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大鲵蛙病毒致病分子机制及免疫防控策略研究进展 |
刘品, 王文博 |
咸阳师范学院 生命科学系,陕西 咸阳 712000 |
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Progress on Pathogenesis Molecular Mechanism and Immune Control Strategies of Chinese Giant Salamander Andrias davidianus ranavirus: a Review |
LIU Pin, WANG Wenbo |
Department of Life Sciences, Xianyang Normal University, Xianyang 712000, China |
[1]牟洪民,李媛,姚俊杰,等.大鲵生物学研究的新进展[J].水产科学,2011,30(8):513-516. [2]耿毅,汪开毓,李成伟,等.蛙病毒感染致养殖大鲵大规模死亡的电镜观察及PCR检测[J].中国兽医科学,2010,40(8):817-821. [3]江育林,张旻,景宏丽,等.患病中国大鲵中分离到一株虹彩病毒及其特性的研究[J].病毒学报,2011,27(3):274-282. [4]高正勇,曾令兵,肖汉兵,等.大鲵虹彩病毒理化及生物学特性研究[J].淡水渔业,2012,42(5):17-21. [5]CHEN Z Y, GUI J F, GAO X C, et al. Genome architecture changes and major gene variations of Andrias davidianus ranavirus (ADRV)[J].Veterinary Research,2013,44(1):101. [6]徐进,张辉,肖汉兵,等.大鲵虹彩病毒流行株的分离及其主衣壳蛋白编码基因序列比较分析[J].中国水产科学,2014,21(4):655-660. [7]余波,王芳,康超,等.大鲵虹彩病毒贵州分离株MCP基因的克隆与原核表达[J].淡水渔业,2017,47(2):18-22. [8]周小愿,张星朗,贾秋红,等.抗大鲵虹彩病毒MCPCOE蛋白单克隆抗体的制备及初步应用[J].水产学报,2016,40(12):1923-1930. [9]MAYO M A. Changes to virus taxonomy 2004[J].Archives of Virology,2005,150(1):189-198. [10]徐维,赵哲,张奇亚.蛙虹彩病毒一个晚期基因的鉴定[J].武汉大学学报(理学版),2007,53(6):706-710. [11]ZHOU Z Y, GENG Y, LIU X X, et al. Characterization of a Ranavirus isolated from the Chinese giant salamander (Andrias davidianus, Blanchard, 1871) in China[J].Aquaculture,2013,384/385/386/387:66-73. [12]MA J, ZENG L, ZHOU Y, et al. Ultrastructural morphogenesis of an amphibian Iridovirus isolated from Chinese giant salamander (Andrias davidianus)[J].Journal of Comparative Pathology,2014,150(2/3):325-331. [13]GAO X C, CHEN Z Y, YUAN J D, et al. Morphological changes in amphibian and fish cell lines infected with Andrias davidianus Ranavirus[J].Journal of Comparative Pathology,2015,152(2/3):110-113. [14]YUAN J D, CHEN Z Y, HUANG X, et al. Establishment of three cell lines from Chinese giant salamander and their sensitivities to the wild-type and recombinant Ranavirus[J].Veterinary Research,2015,46(1):58. [15]雷存科,陈中元,张奇亚.三种水生动物细胞系对两株蛙病毒敏感性的比较[J].水产学报,2016,40(10):1643-1647. [16]贾路路,周勇,马杰,等.大鲵细胞与大鲵虹彩病毒的微载体规模化培养工艺及优化[J].中国水产科学,2018,25(1):211-219. [17]罗振寰,李蔚.中国大鲵虹彩病毒对293T细胞系的感染性研究[J].病毒学报,2020,36(2):291-299. [18]LINDQVIST L M, FRANK D, MCARTHUR K, et al. Autophagy induced during apoptosis degrades mitochondria and inhibits type Ⅰ interferon secretion[J].Cell Death & Differentiation,2018,25(4):784-796. [19]ORVEDAHL A, ALEXANDER D, TALLCZY Z, et al. HSV-1 ICP34.5 confers neurovirulence by targeting the beclin 1 autophagy protein[J].Cell Host & Microbe,2007,1(1):23-35. [20]ORZALLI M H, KAGAN J C. Apoptosis and necroptosis as host defense strategies to prevent viral infection[J].Trends in Cell Biology,2017,27(11):800-809. [21]YOGARAJAH T, ONG K C, PERERA D, et al. AIM2 inflammasome-mediated pyroptosis in Enterovirus A71-infected neuronal cells restricts viral replication[J].Scientific Reports,2017,7(1):5845. [22]HUANG Y H, HUANG X H, CAI J, et al. Involvement of the mitogen-activated protein kinase pathway in soft-shelled turtle Iridovirus-induced apoptosis[J].Apoptosis,2011,16(6):581-593. [23]CHEN X Y, WEN C M, HUI C F, et al. Giant seaperch Iridovirus infection upregulates Bas and Bak expression, leading to apoptotic death of fish cells[J].Fish & Shellfish Immunology,2015,45(2):848-857. [24]耿毅,汪开毓,李成伟,等.