaccination of shrimp (Penaeus chinensis) against white spot syndrome virus (WSSV). J Microbiol Biotechnol 18(5):964–967PubMed
38.
Zurück zum Zitat Thomas A, Sudheer NS, Viswanathan K, Kiron V, Bright Singh IS, Narayanan RB (2014) Immunogenicity and protective efficacy of a major white spot syndrome virus (WSSV) envelope protein VP24 expressed in Escherichia coli against WSSV. J Invertebr Pathol 123:17–24PubMedCrossRef Thomas A, Sudheer NS, Viswanathan K, Kiron V, Bright Singh IS, Narayanan RB (2014) Immunogenicity and protective efficacy of a major white spot syndrome virus (WSSV) envelope protein VP24 expressed in Escherichia coli against WSSV. J Invertebr Pathol 123:17–24PubMedCrossRef
39.
Zurück zum Zitat Lee YJ, Chen LL (2017) WSSV envelope protein VP51B links structural protein complexes and may mediate virus infection. J Fish Dis 40(4):571–581PubMedCrossRef Lee YJ, Chen LL (2017) WSSV envelope protein VP51B links structural protein complexes and may mediate virus infection. J Fish Dis 40(4):571–581PubMedCrossRef
40.
Zurück zum Zitat Wang L, Sun X, Zhou Z, Zhang T, Yi Q, Liu R et al (2014) The promotion of cytoskeleton integration and redox in the haemocyte of shrimp Litopenaeus vannamei after the successive stimulation of recombinant VP28. Dev Comp Immunol 45(1):123–132PubMedCrossRef Wang L, Sun X, Zhou Z, Zhang T, Yi Q, Liu R et al (2014) The promotion of cytoskeleton integration and redox in the haemocyte of shrimp Litopenaeus vannamei after the successive stimulation of recombinant VP28. Dev Comp Immunol 45(1):123–132PubMedCrossRef
41.
Zurück zum Zitat Thomas A, Sudheer NS, Kiron V, Bright Singh IS, Narayanan RB (2016) Expression profile of key immune-related genes in Penaeus monodon juveniles after oral administration of recombinant envelope protein VP28 of white spot syndrome virus. Microb Pathog 96:72–79PubMedCrossRef Thomas A, Sudheer NS, Kiron V, Bright Singh IS, Narayanan RB (2016) Expression profile of key immune-related genes in Penaeus monodon juveniles after oral administration of recombinant envelope protein VP28 of white spot syndrome virus. Microb Pathog 96:72–79PubMedCrossRef
42.
Zurück zum Zitat Kulkarni AD, Kiron V, Rombout JH, Brinchmann MF, Fernandes JM, Sudheer NS et al (2014) Protein profiling in the gut of Penaeus monodon gavaged with oral WSSV-vaccines and live white spot syndrome virus. Proteomics 14(13–14):1660–1673PubMedCrossRef Kulkarni AD, Kiron V, Rombout JH, Brinchmann MF, Fernandes JM, Sudheer NS et al (2014) Protein profiling in the gut of Penaeus monodon gavaged with oral WSSV-vaccines and live white spot syndrome virus. Proteomics 14(13–14):1660–1673PubMedCrossRef
43.
Zurück zum Zitat Chen LH, Lin SW, Liu KF, Chang CI, Hseu JR, Tsai JM (2016) Comparative proteomic analysis of Litopenaeus vannamei gills after vaccination with two WSSV structural proteins. Fish Shellfish Immunol 49:306–314PubMedCrossRef Chen LH, Lin SW, Liu KF, Chang CI, Hseu JR, Tsai JM (2016) Comparative proteomic analysis of Litopenaeus vannamei gills after vaccination with two WSSV structural proteins. Fish Shellfish Immunol 49:306–314PubMedCrossRef
44.
Zurück zum Zitat Zhang Y, Ning JF, Qu XQ, Meng XL, Xu JP (2012) TAT-mediated oral subunit vaccine against white spot syndrome virus in crayfish. J Virol Methods 181(1):59–67PubMedCrossRef Zhang Y, Ning JF, Qu XQ, Meng XL, Xu JP (2012) TAT-mediated oral subunit vaccine against white spot syndrome virus in crayfish. J Virol Methods 181(1):59–67PubMedCrossRef
45.
Zurück zum Zitat Kumar S, Balamurali MM, Sankaran K (2014) Bacterial lipid modification of proteins requires appropriate secretory signals even for expression-implications for biogenesis and protein engineering. Mol Membr Biol 31(6):183–194PubMedCrossRef Kumar S, Balamurali MM, Sankaran K (2014) Bacterial lipid modification of proteins requires appropriate secretory signals even for expression-implications for biogenesis and protein engineering. Mol Membr Biol 31(6):183–194PubMedCrossRef
46.
Zurück zum Zitat Nguyen AT, Pham CK, Pham HT, Pham HL, Nguyen AH, Dang LT et al (2014) Bacillus subtilis spores expressing the VP28 antigen: a potential oral treatment to protect Litopenaeus vannamei against white spot syndrome. FEMS Microbiol Lett 358(2):202–208PubMedCrossRef Nguyen AT, Pham CK, Pham HT, Pham HL, Nguyen AH, Dang LT et al (2014) Bacillus subtilis spores expressing the VP28 antigen: a potential oral treatment to protect Litopenaeus vannamei against white spot syndrome. FEMS Microbiol Lett 358(2):202–208PubMedCrossRef
47.
Zurück zum Zitat Ning D, Leng X, Li Q, Xu W (2011) Surface-displayed VP28 on Bacillus subtilis spores induce protection against white spot syndrome virus in crayfish by oral administration. J Appl Microbiol 111(6):1327–1336PubMedCrossRef Ning D, Leng X, Li Q, Xu W (2011) Surface-displayed VP28 on Bacillus subtilis spores induce protection against white spot syndrome virus in crayfish by oral administration. J Appl Microbiol 111(6):1327–1336PubMedCrossRef
48.
Zurück zum Zitat Shan HJ, Long Y, Meng XL, Xu JP, Lu W, Wang J (2008) Fusion- expression and bioactivity analysis of crap growth hormone gene and envelope protein vp28 of Penaeus monodon WSSV. Acta Hydrobiol Sinica 32(3):308–313CrossRef Shan HJ, Long Y, Meng XL, Xu JP, Lu W, Wang J (2008) Fusion- expression and bioactivity analysis of crap growth hormone gene and envelope protein vp28 of Penaeus monodon WSSV. Acta Hydrobiol Sinica 32(3):308–313CrossRef
49.
Zurück zum Zitat Zhu F, Du H, Miao ZG, Quan HZ, Xu ZR (2009) Protection of Procambarus clarkii against white spot syndrome virus using inactivated WSSV. Fish Shellfish Immunol 26(5):685–690PubMedCrossRef Zhu F, Du H, Miao ZG, Quan HZ, Xu ZR (2009) Protection of Procambarus clarkii against white spot syndrome virus using inactivated WSSV. Fish Shellfish Immunol 26(5):685–690PubMedCrossRef
50.
Zurück zum Zitat Amar EC, Faisan JP (2011) Efficacy of an inactivated vaccine and nutritional additives against white spot syndrome virus (WSSV) in shrimp (Penaeus monodon). Isr J Aquacult-Bamid 63:1–9 Amar EC, Faisan JP (2011) Efficacy of an inactivated vaccine and nutritional additives against white spot syndrome virus (WSSV) in shrimp (Penaeus monodon). Isr J Aquacult-Bamid 63:1–9
51.
Zurück zum Zitat Heidareh M, Sedeh FM, Soltani M, Rajabifar S, Afsharnasab M, Dashtiannasab A (2014) White spot syndrome virus inactivation study by using gamma irradiation. Chin J Oceanol Limnol 32(5):1024–1028CrossRef Heidareh M, Sedeh FM, Soltani M, Rajabifar S, Afsharnasab M, Dashtiannasab A (2014) White spot syndrome virus inactivation study by using gamma irradiation. Chin J Oceanol Limnol 32(5):1024–1028CrossRef
52.
