引用文献一覧
[1] K. Söderhäll, L. Cerenius, Crustacean immunity, Annu. Rev. Fish Dis. 2 (1992) 3-23.
[2] 森勝義, 名取俊二(ほか編), 甲殻類(I)、無脊椎動物の生体防御, 学会出版センター (1992).
[3] 伊丹利明, 高橋幸則, 近藤昌和, 森勝義(編), クルマエビの感染症と生体防御機構、食と生体防御, 日本生体防御学会 (1999) 58-83.
[4] 田中博光, 総論:昆虫の微生物感染に対する生体防御機構, 蚕糸・昆虫バイオテック 84(3) (2015) 159-171.
[5] Y.-H. Chen, J.-G. He, Effects of environmental stress on shrimp
innate immunity and white spot syndrome virus infection, Fish Shellfish
Immunol. 84 (2019) 744-755.
[6] L. Cerenius, P. Jiravanichpaisal, H.-p. Liu, I. Soderhall,
Crustacean Immunity, in: K. Söderhäll (Ed.), Invertebrate Immunity,
Springer US, Boston, MA, 2010, pp. 239-259.
[7] H. Yoshida, K. Kinoshita, M. Ashida, Purification of a
peptidoglycan recognition protein from hemolymph of the silkworm,
Bombyx mori, J Biol Chem 271(23) (1996) 13854-60.
[8] A. Udompetcharaporn, K. Junkunlo, S. Senapin, S. Roytrakul, T.W.
Flegel, K. Sritunyalucksana, Identification and characterization of a
QM protein as a possible peptidoglycan recognition protein (PGRP) from
the giant tiger shrimp Penaeus monodon, Dev Comp Immunol 46(2) (2014)
146-54.
[9] F. Vargas-Albores, F. Jiménez-Vega, K. Söderhäll, A plasma protein
isolated from brown shrimp (Penaeus californiensis) which enhances the
activation of prophenoloxidase system by beta-1,3-glucan, Dev Comp
Immunol 20(5) (1996) 299-306.
[10] F. Vargas-Albores, F. Jiménez-Vega, G.M. Yepiz-Plascencia,
Purification and comparison of beta-1,3-glucan binding protein from
white shrimp (Penaeus vannamei), Comp Biochem Physiol B Biochem Mol
Biol 116(4) (1997) 453-8.
[11] G. Yepiz-Plascencia, F. Vargas-Albores, F. Jimenez-Vega, L.M.
Ruiz-Verdugo, G. Romo-Figueroa, Shrimp plasma HDL and beta-glucan
binding protein (BGBP): comparison of biochemical characteristics, Comp
Biochem Physiol B Biochem Mol Biol 121(3) (1998) 309-14.
[12] F. Jiménez-Vega, R.R. Sotelo-Mundo, F. Ascencio, F.
Vargas-Albores, 1,3-beta-D glucan binding protein (BGBP) from the white
shrimp, Penaeus vannamei, is also a heparin binding protein, Fish
Shellfish Immunol 13(3) (2002) 171-81.
[13] K. Sritunyalucksana, S.Y. Lee, K. Söderhäll, A beta-1,3-glucan
binding protein from the black tiger shrimp, Penaeus monodon, Dev Comp
Immunol 26(3) (2002) 237-45.
[14] M.G. Romo-Figueroa, C. Vargas-Requena, R.R. Sotelo-Mundo, F.
Vargas-Albores, I. Higuera-Ciapara, K. Söderhäll, G. Yepiz-Plascencia,
Molecular cloning of a beta-glucan pattern-recognition lipoprotein from
the white shrimp Penaeus (Litopenaeus) vannamei: correlations between
the deduced amino acid sequence and the native protein structure, Dev
Comp Immunol 28(7-8) (2004) 713-26.
[15] W. Cheng, C.H. Liu, C.H. Tsai, J.C. Chen, Molecular cloning and
characterisation of a pattern recognition molecule, lipopolysaccharide-
and beta-1,3-glucan binding protein (LGBP) from the white shrimp
Litopenaeus vannamei, Fish Shellfish Immunol 18(4) (2005) 297-310.
[16] Y.C. Lin, B. Vaseeharan, J.C. Chen, Identification and
phylogenetic analysis on lipopolysaccharide and beta-1,3-glucan binding
protein (LGBP) of kuruma shrimp Marsupenaeus japonicus, Dev Comp
Immunol 32(11) (2008) 1260-9.
