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1.
传染性造血器官坏死病毒新疆株的分离与鉴定   总被引:1,自引:0,他引:1  
在新疆维吾尔自治区某养殖场取患病虹鳟Oncorhynchus mykiss组织样本,进行传染性造血器官坏死病毒(Infectious hematopoietic necrosis virus,IHNV)分离鉴定、电镜观察、回归感染及遗传进化分析研究。细胞培养结果显示:患病虹鳟组织样本能够感染鲤Cyprinus carpio上皮细胞(carp epithelial cell,EPC)产生典型细胞病变(cytopathic effect,CPE),收集病毒悬液命名为XJ-13。滴度测定实验表明:该病毒为10~(6.15)TCID_(50)/m L。回归感染实验表明:该分离株在浓度为10~5PFU/尾的剂量使体质量5g的虹鳟死亡率达87.5%。通过透射电镜观察发现患病虹鳟组织悬液感染的EPC细胞内存在大量的子弹状病毒粒子,PCR鉴定结果表明该病毒为IHNV。XJ-13的糖蛋白氨基酸序列的聚类分析结果显示,该病毒株与我国IHNV-Sn1203株具有最高的同源性(99%),与美国参考株WRAC的同源性为94.6%。结果表明:IHNV XJ-13是造成该养殖场虹鳟大量死亡的病原。  相似文献   

2.
草鱼呼肠孤病毒JX-0902株的分离和鉴定   总被引:4,自引:0,他引:4  
收集江西南昌地区患典型草鱼出血病的病鱼组织,进行超薄切片电镜观察,结果显示,在脾、肾样品中发现大量病毒颗粒,病毒无囊膜,近球形,直径约70 nm,形态与已报道的草鱼呼肠孤病毒(grass carp reovirus,GCRV)相似。取病鱼肌肉、内脏研磨,组织液经离心、过滤除菌后进行鱼体人工感染试验和细胞感染实验,结果发现,人工感染试验鱼出现死亡,且具有典型出血症状;组织滤液感染草鱼肾细胞系(CIK)细胞后,盲传6代未观察到典型细胞病变效应,但感染细胞固定后经超薄切片电镜观察,细胞质内有大量病毒存在,与病鱼组织切片观察到的病毒形态一致。SDS-PAGE结果进一步揭示,新分离病毒株(暂命名JX-0902)基因组由11条dsRNA组成,呈现水生呼肠孤病毒基因组典型特征,但基因组带型与GCRV 873株存在差异,而与HZ08株接近。根据GenBank上已提交的草鱼呼肠孤病毒S6序列(GQ896337)设计特异引物,以JX-0902株的cDNA作为模板,可扩增出特异性条带。基于S6序列的聚类分析结果显示,JX-0902与GCRV HZ08株、GD108株S6同源性高达98%、99%,该分离株应为草鱼呼肠孤病毒。  相似文献   

3.
本课题组于2012年从中国东部的虹鳟鱼养殖场分离得到了严重威胁我国鲑鳟鱼养殖的传染性造血器官坏死病毒(IHNV)IHNV-Sn1203病毒株。根据GenBank中收录的IHNV病毒株的序列设计引物,将IHNV-Sn1203基因组序列分成5个片段进行RT-PCR克隆,最终得到完整的IHNV-Sn1203基因组序列。利用Lasergene和MEGA 5.0软件分析了IHNV-Sn1203株的全基因组序列、基因组编码蛋白、基因组末端和未翻译序列、以及病毒基因同源性和系统发育。结果发现,IHNV-Sn1203基因组全长11131nts,共编码6个病毒蛋白,大小分别为核蛋白(N)1176nts、磷蛋白(P)693nts、基质蛋白(M)588nts、表面糖蛋白(G)1527nts、聚合酶蛋白(L)5961nts和非结构蛋白(NV)336nts。IHNV-Sn1203株各基因间均具有保守的基因终止序列(Gene end,GE)、基因间序列(Intergenic regions,IG)、基因起始序列(Gene star,GS)及Kozak序列,以确保病毒基因的转录和翻译效率。系统进化分析发现,IHNV分为E、U、M、L和J共5个基因型,其中IHNV-Sn1203株与中国其他IHNV株具有显著的亲缘关系,属于J基因型中的J Nagano亚型。由G基因的进化分析发现,J基因型的病毒与U基因型亲缘关系最近,推测IHNV病毒最初可能通过进口鱼卵的方式由U基因型引入,随时间的推移逐渐进化为J基因型。  相似文献   