养殖大鲵蛙病毒自然感染的病理形态学观察[J].中国兽医学报,2011,31(11):1640-1644. [25]刘丹,耿毅,汪开毓,等.大鲵蛙病毒感染大鲵的动态病理损伤及病原的组织分布[J].中国水产科学,2017,24(1):146-155. [26]GENG Y, GRAY M J, WANG K Y, et al. Pathological changes in Andrias davidianus infected with Chinese giant salamander Ranavirus[J].Asian Herpetological Research,2016,7(4):258-264. [27]DU J, WANG L Q, WANG Y X, et al. Autophagy and apoptosis induced by Chinese giant salamander (Andrias davidianus) Iridovirus (CGSIV)[J].Veterinary Microbiology,2016,195:87-95. [28]耿毅,陈成,余泽辉,等.大鲵蛙病毒诱导的鲤鱼上皮瘤细胞凋亡的研究[J].中国兽医科学,2017,47(8):1062-1066. [29]LI Y Q, JIANG N, FAN Y D, et al. Chinese giant salamander (Andrias davidianus) Iridovirus infection leads to apoptotic cell death through mitochondrial damage, caspases activation, and expression of apoptotic-related genes[J].International Journal of Molecular Sciences,2019,20(24):6149. [30]LI Y Q, LIU Y N, ZHOU Y, et al. Bid is involved in apoptosis induced by Chinese giant salamander Iridovirus and contributes to the viral replication in an amphibian cell line[J].Developmental & Comparative Immunology,2021,116:103935. [31]WHITTINGTON R J, BECKER J A, DENNIS M M. Iridovirus infections in finfish—critical review with emphasis on ranaviruses[J].Journal of Fish Diseases,2010,33(2):95-122. [32]JANCOVICH J K, MAO J H, CHINCHAR V G, et al. Genomic sequence of a Ranavirus (Family Iridoviridae) associated with salamander mortalities in North America[J].Virology,2003,316(1):90-103. [33]李涛,陈中元,张奇亚.一个与大鲵蛙病毒(ADRV)感染相关基因—6R的克隆、原核表达及其产物分离[J].中国水产科学,2015,22(2):353-358. [34]GRAYFER L, ANDINO F, CHEN G C, et al. Immune evasion strategies of ranaviruses and innate immune responses to these emerging pathogens[J].Viruses,2012,4(7):1075-1092. [35]SHUAI J B, FU L L, ZHANG X F, et al. Functional exchange ability of the nuclear localization signal (NLS) of capsid protein between PCV1 and PCV2 in vitro:implications for the role of NLS in viral replication[J].Virology Journal,2011,8:341. [36]LI W, ZHANG X, WENG S P, et al. Virion-associated viral proteins of a Chinese giant salamander (Andrias davidianus) Iridovirus (genus Ranavirus) and functional study of the major capsid protein (MCP)[J].Veterinary Microbiology,2014,172(1/2):129-139. [37]WANG N, ZHANG M, ZHANG L F, et al. Complete genome sequence of a Ranavirus isolated from Chinese giant salamander (Andrias davidianus)[J].Genome Announcements,2014,2(1):e01032-e01013. [38]WHITLEY D S, YU K, SAMPLE R C, et al. Frog virus 3 ORF 53R, a putative myristoylated membrane protein, is essential for virus replication in vitro[J].Virology,2010,405(2):448-456. [39]SONG W J, LIN Q S, JOSHI S B, et al. Proteomic studies of the Singapore grouper Iridovirus[J].Molecular & Cellular Proteomics:MCP,2006,5(2):256-264. [40]DONG C F, XIONG X P, SHUANG F, et al. Global landscape of structural proteins of infectious spleen and kidney necrosis virus[J].Journal of Virology,2011,85(6):2869-2877. [41]HE L B, KE F, WANG J, et al. Rana grylio virus (RGV) envelope protein 2L:subcellular localization and essential roles in virus infectivity revealed by conditional lethal mutant[J].The Journal of General Virology,2014,95(Pt 3):679-690. [42]袁江迪,陈中元,张奇亚.