[17] Y.C. Wang, P.S. Chang, H.Y. Chen, Differential time-series
expression of immune-related genes of Pacific white shrimp Litopenaeus
vannamei in response to dietary inclusion of beta-1,3-glucan, Fish
Shellfish Immunol 24(1) (2008) 113-21.
[18] X. Lai, J. Kong, Q. Wang, W. Wang, X. Meng, Cloning and
characterization of a β-1,3-glucan-binding protein from shrimp
Fenneropenaeus chinensis, Mol Biol Rep 38(7) (2011) 4527-35.
[19] P. Goncalves, J. Vernal, R.D. Rosa, G. Yepiz-Plascencia, C.R. de
Souza, M.A. Barracco, L.M. Perazzolo, Evidence for a novel biological
role for the multifunctional β-1,3-glucan binding protein in shrimp,
Mol Immunol 51(3-4) (2012) 363-7.
[20] J.S. Valli, B. Vaseeharan, cDNA cloning, characterization and
expression of lipopolysaccharide and β-1,3-glucan binding protein
(LGBP) gene from the Indian white shrimp Fenneropenaeus indicus, Comp.
Biochem. Physiol. A Mol. Integr. Physiol. 163(1) (2012) 74-81.
[21] J. Sivakamavalli, B. Vaseeharan, Purification, characterization
and functional analysis of a novel β-1, 3-glucan binding protein from
green tiger shrimp Penaeus semisulcatus, Fish Shellfish Immunol 35(3)
(2013) 689-96.
[22] Y.C. Lin, J.C. Chen, Y.Y. Chen, S.T. Yeh, L.L. Chen, C.L. Huang,
J.F. Hsieh, C.C. Li, Crowding of white shrimp Litopenaeus vananmei
depresses their immunity to and resistance against Vibrio alginolyticus
and white spot syndrome virus, Fish Shellfish Immunol 45(1) (2015)
104-11.
[23] J. Sivakamavalli, S.K. Tripathi, S.K. Singh, B. Vaseeharan,
Homology modeling, molecular dynamics, and docking studies of
pattern-recognition transmembrane protein-lipopolysaccharide and β-1,3
glucan-binding protein from Fenneropenaeus indicus, J. Biomol. Struct.
Dyn. 33(6) (2015) 1269-80.
[24] C.C. Yang, C.L. Lu, S. Chen, W.L. Liao, S.N. Chen, Immune gene
expression for diverse haemocytes derived from pacific white shrimp,
Litopenaeus vannamei, Fish Shellfish Immunol 44(1) (2015) 265-71.
[25] Y.Y. Chen, J.C. Chen, Y.H. Kuo, Y.C. Lin, Y.H. Chang, H.Y. Gong,
C.L. Huang, Lipopolysaccharide and β-1,3-glucan-binding protein (LGBP)
bind to seaweed polysaccharides and activate the prophenoloxidase
system in white shrimp Litopenaeus vannamei, Dev Comp Immunol 55 (2016)
144-51.
[26] M. Anjugam, B. Vaseeharan, A. Iswarya, M. Amala, M. Govindarajan,
N.S. Alharbi, S. Kadaikunnan, J.M. Khaled, G. Benelli, A study on
β-glucan binding protein (β-GBP) and its involvement in phenoloxidase
cascade in Indian white shrimp Fenneropenaeus indicus, Mol Immunol 92
(2017) 1-11.
[27] B. Phupet, T. Pitakpornpreecha, N. Baowubon, P. Runsaeng, P.
Utarabhand, Lipopolysaccharide- and β-1,3-glucan-binding protein from
Litopenaeus vannamei: Purification, cloning and contribution in shrimp
defense immunity via phenoloxidase activation, Dev Comp Immunol 81
(2018) 167-179.
[28] L. Cerenius, K. Söderhäll, The prophenoloxidase-activating system in invertebrates, Immunol. Rev. 198(1) (2004) 116-126.
[29] C.Y. Lin, K.Y. Hu, S.H. Ho, Y.L. Song, Cloning and
characterization of a shrimp clip domain serine protease homolog
(c-SPH) as a cell adhesion molecule, Dev Comp Immunol 30(12) (2006)
1132-44.
[30] Q. Ren, X.F. Zhao, J.X. Wang, Identification of three different
types of serine proteases (one SP and two SPHs) in Chinese white
shrimp, Fish Shellfish Immunol 30(2) (2011) 456-66.