Zurück zum Zitat Sudheer NS, Poulose G, Thomas A, Viswanath K, Kulkarni A, Narayanan RB et al (2015) Expression profile of bio-defense genes in Penaeus monodon gills in response to formalin inactivated white spot syndrome virus vaccine. Antiviral Res 117:60–68PubMedCrossRef Sudheer NS, Poulose G, Thomas A, Viswanath K, Kulkarni A, Narayanan RB et al (2015) Expression profile of bio-defense genes in Penaeus monodon gills in response to formalin inactivated white spot syndrome virus vaccine. Antiviral Res 117:60–68PubMedCrossRef
53.
Zurück zum Zitat Yogeeswaran A, Velmurugan S, Punitha SM, Babu MM, Selvaraj T, Kumaran T et al (2012) Protection of Penaeus monodon against white spot syndrome virus by inactivated vaccine with herbal immunostimulants. Fish Shellfish Immunol 32(6):1058–1067PubMedCrossRef Yogeeswaran A, Velmurugan S, Punitha SM, Babu MM, Selvaraj T, Kumaran T et al (2012) Protection of Penaeus monodon against white spot syndrome virus by inactivated vaccine with herbal immunostimulants. Fish Shellfish Immunol 32(6):1058–1067PubMedCrossRef
54.
Zurück zum Zitat Citarasu T (2010) Herbal biomedicines: a new opportunity for aquaculture industry. Aquacult Int 18(3):403–414CrossRef Citarasu T (2010) Herbal biomedicines: a new opportunity for aquaculture industry. Aquacult Int 18(3):403–414CrossRef
55.
Zurück zum Zitat Evensen Ø, Leong JA (2013) DNA vaccines against viral diseases of farmed fish. Fish Shellfish Immunol 35(6):1751–1758PubMedCrossRef Evensen Ø, Leong JA (2013) DNA vaccines against viral diseases of farmed fish. Fish Shellfish Immunol 35(6):1751–1758PubMedCrossRef
56.
Zurück zum Zitat Pathan M, Gireesh-Babu P, Pavan-Kumar A, Jeena K, Sharma R, Makesh M et al (2013) In vivo therapeutic efficacy of recombinant Penaeus monodon antiviral protein (rPmAV) administered in three different forms to WSSV infected Penaeus monodon. Aquaculture 376–379:64–67CrossRef Pathan M, Gireesh-Babu P, Pavan-Kumar A, Jeena K, Sharma R, Makesh M et al (2013) In vivo therapeutic efficacy of recombinant Penaeus monodon antiviral protein (rPmAV) administered in three different forms to WSSV infected Penaeus monodon. Aquaculture 376–379:64–67CrossRef
57.
Zurück zum Zitat Chowdhury LM, Gireesh-Babu P, Pavan-Kumar A, Suresh Babu PP, Chaudhari A (2014) First report on vertical transmission of a plasmid DNA in freshwater prawn, Macrobrachium rosenbergii. J Invertebr Pathol 121:24–27PubMedCrossRef Chowdhury LM, Gireesh-Babu P, Pavan-Kumar A, Suresh Babu PP, Chaudhari A (2014) First report on vertical transmission of a plasmid DNA in freshwater prawn, Macrobrachium rosenbergii. J Invertebr Pathol 121:24–27PubMedCrossRef
58.
Zurück zum Zitat Li XA, Liu QH, Hou L, Huang J (2010) Effect of VP28 DNA vaccine on white spot syndrome virus in Litopenaeus vannamei. Aquacult Int 18(6):1035–1044CrossRef Li XA, Liu QH, Hou L, Huang J (2010) Effect of VP28 DNA vaccine on white spot syndrome virus in Litopenaeus vannamei. Aquacult Int 18(6):1035–1044CrossRef
59.
Zurück zum Zitat Das R, Karthireddy S, Gireesh-Babu P, Reddy AK, Krishna G, Chaudhari A (2010) Protection of Penaeus monodon from infection of white spot syndrome virus by DNA construct expressing long hairpin-RNA against ICP11 gene. Indian J Virol 21(2):95–102PubMedCrossRef Das R, Karthireddy S, Gireesh-Babu P, Reddy AK, Krishna G, Chaudhari A (2010) Protection of Penaeus monodon from infection of white spot syndrome virus by DNA construct expressing long hairpin-RNA against ICP11 gene. Indian J Virol 21(2):95–102PubMedCrossRef
60.
Zurück zum Zitat Mu Y, Lan JF, Zhang XW, Wang XW, Zhao XF, Wang JX (2012) A vector that expresses VP28 of WSSV can protect red swamp crayfish from white spot disease. Dev Comp Immunol 36(2):442–449PubMedCrossRef Mu Y, Lan JF, Zhang XW, Wang XW, Zhao XF, Wang JX (2012) A vector that expresses VP28 of WSSV can protect red swamp crayfish from white spot disease. Dev Comp Immunol 36(2):442–449PubMedCrossRef
61.
Zurück zum Zitat Ahanger S, Sandaka S, Ananad D, Mani MK, Kondadhasula R, Reddy CS et al (2014) Protection of shrimp Penaeus monodon from WSSV infection using antisense constructs. Mar Biotechnol (NY) 16(1):63–73CrossRef Ahanger S, Sandaka S, Ananad D, Mani MK, Kondadhasula R, Reddy CS et al (2014) Protection of shrimp Penaeus monodon from WSSV infection using antisense constructs. Mar Biotechnol (NY) 16(1):63–73CrossRef
62.
Zurück zum Zitat Chotigeat W, Deachamag P, Phongdara A (2007) Identification of a protein binding to the phagocytosis activating protein (PAP) in immunized black tiger shrimp. Aquaculture 271(1–4):112–120CrossRef Chotigeat W, Deachamag P, Phongdara A (2007) Identification of a protein binding to the phagocytosis activating protein (PAP) in immunized black tiger shrimp. Aquaculture 271(1–4):112–120CrossRef
63.
Zurück zum Zitat Khimmakthong U, Deachamag P, Phongdara A, Chotigeat W (2011) Stimulating the immune response of Litopenaeus vannamei using the phagocytosis activating protein (PAP) gene. Fish Shellfish Immunol 31(3):415–422PubMedCrossRef Khimmakthong U, Deachamag P, Phongdara A, Chotigeat W (2011) Stimulating the immune response of Litopenaeus vannamei using the phagocytosis activating protein (PAP) gene. Fish Shellfish Immunol 31(3):415–422PubMedCrossRef
64.
Zurück zum Zitat Krishnan P, Babu PG, Saravanan S, Rajendran KV, Chaudhari A (2009) DNA constructs expressing long-hairpin RNA (lhRNA) protect Penaeus monodon against white spot syndrome virus. Vaccine 27(29):3849–3855PubMedCrossRef Krishnan P, Babu PG, Saravanan S, Rajendran KV, Chaudhari A (2009) DNA constructs expressing long-hairpin RNA (lhRNA) protect Penaeus monodon against white spot syndrome virus. Vaccine 27(29):3849–3855PubMedCrossRef
65.
Zurück zum Zitat Rajesh Kumar S, Ishaq Ahamed VP, Sarathi M, Nazeer Basha A, Sahul Hameed AS (2008) Immunological responses of Penaeus monodon to DNA vaccine and its efficacy to protect shrimp against white spot syndrome virus (WSSV). Fish Shellfish Immunol 24(4):467–478PubMedCrossRef Rajesh Kumar S, Ishaq Ahamed VP, Sarathi M, Nazeer Basha A, Sahul Hameed AS (2008) Immunological responses of Penaeus monodon to DNA vaccine and its efficacy to protect shrimp against white spot syndrome virus (WSSV). Fish Shellfish Immunol 24(4):467–478PubMedCrossRef
66.