4.
一株似鲇高原鳅源蛙病毒的分离与鉴定   总被引:1,自引:0,他引:1  
从四川乐山某养殖场自然发病的似鲇高原鳅(Triplophysa siluroides)体内分离到一株病毒FYL140220。病毒感染鲤上皮瘤细胞系(epithelima popuasum cuprini,EPC)后,细胞呈现圆缩、坏死、脱落、明显空斑的病变特征。将自然发病鱼组织过滤除菌液和细胞培养病毒液分别接种健康似鲇高原鳅,试验鱼出现与自然发病鱼相同的症状,死亡率分别为30%和40%,而对照组无异常。对经FYL140220感染出现典型细胞病变(CPE)的EPC细胞制备超薄切片进行电镜观察,发现病毒呈正六边形,对称20面体,对角线直径约(103±7)nm;提取细胞培养病毒液、自然发病鱼和人工感染发病鱼的内脏器官总DNA进行蛙病毒主要衣壳蛋白(maior capsid protein,MCP)基因保守区域的PCR扩增,均能扩增出预期大小约500 bp的特异性条带。MCP基因同源性与遗传进化分析表明,分离株FYL140220与蛙病毒属成员聚为一支,尤其与大鲵蛙病毒与沼泽绿蛙病毒同源性最高,分别达99.8%和99.6%。结合PCR检测、电镜观察和系统发育分析,确认分离病毒FYL140220为蛙病毒,这是首次报道蛙病毒可自然感染似鲇高原鳅并致死。  相似文献   

5.
一株虹鳟源传染性胰腺坏死病病毒的分离与鉴定   总被引:1,自引:1,他引:0  
熊权鑫  朱玲  汪开毓  杨倩  贺扬  王二龙 《水产学报》2018,42(7):1132-1139
为明确引起四川石棉某养殖场饲养的虹鳟患病死亡的病原体,实验对自然发病虹鳟进行大体病变观察并对其病原体进行分离,通过人工感染实验及多重RT-PCR鉴定确定病原体WZ160509,并对病原体的主要结构蛋白VP2进行扩增分析,同时对病变组织进行组织病理学观察。结果显示,患病鱼主要临床症状表现为体表发黑,腹部膨大,挤压腹部可见肛门喷射淡黄色黏液便;剖检可见肝脏、肾脏苍白;肠道内无食物,内积黄色黏液。将患病虹鳟组织匀浆液无菌接种虹鳟鱼生殖腺细胞系(rainbow trout gonad cell line,RTG-2)细胞,盲传3代均出现典型的细胞病变。人工感染实验显示死亡率高达90%,并出现与自然患病鱼相同的症状。多重RT-PCR检测发现,自然发病鱼、人工感染鱼以及病变RTG-2细胞均为传染性胰腺坏死病病毒(infectious pancreatic necrosis virus,IPNV)阳性,其主要结构蛋白VP2基因与美国分离株基因组1型聚为一支,且同源性分析表明,WZ160509-VP2与IPNV-VP2(AY026345)的同源性最高,序列一致性为95.8%。组织病理学观察显示,患病鱼胰腺细胞空泡变性,坏死;肝细胞空泡变性,坏死;肾小球轻度炎症,毛细血管通透性增加,肾小囊腔内有红色絮状蛋白类物质渗出,肾小管上皮细胞空泡变性。研究表明,从该养殖场患病虹鳟中分离到的病毒为IPNV。  相似文献   