正常和蛙病毒感染后大鲵血清和黏液蛋白图谱比较分析[J].水生生物学报,2016,40(3):594-600. [43]GUARDIOLA F A, CUESTA A, ARIZCUN M, et al. Comparative skin mucus and serum humoral defence mechanisms in the teleost gilthead seabream (Sparus aurata)[J].Fish & Shellfish Immunology,2014,36(2):545-551. [44]ZHU R, CHEN Z Y, WANG J, et al. Thymus cDNA library survey uncovers novel features of immune molecules in Chinese giant salamander Andrias davidianus[J].Developmental and Comparative Immunology,2014,46(2):413-422. [45]LI F G, WANG L X, LAN Q J, et al. RNA-Seq analysis and gene discovery of Andrias davidianus using Illumina short read sequencing[J].PLoS One,2015,10(4):e0123730. [46]FAN Y D, CHANG M X, MA J, et al. Transcriptomic analysis of the host response to an Iridovirus infection in Chinese giant salamander, Andrias davidianus[J].Veterinary Research,2015,46:136. [47]GENG X F, LI W S, SHANG H T, et al. A reference gene set construction using RNA-seq of multiple tissues of Chinese giant salamander, Andrias davidianus[J].GigaScience,2017,6(3):gix006. [48]GENG X F, ZHANG L, ZANG X Y, et al. RNA-seq analysis provides insight into molecular adaptations of Andrias davidianus[J].Development Genes and Evolution,2019,229(5/6):197-206. [49]MENG Y, TIAN H F, HU Q M, et al. microRNA repertoire and comparative analysis of Andrias davidianus infected with Ranavirus using deep sequencing[J].Developmental and Comparative Immunology,2018,85:108-114. [50]KE F, GUI J F, CHEN Z Y, et al. Divergent transcriptomic responses underlying the ranaviruses-amphibian interaction processes on inter species infection of Chinese giant salamander[J].BMC Genomics,2018,19(1):211. [51]HUMPHREY B D, CALVERT C C, KLASING K C. The ratio of full length IgY to truncated IgY in immune complexes affects macrophage phagocytosis and the acute phase response of mallard ducks (Anas platyrhynchos)[J].Developmental & Comparative Immunology,2004,28(7/8):665-672. [52]PARKER N, PORTER A C G. Identification of a novel gene family that includes the interferon-inducible human genes 6-16 and ISG12[J].BMC Genomics,2004,5(1):8. [53]WANG J, CHEN J Y, SEN S. MicroRNA as biomarkers and diagnostics[J].Journal of Cellular Physiology,2016,231(1):25-30. [54]YU Y, WU G W, YUAN H M, et al. Identification and characterization of miRNAs and targets in flax (Linum usitatissimum) under saline, alkaline, and saline-alkaline stresses[J].BMC Plant Biology,2016,16(1):124. [55]WANG B, GAN Z, WANG Z L, et al. Integrated analysis neurimmiRs of tilapia (Oreochromis niloticus) involved in immune response to Streptococcus agalactiae, a pathogen causing meningoencephalitis in teleosts[J].Fish & Shellfish Immunology,2017,61:44-60. [56]CULLEN B R. MicroRNAs as mediators of viral evasion of the immune system[J].Nature Immunology,2013,14(3):205-210. [57]AKIRA S, UEMATSU S, TAKEUCHI O. Pathogen recognition and innate immunity[J].Cell,2006,124(4):783-801. [58]陶志云,施祖灏,朱春红,等.