Zurück zum Zitat Kono T, Sonoda K, Kitao Y, Mekata T, Itami T, Sakai M (2009) The expression analysis of innate immune-related genes in kuruma shrimp Penaeus japonicus after DNA vaccination against penaeid rod-shaped DNA virus. JPN Soc Fish Pathol 44(2):94–97CrossRef Kono T, Sonoda K, Kitao Y, Mekata T, Itami T, Sakai M (2009) The expression analysis of innate immune-related genes in kuruma shrimp Penaeus japonicus after DNA vaccination against penaeid rod-shaped DNA virus. JPN Soc Fish Pathol 44(2):94–97CrossRef
67.
Zurück zum Zitat Syed Musthaq SK, Kwang J (2015) Reprint of “evolution of specific immunity in shrimp–a vaccination perspective against white spot syndrome virus”. Dev Comp Immunol 48(2):342–353PubMedCrossRef Syed Musthaq SK, Kwang J (2015) Reprint of “evolution of specific immunity in shrimp–a vaccination perspective against white spot syndrome virus”. Dev Comp Immunol 48(2):342–353PubMedCrossRef
68.
Zurück zum Zitat Rajeshkumar S, Venkatesan C, Sarathi M, Sarathbabu V, Thomas J, Anver Basha K et al (2009) Oral delivery of DNA construct using chitosan nanoparticles to protect the shrimp from white spot syndrome virus (WSSV). Fish Shellfish Immunol 26(3):429–437PubMedCrossRef Rajeshkumar S, Venkatesan C, Sarathi M, Sarathbabu V, Thomas J, Anver Basha K et al (2009) Oral delivery of DNA construct using chitosan nanoparticles to protect the shrimp from white spot syndrome virus (WSSV). Fish Shellfish Immunol 26(3):429–437PubMedCrossRef
69.
Zurück zum Zitat Vimal S, Abdul Majeed S, Taju G, Nambi KS, Sundar Raj N, Madan N et al (2013) Chitosan tripolyphosphate (CS/TPP) nanoparticles: preparation, characterization and application for gene delivery in shrimp. Acta Tropica 128(3):486–493PubMedCrossRef Vimal S, Abdul Majeed S, Taju G, Nambi KS, Sundar Raj N, Madan N et al (2013) Chitosan tripolyphosphate (CS/TPP) nanoparticles: preparation, characterization and application for gene delivery in shrimp. Acta Tropica 128(3):486–493PubMedCrossRef
70.
Zurück zum Zitat Ning JF, Zhu W, Xu JP, Zheng CY, Meng XL (2009) Oral delivery of DNA vaccine encoding VP28 against white spot syndrome virus in crayfish by attenuated Salmonella typhimurium. Vaccine 27(7):1127–1135PubMedCrossRef Ning JF, Zhu W, Xu JP, Zheng CY, Meng XL (2009) Oral delivery of DNA vaccine encoding VP28 against white spot syndrome virus in crayfish by attenuated Salmonella typhimurium. Vaccine 27(7):1127–1135PubMedCrossRef
71.
Zurück zum Zitat Rattanarojpong T, Khankaew S, Khunrae P, Vanichviriyakit R, Poomputsa K (2016) Recombinant baculovirus mediates dsRNA specific to rr2 delivery and its protective efficacy against WSSV infection. J Biotechnol 229:44–52PubMedCrossRef Rattanarojpong T, Khankaew S, Khunrae P, Vanichviriyakit R, Poomputsa K (2016) Recombinant baculovirus mediates dsRNA specific to rr2 delivery and its protective efficacy against WSSV infection. J Biotechnol 229:44–52PubMedCrossRef
72.
Zurück zum Zitat Ha YM, Kim YI, Kim KH, Kim SK (2008) Neutralization of white spot syndrome virus (WSSV) for Penaeus chinensis by antiserum raised against recombinant VP19. Environ Biol 29(4):513–517 Ha YM, Kim YI, Kim KH, Kim SK (2008) Neutralization of white spot syndrome virus (WSSV) for Penaeus chinensis by antiserum raised against recombinant VP19. Environ Biol 29(4):513–517
73.
Zurück zum Zitat Li QL, Zhan WB, Sheng XZ (2009) In vivo neutralization assay of monoclonal antibodies specific to WSSV envelope protein (VP28 and VP19). Prog Fish Sci 30(6):56–61 (in Chinese) Li QL, Zhan WB, Sheng XZ (2009) In vivo neutralization assay of monoclonal antibodies specific to WSSV envelope protein (VP28 and VP19). Prog Fish Sci 30(6):56–61 (in Chinese)
74.
Zurück zum Zitat Patil R, Shankar KM, Krupesha Sharma SR, Kulkarni A, Patil P, Naveen Kumar BT et al (2011) Epitope analysis of white spot syndrome virus of Penaeus monodon by in vivo neutralization assay employing a panel of monoclonal antibodies. Fish Shellfish Immunol 30(4–5):1007–1013PubMedCrossRef Patil R, Shankar KM, Krupesha Sharma SR, Kulkarni A, Patil P, Naveen Kumar BT et al (2011) Epitope analysis of white spot syndrome virus of Penaeus monodon by in vivo neutralization assay employing a panel of monoclonal antibodies. Fish Shellfish Immunol 30(4–5):1007–1013PubMedCrossRef
75.
Zurück zum Zitat Gui L, Wang B, Li FH, Sun YM, Luo Z, Xiang JH (2012) Blocking the large extracellular loop (LEL) domain of FcTetraspanin-3 could inhibit the infection of white spot syndrome virus (WSSV) in Chinese shrimp, Fenneropenaeus chinensis. Fish Shellfish Immunol 32(6):1008–1015PubMedCrossRef Gui L, Wang B, Li FH, Sun YM, Luo Z, Xiang JH (2012) Blocking the large extracellular loop (LEL) domain of FcTetraspanin-3 could inhibit the infection of white spot syndrome virus (WSSV) in Chinese shrimp, Fenneropenaeus chinensis. Fish Shellfish Immunol 32(6):1008–1015PubMedCrossRef
76.
Zurück zum Zitat Chaivisuthangkura P, Phattanapaijitkul P, Thammapalerd N, Rukpratanporn S, Longyant S, Sithigorngul W et al (2006) Development of a polyclonal antibody specific to VP19 envelope protein of white spot syndrome virus (WSSV) using a recombinant protein preparation. J Virol Methods 133(2):180–184PubMedCrossRef Chaivisuthangkura P, Phattanapaijitkul P, Thammapalerd N, Rukpratanporn S, Longyant S, Sithigorngul W et al (2006) Development of a polyclonal antibody specific to VP19 envelope protein of white spot syndrome virus (WSSV) using a recombinant protein preparation. J Virol Methods 133(2):180–184PubMedCrossRef
77.
Zurück zum Zitat Li LJ, Yuan JF, Cai CA, Gu WG, Shi ZL (2006) Multiple envelope proteins are involved in white spot syndrome virus (WSSV) infection in crayfish. Arch Virol 151(7):1309–1317PubMedCrossRef Li LJ, Yuan JF, Cai CA, Gu WG, Shi ZL (2006) Multiple envelope proteins are involved in white spot syndrome virus (WSSV) infection in crayfish. Arch Virol 151(7):1309–1317PubMedCrossRef
78.
Zurück zum Zitat Li HX, Meng XL, Xu JP, Lu W, Wang J (2005) Protection of crayfish, Cambarus clarkii, from white spot syndrome virus by polyclonal antibodies against a viral envelope fusion protein. J Fish Dis 28(5):285–291PubMedCrossRef Li HX, Meng XL, Xu JP, Lu W, Wang J (2005) Protection of crayfish, Cambarus clarkii, from white spot syndrome virus by polyclonal antibodies against a viral envelope fusion protein. J Fish Dis 28(5):285–291PubMedCrossRef
79.