6.
鲤病毒病原的感染性测定   总被引:6,自引:1,他引:5       下载免费PDF全文
为查明养殖鲤(Cyprinus carpio)突然大批发病死亡的原因,对鲤病样品进行了细胞攻毒、空斑测定、电镜观察,以及鱼体感染等实验。先以患病鲤的组织匀浆液,经过滤后,分别接种到草鱼鳍条细胞(GCF)、鲤上皮瘤细胞(EPC)等14种培养细胞中。利用倒置显微镜观察显示,在1-2d内,该病鱼组织匀浆液可使其中9种细胞出现典型的细胞病变。收集出现病变的细胞液(即病毒悬液),进一步进行病毒滴度检测、空斑测定和鱼体感染实验。结果显示,在GCF细胞上的病毒滴度为10^7.3TCID50/mL;在FHM,TSB和GCO等细胞中可产生直径1~4mm的圆形空斑,空斑的大小与宿主细胞的种类和接种的病毒浓度有关。通过对感染细胞制备的超薄切片和病毒负染样品进行电镜观察,显示这是一类呈典型子弹头样的弹状病毒颗粒。感染了病毒悬液的鲫和鲤先后在第2天和第3天开始出现病症,间隔1~2d后发病的鱼开始死亡,至第14天,两种感染鱼的死亡率均达到83.3%。收集人工感染后濒死的鲫和鲤,分别制备组织匀浆液,回接感染鱼类培养细胞,24h内能使其出现与原发病鲤组织匀浆液所引起的类似的细胞病变。因此证实患病鲤是由病毒病原感染所致。[中国水产科学,2006,13(4):617—623]  相似文献   

7.
一株鳢科鱼源弹状病毒的分离及鉴定   总被引:3,自引:3,他引:0       下载免费PDF全文
为研究近来鳢科鱼类疫病频发的病因,实验对采集的患病杂交鳢病料分别从细菌学和病毒学两方面进行病原分离和鉴定。排除细菌感染的可能后,通过细胞培养技术、回归感染实验、电镜技术、分子生物学技术等进行病毒学分析,最终分离到一株弹状病毒,命名为HSHRV-C1207(Hybrid Snakehead Rhabdovirus-C1207)。实验结果显示,该病毒在EPC、FHM、GSB、SFC、CIK等 8种细胞中都能复制,并对其中6种细胞产生明显的细胞病变效应(CPE)。用分离的病毒进行回归感染实验,可使感染的杂交鳢复制出自然发病鱼的相同症状,且死亡率达90%。感染病料组织液的EPC细胞固定后经电镜观察,发现细胞质内有大量子弹状病毒聚集,直径约60 nm,长度约为160 nm,形态和排列方式与已报道的鱼类弹状病毒相似。参考OIE中传染性造血器官坏死病毒(IHNV)、病毒性出血性败血症病毒(VHSV)、鲤春病毒血症病毒(SVCV)的检测引物及根据乌鳢弹状病毒(SHRV)、鳜鱼弹状病毒(SCRV)、比目鱼弹状病毒(HIRRV)的G蛋白基因设计特异性引物,分别对自然发病病料组织、接种病料组织的细胞进行RT-PCR扩增,仅针对SCRV的引物能扩增出大小约350 bp 的片段。对HSHRV-C1207株的G基因进行序列测定和分析,结果表明其核苷酸序列同SCRV和SHRV的同源性分别为93.8% 和 20.4%,推导的氨基酸序列同源性分别是93.7%和18.3%。用G基因推导氨基酸序列与其它弹状病毒的G蛋白进行系统进化树分析,表明该毒株与水泡性病毒属聚为一支,其中与SCRV的亲缘关系最近,而与属于诺拉弹状病毒属的SHRV相距甚远,可能为SCRV的变异株或一个新的毒株。  相似文献   

8.
近期,四川省成都彭州市某虹鳟养殖场暴发流行疾病,导致养殖虹鳟死亡率高达90%。现场采样观察发现患病鱼主要症状为背部发黑,鳔壁、腹膜严重出血,心包积液,空肠、空胃和显著肠炎。同时对病鱼进行细菌学与组织病理学检测,细菌学检查结果为阴性,病理学观察发现脾脏有典型凝固性坏死,肝脏组织广泛变性、坏死,肠道黏膜下层水肿,肠上皮充血及上皮细胞脱落坏死,脑膜和心外膜水肿。将病鱼的脾组织研磨过滤除菌后,腹腔注射60尾健康虹鳟,注射组均表现为急性死亡(累计死亡率达85%),试验鱼出现与自然发病鱼相同的症状而对照组无异常。取病鱼的脾脏组织研磨过滤后接种胖头鲤细胞(fathead minnow cell,FHM),细胞感染3 d后出现典型的细胞病变效应(CPE)。针对编码IHNV糖蛋白(Glycoprotein,G)基因进行逆转录-聚合酶链反应(RTPCR)检测显示,患病鱼、人工感染病鱼和病变细胞均为IHNV阳性,扩增序列与IHNV糖蛋白基因同源性为98.2%。对该病毒分离株的G基因进行系统发育分析,结果显示,该分离株与亚洲分离株聚为一簇,属于JRt基因型。  相似文献   