病原体相关分子模式与免疫识别受体研究进展[J].中国免疫学杂志,2014,30(5):694-699. [59]蓝青景.嗜水气单胞菌和虹彩病毒对大鲵半乳糖凝集素基因表达调控的影响[D].杨凌:西北农林科技大学,2015:44-48. [60]黄莉莉.大鲵TLR7和MyD88基因结构、表达特征和功能的初步研究[D].上海:上海海洋大学,2016:32-40. [61]YANG H, LI X X, SONG W J, et al. Involvement of a short-type peptidoglycan recognition protein (PGRP) from Chinese giant salamanders Andrias davidianus in the immune response against bacterial infection[J].Developmental & Comparative Immunology,2018,88:37-44. [62]MENG Y, FAN Y D, ZHOU Y, et al. Identification and comparative expression analysis of RIG-I and MDA5 in Chinese giant salamander Andrias davidianus[J].Aquaculture Research,2020,51(11):4575-4582. [63]BHATTARAI D, WORKU T, DAD R, et al. Mechanism of pattern recognition receptors (PRRs) and host pathogen interplay in bovine mastitis[J].Microbial Pathogenesis,2018,120:64-70. [64]XU X X, WAN H, NIE L, et al. RIG-Ⅰ:a multifunctional protein beyond a pattern recognition receptor[J].Protein & Cell,2018,9(3):246-253. [65]周荣云,何珊,朱美芹,等.天然免疫DNA模式识别受体的抗感染研究进展[J].中国动物传染病学报,2018,26(5):1-9. [66]刘念,周俊豪,杨映.NF-κB信号通路在硬骨鱼免疫中的作用研究进展[J].水产科学,2022,41(3):509-516. [67]CHEN Q, MA J, FAN Y D, et al. Identification of Type Ⅰ IFN in Chinese giant salamander (Andrias davidianus) and the response to an Iridovirus infection[J].Molecular Immunology,2015,65(2):350-359. [68]RIERA ROMO M, PREZ-MARTNEZ D, CASTILLO FERRER C. Innate immunity in vertebrates:an overview[J].Immunology,2016,148(2):125-139. [69]HALLER O, STAEHELI P, KOCHS G. Interferon-induced Mx proteins in antiviral host defense[J].Biochimie,2007,89(6/7):812-818. [70]LIU Y N, LI Y Q, ZHOU Y Z, et al. Characterization, expression pattern and antiviral activities of mx gene in Chinese giant salamander, Andrias davidianus[J].International Journal of Molecular Sciences,2020,21(6):2246. [71]XU Y P, WANG L Z, ZHOU Y L, et al. Identification and functional analysis of two interferon regulatory factor 3 genes and their involvement in antiviral immune responses in the Chinese giant salamander Andrias davidianus[J].Developmental & Comparative Immunology,2020,110:103710. [72]WANG L Z, XU Y P, ZHOU Y L, et al. The first evidence of four transcripts from two interleukin 18 genes in animal and their involvement in immune responses in the largest amphibian Andrias davidianus[J].Developmental & Comparative Immunology,2020,106:103598. [73]XU Y P, ZHOU Y L, XIAO Y, et al. Functional differences in the products of two TRAF3 genes in antiviral responses in the Chinese giant salamander, Andrias davidianus[J].Developmental & Comparative Immunology,2021,119:104015. [74]LAZEAR H M, LANCASTER A, WILKINS C, et al. IRF-3, IRF-5, and IRF-7 coordinately regulate the type Ⅰ IFN response in myeloid dendritic cells downstream of MAVS signaling[J].PLoS Pathogens,2013,9(1):e1003118. [75]NAKANISHI K. Unique action of interleukin-18 on T cells and other immune cells[J].Frontiers in Immunology,2018,9:763. [76]杨辉,李锋刚,蓝青景,等.