Zurück zum Zitat Lu Y, Liu J, Jin L, Li X, Zhen Y, Xue H et al (2008) Passive protection of shrimp against white spot syndrome virus (WSSV) using specific antibody from egg yolk of chickens immunized with inactivated virus or a WSSV-DNA vaccine. Fish Shellfish Immunol 25(5):604–610PubMedCrossRef Lu Y, Liu J, Jin L, Li X, Zhen Y, Xue H et al (2008) Passive protection of shrimp against white spot syndrome virus (WSSV) using specific antibody from egg yolk of chickens immunized with inactivated virus or a WSSV-DNA vaccine. Fish Shellfish Immunol 25(5):604–610PubMedCrossRef
80.
Zurück zum Zitat Lu Y, Liu J, Jin L, Li X, Zhen Y, Xue H et al (2009) Passive immunization of crayfish (Procambius clarkiaii) with chicken egg yolk immunoglobulin (IgY) against white spot syndrome virus (WSSV). Appl Biochem Biotechnol 159(3):750–758PubMedCrossRef Lu Y, Liu J, Jin L, Li X, Zhen Y, Xue H et al (2009) Passive immunization of crayfish (Procambius clarkiaii) with chicken egg yolk immunoglobulin (IgY) against white spot syndrome virus (WSSV). Appl Biochem Biotechnol 159(3):750–758PubMedCrossRef
81.
Zurück zum Zitat Robalino J, Payne C, Parnell P, Shepard E, Grimes AC, Metz A et al (2006) Inactivation of white spot syndrome virus (WSSV) by normal rabbit serum: implications for the role of the envelope protein VP28 in WSSV infection of shrimp. Virus Res 118(1–2):55–61PubMedCrossRef Robalino J, Payne C, Parnell P, Shepard E, Grimes AC, Metz A et al (2006) Inactivation of white spot syndrome virus (WSSV) by normal rabbit serum: implications for the role of the envelope protein VP28 in WSSV infection of shrimp. Virus Res 118(1–2):55–61PubMedCrossRef
82.
Zurück zum Zitat Yoganandhan K, Syed Musthaq S, Narayanan RB, Sahul Hameed AS (2004) Production of polyclonal antiserum against recombinant VP28 protein and its application for the detection of white spot syndrome virus in crustaceans. J Fish Dis 27(9):517–522PubMedCrossRef Yoganandhan K, Syed Musthaq S, Narayanan RB, Sahul Hameed AS (2004) Production of polyclonal antiserum against recombinant VP28 protein and its application for the detection of white spot syndrome virus in crustaceans. J Fish Dis 27(9):517–522PubMedCrossRef
83.
Zurück zum Zitat Hou CL, Cao Y, Xie RH, Wang YZ, Du HH (2011) Characterization and diagnostic use of a monoclonal antibody for VP28 envelope protein of white spot syndrome virus. Virol Sin 26(4):260–266PubMedCrossRef Hou CL, Cao Y, Xie RH, Wang YZ, Du HH (2011) Characterization and diagnostic use of a monoclonal antibody for VP28 envelope protein of white spot syndrome virus. Virol Sin 26(4):260–266PubMedCrossRef
84.
Zurück zum Zitat Siriwattanarat R, Longyant S, Chaivisuthangkura P, Wangman P, Vaniksampanna A, Sithigorngul P (2013) Improvement of immunodetection of white spot syndrome virus using a monoclonal antibody specific for heterologously expressed icp11. Arch Virol 158(5):967–979PubMedCrossRef Siriwattanarat R, Longyant S, Chaivisuthangkura P, Wangman P, Vaniksampanna A, Sithigorngul P (2013) Improvement of immunodetection of white spot syndrome virus using a monoclonal antibody specific for heterologously expressed icp11. Arch Virol 158(5):967–979PubMedCrossRef
85.
Zurück zum Zitat Sithigorngul P, Rukpratanporn S, Chaivisuthangkura P, Sridulyakul P, Longyant S (2011) Simultaneous and rapid detection of white spot syndrome virus and yellow head virus infection in shrimp with a dual immunochromatographic strip test. J Virol Methods 173(1):85–91PubMedCrossRef Sithigorngul P, Rukpratanporn S, Chaivisuthangkura P, Sridulyakul P, Longyant S (2011) Simultaneous and rapid detection of white spot syndrome virus and yellow head virus infection in shrimp with a dual immunochromatographic strip test. J Virol Methods 173(1):85–91PubMedCrossRef
86.
Zurück zum Zitat Cheng QY, Meng XL, Xu JP, Lu W, Wang J (2007) Development of lateral-flow immunoassay for WSSV with polyclonal antibodies raised against recombinant VP (19 + 28) fusion protein. Virol Sinica 22(1):61–67CrossRef Cheng QY, Meng XL, Xu JP, Lu W, Wang J (2007) Development of lateral-flow immunoassay for WSSV with polyclonal antibodies raised against recombinant VP (19 + 28) fusion protein. Virol Sinica 22(1):61–67CrossRef
87.
Zurück zum Zitat Patil R, Shankar KM, Kumar BT, Kulkarni A, Patil P, Moger N (2013) Development of a monoclonal antibody-based flow-through immunoassay (FTA) for detection of white spot syndrome virus (WSSV) in black tiger shrimp Penaeus monodon. J Fish Dis 36(9):753–762PubMedCrossRef Patil R, Shankar KM, Kumar BT, Kulkarni A, Patil P, Moger N (2013) Development of a monoclonal antibody-based flow-through immunoassay (FTA) for detection of white spot syndrome virus (WSSV) in black tiger shrimp Penaeus monodon. J Fish Dis 36(9):753–762PubMedCrossRef
88.
Zurück zum Zitat Chaivisuthangkura P, Longyant S, Sithigorngul P (2014) Immunological-based assays for specific detection of shrimp viruses. World J Virol 3(1):1–10PubMedPubMedCentralCrossRef Chaivisuthangkura P, Longyant S, Sithigorngul P (2014) Immunological-based assays for specific detection of shrimp viruses. World J Virol 3(1):1–10PubMedPubMedCentralCrossRef
89.
Zurück zum Zitat Li C, Gao XX, Huang J, Liang Y (2016) Studies of the viral binding proteins of shrimp BP53, a receptor of white spot syndrome virus. J Invertebr Pathol 134:48–53PubMedCrossRef Li C, Gao XX, Huang J, Liang Y (2016) Studies of the viral binding proteins of shrimp BP53, a receptor of white spot syndrome virus. J Invertebr Pathol 134:48–53PubMedCrossRef
90.
Zurück zum Zitat Yang H, Li S, Li F, Wen R, Xiang J (2015) Analysis on the expression and function of syndecan in the pacific white shrimp Litopenaeus vannamei. Dev Comp Immunol 51(2):278–286PubMedCrossRef Yang H, Li S, Li F, Wen R, Xiang J (2015) Analysis on the expression and function of syndecan in the pacific white shrimp Litopenaeus vannamei. Dev Comp Immunol 51(2):278–286PubMedCrossRef
91.
Zurück zum Zitat Chang Y, Xing J, Tang X, Sheng X, Zhan W (2016) Haemocyanin content of shrimp (Fenneropenaeus chinensis) associated with white spot syndrome virus and Vibrio harveyi infection process. Fish Shellfish Immunol 48:185–189PubMedCrossRef Chang Y, Xing J, Tang X, Sheng X, Zhan W (2016) Haemocyanin content of shrimp (Fenneropenaeus chinensis) associated with white spot syndrome virus and Vibrio harveyi infection process. Fish Shellfish Immunol 48:185–189PubMedCrossRef
92.
Zurück zum Zitat Bartholomay LC, Loy DS, Dustin Loy J, Harris DL (2012) Nucleic-acid based antivirals: augmenting RNA interference to ‘vaccinate’ Litopenaeus vannamei. J Invertebr Pathol 110(2):261–266PubMedCrossRef Bartholomay LC, Loy DS, Dustin Loy J, Harris DL (2012) Nucleic-acid based antivirals: augmenting RNA interference to ‘vaccinate’ Litopenaeus vannamei. J Invertebr Pathol 110(2):261–266PubMedCrossRef
93.