9.
2016年4月,四川某鲈鲤(Percocypris pingi)养殖场流行一种以鳃、鱼鳔和内脏器官出血为临床特征的传染病。组织病理学观察发现,患病鲈鲤全身多组织器官均发生明显的病理损伤,尤其是肝、脾、肾、鳃和肠表现为明显的出血、变性、坏死以及炎症细胞浸润。取病鱼组织匀浆滤液接种鲤上皮瘤细胞(epithelioma papulosum cyprini, EPC),盲传3代出现典型的细胞病变(cytopathic effects, CPE)。将自然发病鱼组织匀浆滤液和细胞培养病毒液分别接种健康鲈鲤,实验鱼出现与自然发病鱼相同的症状,死亡率分别为60%和50%,而对照组未见异常。对经分离毒株ZLP160415感染出现CPE的EPC细胞制备超薄切片进行电镜观察,发现病毒呈弹状,长90~150 nm,宽40~60 nm;对自然发病鱼、人工感染发病鱼内脏组织和细胞培养病毒液进行鲤春病毒血症病毒(springviremiaofcarpvirus,SVCV)的RT-PCR检测,均扩增出目的条带。基于SVCV糖蛋白基因进行系统发育分析,结果显示分离毒株(ZLP160415)属于Ia型。结合本次疾病的流行病学与病理损伤特点、病毒分离鉴定、人工感染试验结果和透射电镜检查,确定此次流行病的病原为SVCV。  相似文献   

10.
2014年5月,四川省都江堰市某虹鳟养殖场暴发一种传染性疾病,幼鱼和鱼苗死亡率分别高达40%和80%.为探究此次疾病病因和流行规律,将病料进行解剖及细菌学检查、病理组织观察、人工感染实验、病毒分离、多重RT-PCR鉴定和系统发育分析.结果显示,病鱼主要临床症状表现为腹部膨大,体表发黑,肛门拖淡黄色黏液便,解剖见鳔壁、腹膜出血,胃胀气膨大和明显肠炎;细菌学检查为阴性;组织病理学上,头肾、肾脏和脾脏造血组织广泛性变性、坏死,肠黏膜下层嗜酸性颗粒细胞浸润与坏死,肝细胞变性、坏死形成局灶性的坏死灶,并在一些肝细胞胞浆内见嗜酸性包涵体.将病鱼的肝脏、脾组织研磨过滤灭菌后,腹腔注射20尾健康虹鳟,注射组均表现为急性死亡(累积死亡率=75%),并出现与自然发病鱼相同的症状.取病鱼组织匀浆滤菌液接种到鲤上皮瘤细胞(epithelioma papulosum cyprini,EPC),盲传3代出现典型的细胞病变效应(cytopathic effects,CPE).针对IHNV、IPNV与VHSV的多重RT-PCR检测显示自然发病鱼、人工感染病鱼和病变细胞均为IHNV阳性,扩增序列与IHNV核蛋白(nucleoprotein,N)基因同源性为99.9%.对分离株的糖蛋白基因“Mid-G”区域进行系统发育分析,结果显示该分离株与亚洲分离株聚为一支,属于JRt基因型.本研究首次报道我国西南地区养殖虹鳟中IHNV感染引起的疾病.  相似文献   

11.
Viral haemorrhagic septicaemia (VHS) was diagnosed in rainbow trout in the UK in May 2006. VHS virus (VHSV) was isolated from fingerlings showing typical histopathological lesions at a single rainbow trout farm site experiencing high mortality. The virus was confirmed as VHSV by serological and molecular biological tests. Phylogenetic analysis based on the complete glycoprotein gene sequence revealed that the isolate was closely related (99% nucleotide identity) to several Danish isolates from 1991 to 2000 and was assigned to VHSV genogroup Ia. The pathogenicity of the isolate was determined in infection experiments using rainbow trout fry. Following waterborne challenge, cumulative mortalities reached 96.67-100% by 12 days post-infection. This represents the first isolation of a pathogenic freshwater VHSV in the UK.  相似文献   

12.