[31] T.H. Ma, J.A. Benzie, J.G. He, C.B. Sun, S.F. Chan, PmPPAF is a
pro-phenoloxidase activating factor involved in innate immunity
response of the shrimp Penaeus monodon, Dev Comp Immunol 44(1) (2014)
163-72.
[32] M. Jearaphunt, P. Amparyup, P. Sangsuriya, W. Charoensapsri, S.
Senapin, A. Tassanakajon, Shrimp serine proteinase homologues
PmMasSPH-1 and -2 play a role in the activation of the prophenoloxidase
system, PLoS One 10(3) (2015) e0121073.
[33] R. Jitvaropas, P. Amparyup, P.S. Gross, A. Tassanakajon,
Functional characterization of a masquerade-like serine proteinase
homologue from the black tiger shrimp Penaeus monodon, Comparative
Biochemistry and Physiology Part B: Biochemistry and Molecular Biology
153(3) (2009) 236-243.
[34] H. Zuo, H. Li, E. Wei, Z. Su, J. Zheng, C. Li, Y. Chen, S. Weng,
J. He, X. Xu, Identification and functional analysis of a Hemolin like
protein from Litopenaeus vannamei, Fish Shellfish Immunol 43(1) (2015)
51-9.
[35] J.J. Sun, J.F. Lan, X.Z. Shi, M.C. Yang, H.T. Yang, X.F. Zhao,
J.X. Wang, A fibrinogen-related protein (FREP) is involved in the
antibacterial immunity of Marsupenaeus japonicus, Fish Shellfish
Immunol 39(2) (2014) 296-304.
[36] X.W. Wang, J.X. Wang, Diversity and multiple functions of lectins
in shrimp immunity, Dev Comp Immunol 39(1-2) (2013) 27-38.
[37] 近藤昌和, 松山博子, 矢野友紀, クルマエビ血球の貪食作用に及ぼすレクチンのオプソニン効果, 魚病研究 27(4) (1992) 217-222.
[38] S. Xu, L. Wang, X.W. Wang, Y.R. Zhao, W.J. Bi, X.F. Zhao, J.X.
Wang, L-Type lectin from the kuruma shrimp Marsupenaeus japonicus
promotes hemocyte phagocytosis, Dev Comp Immunol 44(2) (2014) 397-405.
[39] S. Xu, M. Jing, W.-Y. Liu, H. Dong, D.-M. Kong, Y.-R. Wang, H.-H.
Zhang, Z. Yue, Y.-J. Li, F. Jiao, S.-Y. Xie, Identification and
characterization of a novel L-type lectin (MjLTL2) from kuruma shrimp
(Marsupenaeus japonicus), Fish Shellfish Immunol. 98 (2020) 354-363.
[40] M. Li, C. Li, C. Ma, H. Li, H. Zuo, S. Weng, X. Chen, D. Zeng, J.
He, X. Xu, Identification of a C-type lectin with antiviral and
antibacterial activity from pacific white shrimp Litopenaeus vannamei,
Dev. Comp. Immunol. 46(2) (2014) 231-240.
[41] G.H. Cha, Y. Liu, T. Peng, M.Z. Huang, C.Y. Xie, Y.C. Xiao, W.N.
Wang, Molecular cloning, expression of a galectin gene in Pacific white
shrimp Litopenaeus vannamei and the antibacterial activity of its
recombinant protein, Mol Immunol 67(2 Pt B) (2015) 325-40.
[42] F. Hou, Y. Liu, S. He, X. Wang, A. Mao, Z. Liu, C. Sun, X. Liu, A
galectin from shrimp Litopenaeus vannamei is involved in immune
recognition and bacteria phagocytosis, Fish Shellfish Immunol 44(2)
(2015) 584-91.
[43] T. Mekata, S. Okugawa, M. Inada, M. Yoshimine, J. Nishi, T. Kono,
M. Sakai, T. Itami, R. Sudhakaran, Class B scavenger receptor,
Croquemort from kuruma shrimp Marsupenaeus japonicus: Molecular cloning
and characterization, Mol Cell Probes 25(2-3) (2011) 94-100.
[44] W.J. Bi, D.X. Li, Y.H. Xu, S. Xu, J. Li, X.F. Zhao, J.X. Wang,
Scavenger receptor B protects shrimp from bacteria by enhancing
phagocytosis and regulating expression of antimicrobial peptides, Dev
Comp Immunol 51(1) (2015) 10-21.