Zurück zum Zitat Robalino J, Bartlett T, Shepard E, Prior S, Jaramillo G, Scura E et al (2005) Double-stranded RNA induces sequence-specific antiviral silencing in addition to nonspecific immunity in a marine shrimp: convergence of RNA interference and innate immunity in the invertebrate antiviral response? J Virol 79(21):13561–13571PubMedPubMedCentralCrossRef Robalino J, Bartlett T, Shepard E, Prior S, Jaramillo G, Scura E et al (2005) Double-stranded RNA induces sequence-specific antiviral silencing in addition to nonspecific immunity in a marine shrimp: convergence of RNA interference and innate immunity in the invertebrate antiviral response? J Virol 79(21):13561–13571PubMedPubMedCentralCrossRef
94.
Zurück zum Zitat Xu J, Han F, Zhang X (2007) Silencing shrimp white spot syndrome virus (WSSV) genes by siRNA. Antiviral Res 73(2):126–131PubMedCrossRef Xu J, Han F, Zhang X (2007) Silencing shrimp white spot syndrome virus (WSSV) genes by siRNA. Antiviral Res 73(2):126–131PubMedCrossRef
95.
Zurück zum Zitat Attasart P, Kaewkhaw R, Chimwai C, Kongphom U, Namramoon O, Panyim S (2009) Inhibition of white spot syndrome virus replication in Penaeus monodon by combined silencing of viral rr2 and shrimp PmRab7. Virus Res 145(1):127–133PubMedCrossRef Attasart P, Kaewkhaw R, Chimwai C, Kongphom U, Namramoon O, Panyim S (2009) Inhibition of white spot syndrome virus replication in Penaeus monodon by combined silencing of viral rr2 and shrimp PmRab7. Virus Res 145(1):127–133PubMedCrossRef
96.
Zurück zum Zitat Sanjuktha M, Stalin Raj V, Aravindan K, Alavandi SV, Poornima M, Santiago TC (2012) Comparative efficacy of double-stranded RNAs targeting WSSV structural and nonstructural genes in controlling viral multiplication in Penaeus monodon. Arch Virol 157(5):993–998PubMedCrossRef Sanjuktha M, Stalin Raj V, Aravindan K, Alavandi SV, Poornima M, Santiago TC (2012) Comparative efficacy of double-stranded RNAs targeting WSSV structural and nonstructural genes in controlling viral multiplication in Penaeus monodon. Arch Virol 157(5):993–998PubMedCrossRef
97.
Zurück zum Zitat Ongvarrasopone C, Chanasakulniyom M, Sritunyalucksana K, Panyim S (2008) Suppression of PmRab7 by dsRNA inhibits WSSV or YHV infection in shrimp. Mar Biotechnol (NY) 10(4):374–381CrossRef Ongvarrasopone C, Chanasakulniyom M, Sritunyalucksana K, Panyim S (2008) Suppression of PmRab7 by dsRNA inhibits WSSV or YHV infection in shrimp. Mar Biotechnol (NY) 10(4):374–381CrossRef
98.
Zurück zum Zitat Kulkarni AD, Caipang CM, Kiron V, Rombout JH, Fernandes JM, Brinchmann MF (2014) Evaluation of immune and apoptosis related gene responses using an RNAi approach in vaccinated Penaeus monodon during oral WSSV infection. Mar Genom 18(Pt A):55–65CrossRef Kulkarni AD, Caipang CM, Kiron V, Rombout JH, Fernandes JM, Brinchmann MF (2014) Evaluation of immune and apoptosis related gene responses using an RNAi approach in vaccinated Penaeus monodon during oral WSSV infection. Mar Genom 18(Pt A):55–65CrossRef
99.
Zurück zum Zitat Alenton RR, Kondo H, Hirono I, Maningas MB (2016) Gene silencing of VP9 gene impairs WSSV infectivity on Macrobrachium rosenbergii. Virus Res 214:65–70PubMedCrossRef Alenton RR, Kondo H, Hirono I, Maningas MB (2016) Gene silencing of VP9 gene impairs WSSV infectivity on Macrobrachium rosenbergii. Virus Res 214:65–70PubMedCrossRef
100.
Zurück zum Zitat Sudhakaran R, Mekata T, Kono T, Inada M, Okugawa S, Yoshimine M et al (2011) Double-stranded RNA-mediated silencing of the white spot syndrome virus VP28 gene in kuruma shrimp, Marsupenaeus japonicus. Aquacult Res 42(8):1153–1162CrossRef Sudhakaran R, Mekata T, Kono T, Inada M, Okugawa S, Yoshimine M et al (2011) Double-stranded RNA-mediated silencing of the white spot syndrome virus VP28 gene in kuruma shrimp, Marsupenaeus japonicus. Aquacult Res 42(8):1153–1162CrossRef
101.
Zurück zum Zitat Thammasorn T, Sangsuriya P, Meemetta W, Senapin S, Jitrakorn S, Rattanarojpong T et al (2015) Large-scale production and antiviral efficacy of multi-target double-stranded RNA for the prevention of white spot syndrome virus (WSSV) in shrimp. BMC Biotechnol 15:110PubMedPubMedCentralCrossRef Thammasorn T, Sangsuriya P, Meemetta W, Senapin S, Jitrakorn S, Rattanarojpong T et al (2015) Large-scale production and antiviral efficacy of multi-target double-stranded RNA for the prevention of white spot syndrome virus (WSSV) in shrimp. BMC Biotechnol 15:110PubMedPubMedCentralCrossRef
102.
Zurück zum Zitat Mejía-Ruíz CH, Vega-Peña S, Alvarez-Ruiz P, Escobedo-Bonilla CM (2011) Double-stranded RNA against white spot syndrome virus (WSSV) vp28 or vp26 reduced susceptibility of Litopenaeus vannamei to WSSV, and survivors exhibited decreased susceptibility in subsequent re-infections. J Invertebr Pathol 107(1):65–68PubMedCrossRef Mejía-Ruíz CH, Vega-Peña S, Alvarez-Ruiz P, Escobedo-Bonilla CM (2011) Double-stranded RNA against white spot syndrome virus (WSSV) vp28 or vp26 reduced susceptibility of Litopenaeus vannamei to WSSV, and survivors exhibited decreased susceptibility in subsequent re-infections. J Invertebr Pathol 107(1):65–68PubMedCrossRef
103.
Zurück zum Zitat Sarathi M, Simon MC, Venkatesan C, Hameed AS (2008) Oral administration of bacterially expressed VP28 dsRNA to protect Penaeus monodon from white spot syndrome virus. Mar Biotechnol (NY) 10(3):242–249CrossRef Sarathi M, Simon MC, Venkatesan C, Hameed AS (2008) Oral administration of bacterially expressed VP28 dsRNA to protect Penaeus monodon from white spot syndrome virus. Mar Biotechnol (NY) 10(3):242–249CrossRef
104.
Zurück zum Zitat Liu C, Li F, Sun Y, Zhang X, Yuan J, Yang H et al (2016) Virus-derived small RNAs in the penaeid shrimp Fenneropenaeus chinensis during acute infection of the DNA virus WSSV. Sci Rep 6:28678PubMedPubMedCentralCrossRef Liu C, Li F, Sun Y, Zhang X, Yuan J, Yang H et al (2016) Virus-derived small RNAs in the penaeid shrimp Fenneropenaeus chinensis during acute infection of the DNA virus WSSV. Sci Rep 6:28678PubMedPubMedCentralCrossRef
105.
Zurück zum Zitat Shu L, Li C, Zhang X (2016) The role of shrimp miR-965 in virus infection. Fish Shellfish Immunol 54:427–434PubMedCrossRef Shu L, Li C, Zhang X (2016) The role of shrimp miR-965 in virus infection. Fish Shellfish Immunol 54:427–434PubMedCrossRef
106.