利用(Cyprinus carpio)上皮细胞(epitheliaoma papulosum cyprini, EPC)培养传染性造血器官坏死病毒- Sn1203分离株(IHNV-Sn1203), 根据GenBankIHNV G蛋白基因开放阅读框(open reading frame, ORF)的序列设计引物(GenBank序列编号AB288207), 采用RT-PCR的方法克隆得到IHNV-Sn1203G蛋白全长ORF, 克隆至表达载体pET27b(+), 构建了pET27-G重组质粒, 并进行了测序分析。生物信息学分析结果显示, IHNV-Sn1203G蛋白基因序列长度为1 527 bp, 与韩国株具有最高的核酸同源性(96.86%)和氨基酸同源性(97.05%)。该基因编码508个氨基酸残基, 推导分子量约为56.55 kD, 等电点为6.15; 氨基酸序列分析表明, G蛋白富含丝氨酸、苏氨酸和酪氨酸, 存在28个潜在的磷酸化位点; 存在4个潜在的N-糖基化位点和7个潜在的O-糖基化位点; G蛋白N端含有20个氨基酸的信号肽; 亲水性大于输水性; 位于483~508位氨基酸存在一跨膜区; 抗原表位预测显示抗原性良好; 系统进化树分析显示, IHNV-Sn1203株与日本株和韩国株聚为一簇, 都属于JRt基因型。

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13.
Infectious haematopoietic necrosis virus (IHNV) is the causative agent of infectious haematopoietic necrosis, a disease of salmonid responsible for great economic losses. The disease occurs in most parts of the world where rainbow trout is reared but has not been previously reported in Kenya. In this study, rainbow trout fry and growers from two farms in Nyeri County were screened for IHNV. Whole fry (n = 4 from each farm) and kidney samples from growers (n = 15 and n = 6 from the two farms, respectively) were collected and preserved for cell culture examination or PCR analysis. Screening of samples was done by PCR followed by sequencing of the glycoprotein gene of the virus. Demonstration of the virus was done by propagation in EPC cells followed by the indirect fluorescence antibody test (IFAT). The results revealed the presence of IHNV at low prevalence of 0.1 and 0.4 for the two farms. The virus was confirmed both by IFAT and by partial sequencing of the G gene. Phylogenetic analysis revealed that the Kenyan isolates were identical to those of the J genogroup found mostly in Asia. The findings have implications for biosecurity measures and import regulations for the Kenyan rainbow trout industry.  相似文献   

14.
Abstract. Infectious pancreatic necrosis virus (IPNV) contains two segments of double- stranded RNA (the larger RNA segment, A; and a smaller RNA segment, B). The IPNV- Buhl isolate belongs to the VR299 serotype, and eel virus European (EVE) is serologically the same as the Ab serotype. IPNV-Buhl is virulent to rainbow trout fry, Oncorhynchus mykiss (Walbaum), whereas EVE is avirulent. To determine the genetic basis for the difference of the virulence, intertypic reassortants were made between IPNV-Buhl and EVE. The reassortants with the genotypes of P/E (segment A of IPNV-Buhl and segment B of EVE) and E/P (segment A of EVE and segment B of IPNV-Buhl) were studied for their pathogenicity to rainbow trout fry. The P/E reassortant was highly virulent, similar to the IPNV-Buhl parent (P/P), while the E/P reassortant was avirulent, as was the EVE parent (E/E). A high level of viral replication was observed in almost all organs of the fry infected with the P/E reassortant and the IPNV-Buhl parent. In contrast, viral replication was restricted to the epidermal cells of the fry infected with the E/P reassortant and the EVE parent. The results demonstrate that the larger RNA segment (RNA segment A) of IPNV is related to cell tropism in vivo and is responsible for virulence in rainbow trout fry.  相似文献   

