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1.
Molecular characterization was carried out on an iridovirus isolated from yellow grouper, Epinephelus awoara . The major capsid protein (MCP) gene was located, sequenced and compared with homologous genes from other iridoviruses. The nucleotide sequence is 1392 bases long and contains a single open reading frame beginning at an ATG codon from the 5' end and terminating at a TAA codon at the 3' end. The open reading frame encodes a protein of 463 amino acids with a predicted molecular weight of 50 272 Da. Pairwise amino acid alignments detected a high degree of sequence identity between grouper iridovirus (GIV) MCP and the homologous genes of other iridoviruses. The MCP gene of GIV was most similar to the MCP gene from frog virus 3 (FV3) with 70% nucleotide and 73% amino acid sequence identity. The predicted molecular weight of the protein of this gene is comparable with the apparent weight obtained by SDS–PAGE. Pathogenicity of the GIV was investigated in yellow grouper by intraperitoneal injection of 107 and 104 TCID50 virus. Cumulative mortalities reached 100% within 11 and 25 days post-infection, respectively, while no grouper died in the control group. The molecular studies demonstrated that GIV is a member of the genus Ranavirus .  相似文献   
2.
Largemouth bass virus (LMBV) is a recently discovered iridovirus that causes a fatal disease of largemouth bass, Micropterus salmoides (Lacepède). Fish can become infected by waterborne LMBV, but oral transmission of this virus has not been demonstrated previously. Largemouth bass were gavaged with guppies, Poecilia reticulata Peters, which had been injected with LMBV, and then sampled periodically during a 7‐week observation period. The dose of LMBV averaged 105.6 tissue culture infectious doses – 50% cytopathic endpoint (TCID50) per largemouth bass. Five of 24 largemouth bass exposed to LMBV became infected with the virus, but none of the fish had clinical signs typical of LMBV disease. Virus titres in largemouth bass were highest in swim bladder (105.5–9.5 TCID50 g?1) and were 105.2 TCID50 g?1 or lower in cutaneous mucus, head kidney, trunk kidney, spleen, gonad and intestine. These results indicate that LMBV can be transmitted orally to largemouth bass, but further study is needed to determine the factors affecting pathogenicity of the virus.  相似文献   
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4.
蛙虹彩病毒(Rana grylio virus,RGV)能引起鱼类、两栖类和爬行类水生动物严重的系统性疾病,RGV是从我国患病蛙中分离到一种虹彩病毒。体外扩增的RGV经人工方法感染幼龄美国青蛙(Rana grylio),运用原位杂交技术,分别对感染1-3d后的蛙心、肺、肾、肠、脾、肝等6种组织进行RGV分子定位和检测,结果显示,在幼蛙的肺和肠中有较强的阳性信号,在其他组织中也检测到RGV的存在。本试验探讨了RGV感染早期在宿主体内的增殖及在不同组织中的分布状况,建立了一种彩虹病毒的早期诊断方法,并为揭示RGV的致病机制奠定了基础。  相似文献   
5.
An outbreak of a Megalocytivirus infection was found in the golden mandarin fish Siniperca scherzeri during September and October 2016, in Korea. Phylogeny and genetic diversity based on the major capsid protein (MCP) and adenosine triphosphatase (ATPase) genes showed a new strain. Designated as GMIV, this strain derived from the golden mandarin fish was suggested to belong to the red sea bream iridovirus (RSIV)‐subgroup I. Additionally, this train clustered with the ehime‐1 strain from red sea bream Pagrus major in Japan and was distinguished from circulating isolates (RSIV‐type subgroup II and turbot reddish body iridovirus [TRBIV] type) in Korea. The infection level, evaluated by qPCR, ranged from 8.18 × 102 to 7.95 × 106 copies/mg of tissue individually, suggesting that the infected fish were in the disease‐transmitting stage. The diseased fish showed degenerative changes associated with cytomegaly in the spleen as general sign of Megalocytivirus infection. The results confirm that the RSIV‐type Megalocytivirus might have crossed the environmental and species barriers to cause widespread infection in freshwater fish.  相似文献   
6.
Grouper iridovirus (GIV) belongs to the Ranavirus genus and is one of the most important viral pathogens in grouper, particularly at the fry and fingerling stages. In this study, we identified and characterized the GIV‐2L gene, which encodes a protein of unknown function. GIV‐2L is 1242 bp in length, with a predicted protein mass of 46.2 kDa. It displayed significant identity only with members of the Ranavirus and Iridovirus genera. We produced mouse monoclonal antibodies against the GIV‐2L protein by immunizing mice with GIV‐2L‐His‐tag recombinant protein. By inhibiting de novo protein and DNA synthesis in GIV‐infected cells, we showed that GIV‐2L was a late gene during the viral replication. Finally, immunofluorescence microscopy revealed that GIV‐2L protein accumulated in both the nucleus and cytoplasm of infected cells. These results offer important insights into the pathogenesis of GIV.  相似文献   
7.