Zurück zum Zitat Kaewkascholkul N, Somboonviwat K, Asakawa S, Hirono I, Tassanakajon A, Somboonwiwat K (2016) Shrimp miRNAs regulate innate immune response against white spot syndrome virus infection. Dev Comp Immunol 60:191–201PubMedCrossRef Kaewkascholkul N, Somboonviwat K, Asakawa S, Hirono I, Tassanakajon A, Somboonwiwat K (2016) Shrimp miRNAs regulate innate immune response against white spot syndrome virus infection. Dev Comp Immunol 60:191–201PubMedCrossRef
108.
Zurück zum Zitat Wang S, Li H, Qian Z, Song X, Zhang Z, Zuo H et al (2015) Identification and functional characterization of the TAB2 gene from Litopenaeus vannamei. Fish Shellfish Immunol 46(2):206–216PubMedCrossRef Wang S, Li H, Qian Z, Song X, Zhang Z, Zuo H et al (2015) Identification and functional characterization of the TAB2 gene from Litopenaeus vannamei. Fish Shellfish Immunol 46(2):206–216PubMedCrossRef
109.
Zurück zum Zitat Wang S, Qian Z, Li H, Lu K, Xu X, Weng S, He J et al (2016) Identification and characterization of MKK7 as an upstream activator of JNK in Litopenaeus vannamei. Fish Shellfish Immunol 48:285–294PubMedCrossRef Wang S, Qian Z, Li H, Lu K, Xu X, Weng S, He J et al (2016) Identification and characterization of MKK7 as an upstream activator of JNK in Litopenaeus vannamei. Fish Shellfish Immunol 48:285–294PubMedCrossRef
110.
Zurück zum Zitat Feng S, Li X, Xu Z, Qi J (2014) Dunaliella salina as a novel host for the production of recombinant proteins. Appl Microbiol Biotechnol 98(10):4293–4300PubMedCrossRef Feng S, Li X, Xu Z, Qi J (2014) Dunaliella salina as a novel host for the production of recombinant proteins. Appl Microbiol Biotechnol 98(10):4293–4300PubMedCrossRef
111.
Zurück zum Zitat Karuppannan AK, Qiang J, Chang CC, Kwang J (2013) A novel baculovirus vector shows efficient gene delivery of modified porcine reproductive and respiratory syndrome virus antigens and elicits specific immune response. Vaccine 31(46):5471–5478PubMedCrossRef Karuppannan AK, Qiang J, Chang CC, Kwang J (2013) A novel baculovirus vector shows efficient gene delivery of modified porcine reproductive and respiratory syndrome virus antigens and elicits specific immune response. Vaccine 31(46):5471–5478PubMedCrossRef
112.
Zurück zum Zitat Lin F, Jie Z, Hou L, Li F, Yang F (2015) Characterization of white spot syndrome virus VP52B and its interaction with VP26. Virus Genes 50(1):46–51PubMedCrossRef Lin F, Jie Z, Hou L, Li F, Yang F (2015) Characterization of white spot syndrome virus VP52B and its interaction with VP26. Virus Genes 50(1):46–51PubMedCrossRef
113.
Zurück zum Zitat Li Z, Chen W, Xu L, Li F, Yang F (2015) Identification of the interaction domains of white spot syndrome virus envelope proteins VP28 and VP24. Virus Res 200:24–29PubMedCrossRef Li Z, Chen W, Xu L, Li F, Yang F (2015) Identification of the interaction domains of white spot syndrome virus envelope proteins VP28 and VP24. Virus Res 200:24–29PubMedCrossRef
114.
Zurück zum Zitat Li L, Lin Z, Xu L, Yang F (2011) The RGD motif in VP31 of white spot syndrome virus is involved in cell adhesion. Arch Virol 156(8):1317–1321PubMedCrossRef Li L, Lin Z, Xu L, Yang F (2011) The RGD motif in VP31 of white spot syndrome virus is involved in cell adhesion. Arch Virol 156(8):1317–1321PubMedCrossRef
115.
Zurück zum Zitat Zhang JY, Liu QH, Huang J (2014) Multiple proteins of white spot syndrome virus involved in recognition of beta-integrin. J Biosci 39(3):381–388PubMedCrossRef Zhang JY, Liu QH, Huang J (2014) Multiple proteins of white spot syndrome virus involved in recognition of beta-integrin. J Biosci 39(3):381–388PubMedCrossRef
116.
Zurück zum Zitat Watthanasurorot A, Guo E, Tharntada S, Lo CF, Söderhäll K, Söderhäll I (2014) Hijacking of host calreticulin is required for the white spot syndrome virus replication cycle. J Virol 88(14):8116–8128PubMedPubMedCentral Watthanasurorot A, Guo E, Tharntada S, Lo CF, Söderhäll K, Söderhäll I (2014) Hijacking of host calreticulin is required for the white spot syndrome virus replication cycle. J Virol 88(14):8116–8128PubMedPubMedCentral
117.
Zurück zum Zitat Huang PY, Leu JH, Chen LL (2014) A newly identified protein complex that mediates white spot syndrome virus infection via chitin-binding protein. J Gen Virol 95(8):1799–1808PubMedCrossRef Huang PY, Leu JH, Chen LL (2014) A newly identified protein complex that mediates white spot syndrome virus infection via chitin-binding protein. J Gen Virol 95(8):1799–1808PubMedCrossRef
118.
Zurück zum Zitat Zhong R, Tang X, Zhan W, Xing J, Sheng X (2013) Expression kinetics of β-integrin in Chinese shrimp (Fenneropenaeus chinensis) hemocytes following infection with white spot syndrome virus. Fish Shellfish Immunol 35(2):539–545PubMedCrossRef Zhong R, Tang X, Zhan W, Xing J, Sheng X (2013) Expression kinetics of β-integrin in Chinese shrimp (Fenneropenaeus chinensis) hemocytes following infection with white spot syndrome virus. Fish Shellfish Immunol 35(2):539–545PubMedCrossRef
119.
Zurück zum Zitat Lan JF, Li XC, Sun JJ, Gong J, Wang XW, Shi XZ et al (2013) Prohibitin interacts with envelope proteins of white spot syndrome virus and prevents infection in the red swamp crayfish, Procambarus clarkii. J Virol 87(23):12756–12765PubMedPubMedCentralCrossRef Lan JF, Li XC, Sun JJ, Gong J, Wang XW, Shi XZ et al (2013) Prohibitin interacts with envelope proteins of white spot syndrome virus and prevents infection in the red swamp crayfish, Procambarus clarkii. J Virol 87(23):12756–12765PubMedPubMedCentralCrossRef
120.
Zurück zum Zitat Kanagavelu S, Termini JM, Gupta S, Raffa FN, Fuller KA, Rivas Y et al (2014) HIV-1 adenoviral vector vaccines expressing multi-trimeric BAFF and 4-1BBL enhance T cell mediated anti-viral immunity. PLoS One 9(2):e90100PubMedPubMedCentralCrossRef Kanagavelu S, Termini JM, Gupta S, Raffa FN, Fuller KA, Rivas Y et al (2014) HIV-1 adenoviral vector vaccines expressing multi-trimeric BAFF and 4-1BBL enhance T cell mediated anti-viral immunity. PLoS One 9(2):e90100PubMedPubMedCentralCrossRef
121.
Zurück zum Zitat Lu X, Wang J, Jin X, Zhu J (2015) High-level expression of a novel liver-targeting fusion interferon with preferred Escherichia coli codon preference and its anti-hepatitis B virus activity in vivo. BMC Biotechnol 15:54PubMedPubMedCentralCrossRef Lu X, Wang J, Jin X, Zhu J (2015) High-level expression of a novel liver-targeting fusion interferon with preferred Escherichia coli codon preference and its anti-hepatitis B virus activity in vivo. BMC Biotechnol 15:54PubMedPubMedCentralCrossRef
122.