15.
Flavobacterium psychrophilum, the causative agent of bacterial coldwater disease (CWD) and rainbow trout fry syndrome (RTFS), causes high mortality in cultured salmonids. The present study was designed to determine the role antibody plays in conferring protection to rainbow trout fry, Oncorhynchus mykiss (Walbaum), by passive immunization with convalescent serum or serum from adult rainbow trout immunized with F. psychrophilum, and goat anti-F. psychrophilum serum. In each experiment, rainbow trout fry were injected intraperitoneally with antiserum and challenged by subcutaneous injection with a virulent strain (CSF-259-93) of F. psychrophilum 24-h post-immunization. Relative percentage survival (RPS) ranged from 9-42% when rainbow trout fry (mean weight 1.3 g) were injected with a 1:2 dilution of 25 microL of convalescent serum ranging in enzyme-linked immunosorbent assay antibody titres from 1600-102400. Rainbow trout fry (mean weight 1.0 g) passively immunized with 25 microL of serum from immunized adult fish exhibited RPS values of up to 57%. In each of these experiments, RPS increased with increasing antibody titres against F. psychrophilum. Passive immunization with 25 or 50 microL goat anti-F. psychrophilum serum, however, did not confer protection to fry (mean weight 1.3 g). These results suggest that trout antibody plays a role in conferring protection to F. psychrophilum, but antibody alone is unable to provide complete protection.  相似文献   

16.
About 7% mortality occurred in rainbow trout, Oncorhynchus mykiss, during seawater adaptation at a marine farm in the South Sea of Korea during the winter of 2014. Most diseased fish showed petechial hemorrhaging of gills and internal fat with enlarged spleen. Although no parasites or bacteria were isolated from the diseased fish, all tissue filtrates produced cytopathic effects (CPEs) in fathead minnow and Chinook salmon embryo‐214 cells. The cell culture supernatant showing CPE contained specific 1527‐bp fragment for the infectious hematopoietic necrosis virus (IHNV) glycoprotein gene by polymerase chain reaction. Their nucleotide sequences shared 98.1–98.2% identities with IHNV RtUi02 isolated from rainbow trout in Korea. This isolate (RtGoH14) was closely related to Korean IHNV isolates of genogroup JRt rather than to those of North American and European genogroups. These results suggest that this IHNV isolate might have been introduced to rainbow trout farm (land‐based culture system) in Korea. This is the first report of IHNV infection in rainbow trout during seawater adaptation in Korea.  相似文献   

17.
采用电子显微镜观察和细胞培养等技术, 从湖北黄陂某养殖场患病大口黑鲈(Micropterus salmoides)体内发现并分离到一株蛙病毒。患病大口黑鲈的临床症状主要表现为体表出血、溃疡, 肝脏发白。将病鱼内脏组织匀浆超微滤液接种鳜脑细胞系(mandarin fish brain, MFB)细胞能产生典型细胞病变效应(cytopathic effect, CPE), 病毒滴度达到 108.36±0.15 TCID50/mL。细胞培养病毒的超薄切片电镜观察结果显示, 细胞质中存在大量直径约为 150 nm 左右的正六边形病毒粒子, 呈晶格排列。细胞培养病毒的人工感染大口黑鲈试验结果显示, 7 d 内试验鱼死亡率高达 100%, 其临床症状与自然发病鱼相似。采用大口黑鲈病毒(largemouth bass virus, LMBV)的特异性 PCR 检测方法对患病鲈组织样品和细胞培养病毒样品进行检测, 均能扩增出 241 bp 的单一目的条带。进一步根据 GenBank 中 LMBV 主衣壳蛋白(major capsid protein, MCP)基因序列设计特异性引物, 均能从上述样品中扩增出 1392 bp 的 MCP 基因开放阅读框(open reading frame, ORF)全长。将 MCP 氨基酸全序列进行比对, 结果显示其与 Santee-Cooper 蛙病毒、孔雀鱼病毒 6 型及大口黑鲈溃疡综合征病毒的 MCP 氨基酸序列同源性高达 100%。系统进化结果显示, 与感染鱼类的虹彩病毒科蛙病毒属病毒, 如鳜鱼蛙病毒、Santee-Cooper 蛙病毒、孔雀鱼病毒 6 型和大口黑鲈溃疡综合征病毒等聚成一支。这些结果证明, 该分离株为虹彩病毒科蛙病毒属的成员, 暂命名为大口黑鲈蛙病毒(largemouth bass ranavirus, LMBRaV)湖北株 LMBRaV-HB001。病毒敏感细胞系筛选试验结果表明, 病毒 LMBRaV-HB001 感染鲤上皮瘤细胞(epithelioma papulosum cyprinid, EPC)、草鱼性腺细胞(grass carp ovary, GCO)、大鲵肌肉细胞(giant salamander muscle, GSM)和鲫脑组织细胞(gibel carp brain, GiCB)均能产生典型 CPE, 病毒滴度可达 108.0 TCID50/mL 以上。本研究首次在湖北省养殖大口黑鲈体内分离与鉴定了 LMBRaV 病毒, 建立了病毒的细胞培养方法, 为进一步研究该病毒的传播、诊断和防控技术提供了重要参考。  相似文献   