[45] F. Hou, T. Liu, Q. Wang, Y. Liu, C. Sun, X. Liu, Identification
and characterization of two Croquemort homologues in penaeid shrimp
Litopenaeus vannamei, Fish Shellfish Immunol 60 (2017) 1-5.
[46] M.C. Yang, H.T. Yang, J. Li, J.J. Sun, W.J. Bi, G.J. Niu, Q.
Zhang, X.Z. Shi, X.F. Zhao, J.X. Wang, Scavenger receptor C promotes
bacterial clearance in kuruma shrimp Marsupenaeus japonicus by
enhancing hemocyte phagocytosis and AMP expression, Fish Shellfish
Immunol 67 (2017) 254-262.
[47] T. Mekata, T. Kono, T. Yoshida, M. Sakai, T. Itami, Identification
of cDNA encoding Toll receptor, MjToll gene from kuruma shrimp,
Marsupenaeus japonicus, Fish Shellfish Immunol 24(1) (2008) 122-33.
[48] W. Wang, J.J. Aweya, H. Su, X. Zhao, M. Zhong, Y. Zhang,
Identification and immune-related analysis of SNPs in Litopenaeus
vannamei Toll3 receptor, Immunol Lett 206 (2019) 19-27.
[49] C. Li, H. Li, Y. Chen, Y. Chen, S. Wang, S.-P. Weng, X. Xu, J. He,
Activation of Vago by interferon regulatory factor (IRF) suggests an
interferon system-like antiviral mechanism in shrimp, Sci. Rep. 5(1)
(2015) 15078.
[50] S. Okugawa, T. Mekata, M. Inada, K. Kihara, A. Shiki, K.
Kannabiran, T. Kono, M. Sakai, T. Yoshida, T. Itami, R. Sudhakaran, The
SOCS and STAT from JAK/STAT signaling pathway of kuruma shrimp
Marsupenaeus japonicus: molecular cloning, characterization and
expression analysis, Mol Cell Probes 27(1) (2013) 6-14.
[51] J.J. Sun, J.F. Lan, J.D. Xu, G.J. Niu, J.X. Wang, Suppressor of
cytokine signaling 2 (SOCS2) negatively regulates the expression of
antimicrobial peptides by affecting the Stat transcriptional activity
in shrimp Marsupenaeus japonicus, Fish Shellfish Immunol 56 (2016)
473-482.
[52] S. Wang, X. Song, Z. Zhang, H. Li, K. Lǚ, B. Yin, J. He, C. Li,
Shrimp with knockdown of LvSOCS2, a negative feedback loop regulator of
JAK/STAT pathway in Litopenaeus vannamei, exhibit enhanced resistance
against WSSV, Dev Comp Immunol 65 (2016) 289-298.
[53] Y.-H. Chen, X.-T. Jia, L. Zhao, C.-Z. Li, S. Zhang, Y.-G. Chen,
S.-P. Weng, J.-G. He, Identification and functional characterization of
Dicer2 and five single VWC domain proteins of Litopenaeus vannamei,
Dev. Comp. Immunol. 35(6) (2011) 661-671.
[54] J. Robalino, C.L. Browdy, S. Prior, A. Metz, P. Parnell, P. Gross,
G. Warr, Induction of Antiviral Immunity by Double-Stranded RNA in a
Marine Invertebrate, J. Virol. 78(19) (2004) 10442.
[55] Y. Labreuche, A. Veloso, E. de la Vega, P.S. Gross, R.W. Chapman,
C.L. Browdy, G.W. Warr, Non-specific activation of antiviral immunity
and induction of RNA interference may engage the same pathway in the
Pacific white leg shrimp Litopenaeus vannamei, Dev. Comp. Immunol.
34(11) (2010) 1209-1218.
[56] 近藤昌和, 伊丹利明, 高橋幸則, クルマエビ血球中のフェノールオキシダーゼ活性, 魚病研究 27(4) (1992) 185-189.
[57] 江草周三, 高橋幸則, 伊丹利明, 桃山和夫, クルマエビのビブリオ病の病理組織学的研究, 魚病研究 23(1) (1988) 59-65.
[58] J.E. Hose, Observation on the pathogenesis of the imperfect
fungus, Fusarium solani, in the California brown shrimp, Penaeus
californiensis, J. Invertebr. Pathol. 44 (1984) 292-303.
[59] R.M. Krol, Histopathology and ultrastructure of the hemocytic
response to an acid-fast bacterial infection in cultured Penaeus
vannamei, J. Aquat. Anim. Health 1 (1989) 37-42.