Zurück zum Zitat Luo K, Zhang H, Zavala F, Biragyn A, Espinosa DA, Markham RB (2014) Fusion of antigen to a dendritic cell targeting chemokine combined with adjuvant yields a malaria DNA vaccine with enhanced protective capabilities. PLoS One 9(3):e90413PubMedPubMedCentralCrossRef Luo K, Zhang H, Zavala F, Biragyn A, Espinosa DA, Markham RB (2014) Fusion of antigen to a dendritic cell targeting chemokine combined with adjuvant yields a malaria DNA vaccine with enhanced protective capabilities. PLoS One 9(3):e90413PubMedPubMedCentralCrossRef
123.
Zurück zum Zitat Li D, Huang Y, Du Q, Wang Z, Chang L, Zhao X et al (2016) CD40 Ligand and GMCSF co-expression enhance the immune responses and protective efficacy of PCV2 adenovirus vaccine. Viral Immunol 29(3):148–158PubMedCrossRef Li D, Huang Y, Du Q, Wang Z, Chang L, Zhao X et al (2016) CD40 Ligand and GMCSF co-expression enhance the immune responses and protective efficacy of PCV2 adenovirus vaccine. Viral Immunol 29(3):148–158PubMedCrossRef
124.
Zurück zum Zitat Rasala BA, Mayfield SP (2015) Photosynthetic biomanufacturing in green algae; production of recombinant proteins for industrial, nutritional, and medical uses. Photosynth Res 123(3):227–239PubMedCrossRef Rasala BA, Mayfield SP (2015) Photosynthetic biomanufacturing in green algae; production of recombinant proteins for industrial, nutritional, and medical uses. Photosynth Res 123(3):227–239PubMedCrossRef
125.
Zurück zum Zitat Rosales-Mendoza S, Govea-Alonso DO, Monreal-Escalante E, Fragoso G, Sciutto E (2012) Developing plant-based vaccines against neglected tropical diseases: where are we? Vaccine 31(1):40–48PubMedCrossRef Rosales-Mendoza S, Govea-Alonso DO, Monreal-Escalante E, Fragoso G, Sciutto E (2012) Developing plant-based vaccines against neglected tropical diseases: where are we? Vaccine 31(1):40–48PubMedCrossRef
126.
Zurück zum Zitat Dai Y, Wang Y, Zhao L, Qin Z, Yuan J, Qin Q et al (2016) A novel L-type lectin was required for the multiplication of WSSV in red swamp crayfish (Procambarus clakii). Fish Shellfish Immunol 55:48–55PubMedCrossRef Dai Y, Wang Y, Zhao L, Qin Z, Yuan J, Qin Q et al (2016) A novel L-type lectin was required for the multiplication of WSSV in red swamp crayfish (Procambarus clakii). Fish Shellfish Immunol 55:48–55PubMedCrossRef
127.
Zurück zum Zitat Li H, Chen Y, Li M, Wang S, Zuo H, Xu X et al (2015) A c-type lectin (LvCTL4) from Litopenaeus vannamei is a downstream molecule of the NF-κB signaling pathway and participates in antibacterial immune response. Fish Shellfish Immunol 43(1):257–263PubMedCrossRef Li H, Chen Y, Li M, Wang S, Zuo H, Xu X et al (2015) A c-type lectin (LvCTL4) from Litopenaeus vannamei is a downstream molecule of the NF-κB signaling pathway and participates in antibacterial immune response. Fish Shellfish Immunol 43(1):257–263PubMedCrossRef
128.
Zurück zum Zitat Zhang S, Qiu W, Chen YG, Yuan FH, Li CZ, Yan H et al (2015) Flightless-I (FliI) is a potential negative regulator of the toll pathway in Litopenaeus vannamei. Fish Shellfish Immunol 42(2):413–425PubMedCrossRef Zhang S, Qiu W, Chen YG, Yuan FH, Li CZ, Yan H et al (2015) Flightless-I (FliI) is a potential negative regulator of the toll pathway in Litopenaeus vannamei. Fish Shellfish Immunol 42(2):413–425PubMedCrossRef
129.
Zurück zum Zitat Wilson W, Lowman D, Antony SP, Puthumana J, Bright Singh IS, Philip R (2015) Immune gene expression profile of Penaeus monodon in response to marine yeast glucan application and white spot syndrome virus challenge. Fish Shellfish Immunol 43(2):346–356PubMedCrossRef Wilson W, Lowman D, Antony SP, Puthumana J, Bright Singh IS, Philip R (2015) Immune gene expression profile of Penaeus monodon in response to marine yeast glucan application and white spot syndrome virus challenge. Fish Shellfish Immunol 43(2):346–356PubMedCrossRef
130.
Zurück zum Zitat Babu DT, Antony SP, Joseph SP, Bright AR, Philip R (2013) Marine yeast Candida aquaetextoris S527 as a potential immunostimulant in black tiger shrimp Penaeus monodon. J Invertebr Pathol 112(3):243–252PubMedCrossRef Babu DT, Antony SP, Joseph SP, Bright AR, Philip R (2013) Marine yeast Candida aquaetextoris S527 as a potential immunostimulant in black tiger shrimp Penaeus monodon. J Invertebr Pathol 112(3):243–252PubMedCrossRef
131.
Zurück zum Zitat Zhao Z, Jiang C, Zhang X (2011) Effects of immunostimulants targeting Ran GTPase on phagocytosis against virus infection in shrimp. Fish Shellfish Immunol 31(6):1013–1018PubMedCrossRef Zhao Z, Jiang C, Zhang X (2011) Effects of immunostimulants targeting Ran GTPase on phagocytosis against virus infection in shrimp. Fish Shellfish Immunol 31(6):1013–1018PubMedCrossRef
132.
Zurück zum Zitat Tafalla C, Bøgwald J, Dalmo RA (2013) Adjuvants and immunostimulants in fish vaccines: current knowledge and future perspectives. Fish Shellfish Immunol 35(6):1740–1750PubMedCrossRef Tafalla C, Bøgwald J, Dalmo RA (2013) Adjuvants and immunostimulants in fish vaccines: current knowledge and future perspectives. Fish Shellfish Immunol 35(6):1740–1750PubMedCrossRef
133.
Zurück zum Zitat Tu S, Zhong D, Xie W, Huang W, Jiang Y, Li Y (2016) Role of toll-like receptor signaling in the pathogenesis of graft-versus-host diseases. Int J Mol Sci 17(8):E1288PubMedCrossRef Tu S, Zhong D, Xie W, Huang W, Jiang Y, Li Y (2016) Role of toll-like receptor signaling in the pathogenesis of graft-versus-host diseases. Int J Mol Sci 17(8):E1288PubMedCrossRef
134.
Zurück zum Zitat Guo S, Li S, Li F, Zhang X, Xiang J (2014) Modification of a synthetic LPS-binding domain of anti-lipopolysaccharide factor from shrimp reveals strong structure-activity relationship in their antimicrobial characteristics. Dev Comp Immunol 45(2):227–232PubMedCrossRef Guo S, Li S, Li F, Zhang X, Xiang J (2014) Modification of a synthetic LPS-binding domain of anti-lipopolysaccharide factor from shrimp reveals strong structure-activity relationship in their antimicrobial characteristics. Dev Comp Immunol 45(2):227–232PubMedCrossRef
135.
Zurück zum Zitat Henrick BM, Yao XD, Taha AY, German JB, Rosenthal KL (2016) Insights into soluble toll-like receptor 2 as a down regulator of virally induced inflammation. Front Immunol 7:291PubMedPubMedCentralCrossRef Henrick BM, Yao XD, Taha AY, German JB, Rosenthal KL (2016) Insights into soluble toll-like receptor 2 as a down regulator of virally induced inflammation. Front Immunol 7:291PubMedPubMedCentralCrossRef
136.