18.
本研究将传染性造血器官坏死病病毒(infectious hematopoietic necrosis virus,IHNV)分离株SD-12糖蛋白(glycoprotein,G)基因克隆进商业化载体pc DNA3.1(+),构建了IHNV G的表达载体,即传染性造血器官坏死病(infectious hematopoietic necrosis,IHN)核酸疫苗,命名为p IHNsd-G。采用背鳍基部肌肉注射的方式,以2μg/尾的剂量免疫虹鳟(Oncorhynchus mykiss)鱼苗(5.0±0.5)g。于免疫后第4天及第7天,利用real-time PCR技术检测免疫虹鳟头肾及接种部位肌肉组织Mx-1基因表达情况;于免疫后第21天,以100倍半数组织培养感染剂量(tissue culture infective dose,TCID50)采取腹腔注射的方式进行攻毒实验,计算核酸疫苗相对保护率(relative percent survival,RPS);于免疫后第60天及150天检测免疫虹鳟血清IHNV中和抗体效价;最后,以p IHNsd-G的启动子序列和氨苄青霉素抗性基因序列为目标基因,利用PCR方法监测p IHNsd-G在免疫虹鳟接种部位的动态分布情况。结果显示:Mx-1基因在头肾和接种部位肌肉中均显著上调表达,并且在接种部位肌肉组织中明显高于同一时间点的头肾组织;攻毒实验中p IHNsd-G对虹鳟的相对保护率高达94.4%;而在免疫后第60天,所有免疫虹鳟血清中均存在中和抗体,其最高效价高达320,在免疫后第150天,最高抗体效价为80,自此,说明已成功获得有效的IHN核酸疫苗。p IHNsd-G在虹鳟接种部位的PCR监测结果显示:在免疫后的第1天即可在注射部位的肌肉中检测到全部p IHNsd-G目标片段,在第84天时已经无法从注射部位肌肉中扩增出全长氨苄青霉素抗性基因,而所有目标基因在第150天时均消失不见。本研究在成功构建IHN核酸疫苗并系统地验证了其有效性的基础上,开展了该疫苗在接种部位的动态分析研究,为IHN核酸疫苗的研发和安全性评价研究提供了基础数据。  相似文献   

19.
Abstract. A study was undertaken in 1987 to determine the prevalence of infectious panercatic necrosis virus (1PNV) infection in the lake trout population of Cornwall Lake. Alberta, Canada, and its pathogenicity to cultivable salmonid fish. Virological examination indicated that 44.4% of the adult lake trout in the lake, which is situated in a remote northern region of Alberta, were infected with the virus, mainly in the pyloric caeca and intestine. Virus was not detected in kidney, leucocytes, liver or gonads. In experimental immersion infection of brook trout fry, the virus caused a cumulative mortality of up to 74% in 30 days, beginning at 10 days post-infection. Pyloric caeca, intestine and to some extent gills were found to be early sites of viral replication. The virus was less pathogenic to rainbow trout causing a cumulative mortality of 10% and the survivors were IPNV carriers for at least 3 months. The virus did not cause mortality in young lake trout, the natural host, but the infected fish carried the virus during the experimental period of 30 days.  相似文献   

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