[60] P.T. Johnson, A review of fixed phagocytic and pinocytotic cells
of decapod crustaceans, with remarks on hemocytes, Dev. Comp. Immunol.
11 (1987) 679-704.
[61] 森勝義, 神谷久男(編), 水産動物の生体防御, 恒星社厚生閣 (1995) 129.
[62] M. Kondo, T. Itami, Y. Takahashi, R. Fujii, S. Tomonaga,
Ultrastructural and Cytochemical Characteristics of Phagocytes in
Kuruma Prawn, Fish Pathol. 33(4) (1998) 421-427.
[63] K. Somboonwiwat, M. Marcos, A. Tassanakajon, S. Klinbunga, A.
Aumelas, B. Romestand, Y. Gueguen, H. Boze, G. Moulin, E. Bachère,
Recombinant expression and anti-microbial activity of
anti-lipopolysaccharide factor (ALF) from the black tiger shrimp
Penaeus monodon, Dev Comp Immunol 29(10) (2005) 841-51.
[64] E. de la Vega, N.A. O'Leary, J.E. Shockey, J. Robalino, C. Payne,
C.L. Browdy, G.W. Warr, P.S. Gross, Anti-lipopolysaccharide factor in
Litopenaeus vannamei (LvALF): a broad spectrum antimicrobial peptide
essential for shrimp immunity against bacterial and fungal infection,
Mol Immunol 45(7) (2008) 1916-25.
[65] R.D. Rosa, P.H. Stoco, M.A. Barracco, Cloning and characterisation
of cDNA sequences encoding for anti-lipopolysaccharide factors (ALFs)
in Brazilian palaemonid and penaeid shrimps, Fish Shellfish Immunol
25(5) (2008) 693-6.
[66] S. Tharntada, S. Ponprateep, K. Somboonwiwat, H. Liu, I.
Söderhäll, K. Söderhäll, A. Tassanakajon, Role of
anti-lipopolysaccharide factor from the black tiger shrimp, Penaeus
monodon, in protection from white spot syndrome virus infection, J Gen
Virol 90(Pt 6) (2009) 1491-1498.
[67] M.C. Lin, S.B. Lin, J.C. Chen, C.F. Hui, J.Y. Chen, Shrimp
anti-lipopolysaccharide factor peptide enhances the antitumor activity
of cisplatin in vitro and inhibits HeLa cells growth in nude mice,
Peptides 31(6) (2010) 1019-25.
[68] T. Mekata, R. Sudhakaran, S. Okugawa, T. Kono, M. Sakai, T. Itami,
Molecular cloning and transcriptional analysis of a newly identified
anti-lipopolysaccharide factor gene in kuruma shrimp, Marsupenaeus
japonicus, Lett. Appl. Microbiol. 50(1) (2010) 112-9.
[69] S. Suraprasit, T. Methatham, P. Jaree, K. Phiwsaiya, S. Senapin,
I. Hirono, C.F. Lo, A. Tassanakajon, K. Somboonwiwat,
Anti-lipopolysaccharide factor isoform 3 from Penaeus monodon (ALFPm3)
exhibits antiviral activity by interacting with WSSV structural
proteins, Antiviral Res. 110 (2014) 142-50.
[70] H.S. Jiang, Q. Zhang, Y.R. Zhao, W.M. Jia, X.F. Zhao, J.X. Wang, A
new group of anti-lipopolysaccharide factors from Marsupenaeus
japonicus functions in antibacterial response, Dev Comp Immunol 48(1)
(2015) 33-42.
[71] H. Yang, S. Li, F. Li, X. Lv, J. Xiang, Recombinant expression and
functional analysis of an isoform of anti-lipopolysaccharide factors
(FcALF5) from Chinese shrimp Fenneropenaeus chinensis, Dev Comp Immunol
53(1) (2015) 47-54.
[72] H. Yang, S. Li, F. Li, J. Xiang, Structure and Bioactivity of a
Modified Peptide Derived from the LPS-Binding Domain of an
Anti-Lipopolysaccharide Factor (ALF) of Shrimp, Mar. Drugs 14(5) (2016).
[73] G.M. Matos, P. Schmitt, C. Barreto, N.D. Farias, G. Toledo-Silva,
F. Guzmán, D. Destoumieux-Garzón, L.M. Perazzolo, R.D. Rosa, Massive
Gene Expansion and Sequence Diversification Is Associated with Diverse
Tissue Distribution, Regulation and Antimicrobial Properties of
Anti-Lipopolysaccharide Factors in Shrimp, Mar. Drugs 16(10) (2018).