Zurück zum Zitat Qu F, Xiang Z, Wang F, Qi L, Xu F, Xiao S et al (2015) Prostaglandin E receptor 4 (PTGER4) involved in host protection against immune challenge in oyster, Crassostrea hongkongensis. Fish Shellfish Immunol 42(2):316–324PubMedCrossRef Qu F, Xiang Z, Wang F, Qi L, Xu F, Xiao S et al (2015) Prostaglandin E receptor 4 (PTGER4) involved in host protection against immune challenge in oyster, Crassostrea hongkongensis. Fish Shellfish Immunol 42(2):316–324PubMedCrossRef
137.
Zurück zum Zitat Sun R, Wang M, Wang L, Yue F, Yi Q, Huang M et al (2014) The immune responses triggered by CpG ODNs in shrimp Litopenaeus vannamei are associated with LvTolls. Dev Comp Immunol 43(1):15–22PubMedCrossRef Sun R, Wang M, Wang L, Yue F, Yi Q, Huang M et al (2014) The immune responses triggered by CpG ODNs in shrimp Litopenaeus vannamei are associated with LvTolls. Dev Comp Immunol 43(1):15–22PubMedCrossRef
138.
Zurück zum Zitat Hu WY, Yao CL (2016) Molecular and immune response characterizations of a novel AIF and cytochrome c in Litopenaeus vannamei defending against WSSV infection. Fish Shellfish Immunol 56:84–95PubMedCrossRef Hu WY, Yao CL (2016) Molecular and immune response characterizations of a novel AIF and cytochrome c in Litopenaeus vannamei defending against WSSV infection. Fish Shellfish Immunol 56:84–95PubMedCrossRef
139.
Zurück zum Zitat Liu HT, Wang J, Mao Y, Liu M, Niu SF, Qiao Y et al (2015) Identification and expression analysis of a novel stylicin antimicrobial peptide from Kuruma shrimp (Marsupenaeus japonicus). Fish Shellfish Immunol 47(2):817–823PubMedCrossRef Liu HT, Wang J, Mao Y, Liu M, Niu SF, Qiao Y et al (2015) Identification and expression analysis of a novel stylicin antimicrobial peptide from Kuruma shrimp (Marsupenaeus japonicus). Fish Shellfish Immunol 47(2):817–823PubMedCrossRef
140.
Zurück zum Zitat Zhang S, Shi L, Lu K, Li H, Wang S, He J et al (2016) Cloning, identification and functional analysis of a β-catenin homologue from pacific white shrimp, Litopenaeus vannamei. Fish Shellfish Immunol 54:411–418PubMedCrossRef Zhang S, Shi L, Lu K, Li H, Wang S, He J et al (2016) Cloning, identification and functional analysis of a β-catenin homologue from pacific white shrimp, Litopenaeus vannamei. Fish Shellfish Immunol 54:411–418PubMedCrossRef
141.
Zurück zum Zitat Wang S, Li H, Lu K, Qian Z, Weng S, He J et al (2016) Identification and characterization of transforming growth factor β-activated kinase 1 from Litopenaeus vannamei involved in anti-bacterial host defense. Fish Shellfish Immunol 52:278–288PubMedCrossRef Wang S, Li H, Lu K, Qian Z, Weng S, He J et al (2016) Identification and characterization of transforming growth factor β-activated kinase 1 from Litopenaeus vannamei involved in anti-bacterial host defense. Fish Shellfish Immunol 52:278–288PubMedCrossRef
142.
Zurück zum Zitat Li H, Wang S, Qian Z, Wu Z, Lü K, Weng S et al (2016) MKK6 from pacific white shrimp Litopenaeus vannamei is responsive to bacterial and WSSV infection. Mol Immunol 70:72–83PubMedCrossRef Li H, Wang S, Qian Z, Wu Z, Lü K, Weng S et al (2016) MKK6 from pacific white shrimp Litopenaeus vannamei is responsive to bacterial and WSSV infection. Mol Immunol 70:72–83PubMedCrossRef
143.
Zurück zum Zitat Biswas G, Korenaga H, Nagamine R, Kono T, Shimokawa H, Itami T et al (2012) Immune stimulant effects of a nucleotide-rich baker’s yeast extract in the kuruma shrimp, Marsupenaeus japonicus. Aquaculture 366:40–45CrossRef Biswas G, Korenaga H, Nagamine R, Kono T, Shimokawa H, Itami T et al (2012) Immune stimulant effects of a nucleotide-rich baker’s yeast extract in the kuruma shrimp, Marsupenaeus japonicus. Aquaculture 366:40–45CrossRef
144.
Zurück zum Zitat Choi WM, Mo WY, Wu SC, Mak NK, Bian ZX, Nie XP et al (2014) Effects of traditional Chinese medicines (TCM) on the immune response of grass carp (Ctenopharyngodon idellus). Aquacult Int 22(2):361–377CrossRef Choi WM, Mo WY, Wu SC, Mak NK, Bian ZX, Nie XP et al (2014) Effects of traditional Chinese medicines (TCM) on the immune response of grass carp (Ctenopharyngodon idellus). Aquacult Int 22(2):361–377CrossRef
145.
Zurück zum Zitat Li S, Guo S, Li F, Xiang J (2014) Characterization and function analysis of an anti-lipopolysaccharide factor (ALF) from the Chinese shrimp Fenneropenaeus chinensis. Dev Comp Immunol 46(2):349–355PubMedCrossRef Li S, Guo S, Li F, Xiang J (2014) Characterization and function analysis of an anti-lipopolysaccharide factor (ALF) from the Chinese shrimp Fenneropenaeus chinensis. Dev Comp Immunol 46(2):349–355PubMedCrossRef
146.
Zurück zum Zitat Suraprasit S, Methatham T, Jaree P, Phiwsaiya K, Senapin S, Hirono I et al (2014) Anti-lipopolysaccharide factor isoform 3 from Penaeus monodon (ALFPm3) exhibits antiviral activity by interacting with WSSV structural proteins. Antiviral Res 110:142–150PubMedCrossRef Suraprasit S, Methatham T, Jaree P, Phiwsaiya K, Senapin S, Hirono I et al (2014) Anti-lipopolysaccharide factor isoform 3 from Penaeus monodon (ALFPm3) exhibits antiviral activity by interacting with WSSV structural proteins. Antiviral Res 110:142–150PubMedCrossRef
147.
Zurück zum Zitat Sudheer NS, Philip R, Bright Singh IS (2012) Anti- white spot syndrome virus activity of Ceriops tagal aqueous extract in giant tiger shrimp Penaeus monodon. Arch Virol 157(9):1665–1675PubMedCrossRef Sudheer NS, Philip R, Bright Singh IS (2012) Anti- white spot syndrome virus activity of Ceriops tagal aqueous extract in giant tiger shrimp Penaeus monodon. Arch Virol 157(9):1665–1675PubMedCrossRef
148.
Zurück zum Zitat Yin XL, Li ZJ, Yang K, Lin HZ, Guo ZX (2014) Effect of guava leaves on growth and the non-specific immune response of Penaeus monodon. Fish Shellfish Immunol 40(1):190–196PubMedCrossRef Yin XL, Li ZJ, Yang K, Lin HZ, Guo ZX (2014) Effect of guava leaves on growth and the non-specific immune response of Penaeus monodon. Fish Shellfish Immunol 40(1):190–196PubMedCrossRef
Metadaten
Titel
Recent progress in the development of white spot syndrome virus vaccines for protecting shrimp against viral infection
verfasst von
Shuying Feng
Chen Wang
Shu Hu
Qiongya Wu
Aifang Li
Publikationsdatum
24.06.2017
Verlag
Springer Vienna
Erschienen in
Archives of Virology / Ausgabe 10/2017
Print ISSN: 0304-8608
Elektronische ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-017-3450-x

Weitere Artikel der Ausgabe 10/2017

Archives of Virology 10/2017 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.