Grouper Epinephelus spp. is one of the most important mariculture fish species in China and South-East Asian countries. The emerging viral diseases, evoked by iridovirus which belongs to genus Megalocytivirus and Ranavirus, have been well characterized in recent years. To date, few data on lymphocystis disease in grouper which caused by lymphocystis disease virus (LCDV) were described. Here, a novel LCDV isolate was identified and characterized. Based on the sequence of LCDV major capsid protein (MCP) and DNA polymerase gene, we found that the causative agents from different species of diseased groupers were the same one and herein were uniformly defined as grouper LCDV (GLCDV). Furthermore, H&E staining revealed that the nodules on the skin were composed of giant cells that contained inclusion bodies in the cytoplasm. Numerous virus particles with >210 nm in diameter and with hexagonal profiles were observed in the cytoplasm. In addition, phylogenetic analysis based on four iridovirus core genes, MCP, DNA polymerase, myristoylated membrane protein (MMP) and ribonucleotide reductase (RNR), consistently showed that GLCDV was mostly related to LCDV-C, followed by LCDV-1. Taken together, our data firstly provided the molecular evidence that GLCDV was a novel emerging iridovirus pathogen in grouper culture.  相似文献   
8.

大鲵虹彩病毒(giant salamander iridovirus, GSIV)是近年中国大陆新发现的引起人工养殖大鲵(Andrias davidianus)大规模死亡的病毒病原。为了揭示大鲵虹彩病毒流行株的基因型差异, 本研究对2010–2012年采集自全国不同大鲵养殖区域的患虹彩病毒病的大鲵样本进行了分子检测、病毒分离培养以及病毒主衣壳蛋白(major capsid protein, MCP)基因测序与比对分析。结果显示, 采自陕西、湖北、湖南、浙江、江西、福建等省的10个样本检测为阳性, 通过细胞培养获得10株病毒流行株。对该10株流行株MCP基因的测序与比对分析发现, 核苷酸序列相似性达到99.7%~100%, 其推测的氨基酸序列无明显差异, 证实中国大鲵虹彩病毒流行株属同一基因型。系统进化树分析结果表明, 所选大鲵虹彩病毒与蛙病毒分别聚为一枝, 但其亲缘关系较近。本研究结果旨为大鲵虹彩病毒病的疫苗研制及其免疫防控技术研究奠定基础。

  相似文献   
9.
贾秋红 《河北渔业》2014,(12):41-42
2013年7月,陕西省汉中某大鲵养殖场发生以大鲵体表和四肢多处溃烂并伴有出血为特征的疾病,染病大鲵大量死亡。经临床观察、病理解剖及实验室检测,最后确诊病原为大鲵虹彩病毒。通过采取综合防治措施,养殖场大鲵疫情得到有效控制。  相似文献   
10.
大鲵虹彩病毒TaqMan实时荧光定量PCR检测方法的建立   总被引:4,自引:2,他引:2  
利用PCR技术扩增出大鲵虹彩病毒(giant salamander iridovirus, GSIV)主要衣壳蛋白(MCP)编码区长度为1 392 bp 的片段, 克隆到 pMD19-T载体上, 构建重组质粒 pMD19-T-MCP。经PCR鉴定确认正确后, 以10倍梯度稀释 pMD19-T-MCP重组质粒, 作为标准模板进行 TaqMan实时荧光定量PCR扩增, 制作标准曲线, 建立了大鲵虹彩病毒的 TaqMan实时荧光定量PCR检测方法。制作的标准曲线有极好的线性关系, 且线性范围宽, 相关系数为0.990 19。组内重复试验的CT值标准偏差为0.52%。检测结果显示, 该方法对大鲵虹彩病毒的检测有高度的特异性, 与锦鲤疱疹病毒、弗氏柠檬酸杆菌、嗜水气单胞菌以及鲤上皮瘤细胞基因组DNA之间均无交叉反应, 特异性好, 检测总DNA灵敏度为10个病毒核酸分子拷贝数, 约1.1×10-3 pg/μL病毒核酸, 较之常规PCR的敏感度高出约1 000倍。研究建立的大鲵虹彩病毒TaqMan实时荧光定量PCR方法灵敏度高、特异性强, 对大鲵虹彩病毒病的快速诊断与病毒病原定量检测有重要意义。  相似文献   
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