大鲵铁蛋白重链FTH基因的克隆、鉴定及表达分析[J].水生生物学报,2014,38(1):27-34. [77]ZHU R, CHEN Z Y, WANG J, et al. Extensive diversification of MHC in Chinese giant salamanders Andrias davidianus (Anda-MHC) reveals novel splice variants[J].Developmental & Comparative Immunology,2014,42(2):311-322. [78]尤修玲,聂东宋,秦华夏,等.大鲵免疫分子CD9的克隆与鉴定[J].中国生物化学与分子生物学报,2015,31(4):397-407. [79]JIANG N, FAN Y D, ZHOU Y, et al. Rag1 and rag2 gene expressions identify lymphopoietic tissues in juvenile and adult Chinese giant salamander (Andrias davidianus)[J].Developmental & Comparative Immunology,2018,87:24-35. [80]SINGH S M, ALKIE T N, ABDELAZIZ K T, et al. Characterization of immune responses to an inactivated avian influenza virus vaccine adjuvanted with nanoparticles containing CpG ODN[J].Viral Immunology,2016,29(5):269-275. [81]TANG L J, KANG H Y, DUAN K X, et al. Effects of three types of inactivation agents on the antibody response and immune protection of inactivated IHNV vaccine in rainbow trout[J].Viral Immunology,2016,29(7):430-435. [82]杨星,张美彦,张效平,等.我国水产疫苗浸泡免疫研究现状[J].水产科学,2017,36(5):688-692. [83]孙建滨.大鲵虹彩病毒灭活方法比较与疫苗制备技术研究[D].武汉:华中农业大学,2013:36-41. [84]刘文枝.大鲵虹彩病毒细胞培养灭活疫苗免疫应答机理与保护效果研究[D].上海:上海海洋大学,2014:20-48. [85]邓绿洲.大鲵蛙病毒(CGSRV)灭活疫苗的研制与免疫效应研究[D].雅安:四川农业大学,2015:11-34. [86]索钰杰,林格,江南,等.大鲵虹彩病毒病灭活疫苗安全性与免疫效力研究[J].淡水渔业,2021,51(4):34-41. [87]CAIPANG C M A, TAKANO T, HIRONO I, et al. Genetic vaccines protect red seabream, Pagrus major, upon challenge with red seabream Iridovirus (RSIV)[J].Fish & Shellfish Immunology,2006,21(2):130-138. [88]OU-YANG Z L, WANG P R, HUANG Y H, et al. Selection and identification of Singapore grouper Iridovirus vaccine candidate antigens using bioinformatics and DNA vaccination[J].Veterinary Immunology and Immunopathology,2012,149(1/2):38-45. [89]FU X Z, LI N Q, LIN Q, et al. Protective immunity against infectious spleen and kidney necrosis virus induced by immunization with DNA plasmid containing mcp gene in Chinese perch Siniperca chuatsi[J].Fish & Shellfish Immunology,2014,40(1):259-266. [90]曾宪辉,曾令兵,周勇,等.大鲵虹彩病毒主衣壳蛋白MCP基因DNA疫苗的构建及其免疫效果[J].中国水产科学,2015,22(5):1055-1067. [91]CHEN Z Y, LI T, GAO X C, et al. Protective immunity induced by DNA vaccination against Ranavirus infection in Chinese giant salamander Andrias davidianus[J].Viruses,2018,10(2):52. [92]ZHOU Y, FAN Y D, LAPATRA S E, et al. Protective immunity of a Pichia pastoris expressed recombinant Iridovirus major capsid protein in the Chinese giant salamander, Andrias davidianus[J].Vaccine,2015,33(42):5662-5669. [93]ZHOU X Y, ZHANG X L, HAN Y H, et al. Vaccination with recombinant baculovirus expressing Ranavirus major capsid protein induces protective immunity in Chinese giant salamander, Andrias davidianus[J].Viruses,2017,9(8):195. [94]凌空,丁诗华,吴兴镇,等.中草药体外抑杀大鲵致病性豚鼠气单胞菌的药效研究[J].水产科学,2015,34(7):405-412. [95]凌空,王涵,丁诗华,等.十六种中草药及其复方对大鲵致病性豚鼠气单胞菌的体外抑制作用[J].淡水渔业,2015,45(1):73-78. [96]周燕.RNA干扰对大鲵蛙病毒(CGSRV)主要功能基因表达与增殖影响的研究[D].雅安:四川农业大学,2015:14-30. [97]罗振寰.CGSIV感染293T细胞及利用CRISPR-Cas9系统抑制CGSIV的复制与增殖[D].广州:暨南大学,2018:48-75. |
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