[74] L. Zhou, G. Li, Y. Jiao, D. Huang, A. Li, H. Chen, Y. Liu, S. Li,
H. Li, C. Wang, Molecular and antimicrobial characterization of a group
G anti-lipopolysaccharide factor (ALF) from Penaeus monodon, Fish
Shellfish Immunol 94 (2019) 149-156.
[75] D. Destoumieux, P. Bulet, D. Loew, A. Van Dorsselaer, J.
Rodriguez, E. Bachère, Penaeidins, a new family of antimicrobial
peptides isolated from the shrimp Penaeus vannamei (Decapoda), J Biol
Chem 272(45) (1997) 28398-406.
[76] A. Tassanakajon, P. Amparyup, K. Somboonwiwat, P. Supungul,
Cationic antimicrobial peptides in penaeid shrimp, Mar. Biotechnol. (N.
Y.) 12(5) (2010) 487-505.
[77] M. Inada, R. Sudhakaran, K. Kihara, J. Nishi, M. Yoshimine, T.
Mekata, T. Kono, M. Sakai, T. Yoshida, T. Itami, Molecular cloning and
characterization of the NADPH oxidase from the kuruma shrimp,
Marsupenaeus japonicus: early gene up-regulation after Vibrio
penaeicida and poly(I:C) stimulations in vitro, Mol Cell Probes 26(1)
(2012) 29-41.
[78] M. Inada, K. Kihara, T. Kono, R. Sudhakaran, T. Mekata, M. Sakai,
T. Yoshida, T. Itami, Deciphering of the Dual oxidase (Nox family) gene
from kuruma shrimp, Marsupenaeus japonicus: full-length cDNA cloning
and characterization, Fish Shellfish Immunol 34(2) (2013) 471-85.
[79] M. Inada, T. Mekata, R. Sudhakaran, S. Okugawa, T. Kono, A.M. El
Asely, N.T. Linh, T. Yoshida, M. Sakai, T. Yui, T. Itami, Molecular
cloning and characterization of the nitric oxide synthase gene from
kuruma shrimp, Marsupenaeus japonicus, Fish Shellfish Immunol 28(4)
(2010) 701-11.
[80] Y. Okamura, M. Inada, G.E. Elshopakey, T. Itami, Characterization
of xanthine dehydrogenase and aldehyde oxidase of Marsupenaeus
japonicus and their response to microbial pathogen, Mol Biol Rep 45(4)
(2018) 419-432.
[81] H.T. Liu, J. Wang, Y. Mao, M. Liu, S.F. Niu, Y. Qiao, Y.Q. Su,
C.Z. Wang, Z.P. Zheng, Identification and expression analysis of a new
invertebrate lysozyme in Kuruma shrimp (Marsupenaeus japonicus), Fish
Shellfish Immunol 49 (2016) 336-43.
[82] S. Cai, Y. Zhang, F. Wu, R. Wu, S. Yang, Y. Li, Y. Xu,
Identification and functional characterization of a c-type lysozyme
from Fenneropenaeus penicillatus, Fish Shellfish Immunol 88 (2019)
161-169.
[83] T. Okamoto, T. Suzuki, S. Kusakabe, M. Tokunaga, J. Hirano, Y.
Miyata, Y. Matsuura, Regulation of Apoptosis during Flavivirus
Infection, Viruses 9(9) (2017).
[84] M. Yan, Z. Liu, K. Xu, W. Wang, L. Fan, H. Gong, WSV152 induces
apoptosis and promotes viral replication in Litopenaeus vannamei, Fish
Shellfish Immunol. 98 (2020) 255-261.
[85] J. Alfaro-Montoya, A. Braga, R. Umaña-Castro, Research frontiers
in penaeid shrimp reproduction: Future trends to improve commercial
production, Aquaculture 503 (2019) 70-87.
[86] 佐藤純, クルマエビのWSD経口ワクチンの開発研究〜“免疫様現象”の応用、水平感染対策、実用化への課題など〜, 湊文社 2月号 (2009).
[87] T. Kono, K. Sonoda, Y. Kitao, T. Mekata, T. Itami, M. Sakai, The
Expression Analysis of Innate Immune-related Genes in Kuruma
Shrimp Penaeus japonicus after DNA Vaccination against Penaeid
Rod-shaped DNA Virus, Fish Pathol. 44(2) (2009) 94-97.
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