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121.
藜草花叶病毒的研究概述   总被引:1,自引:0,他引:1  
藜草花叶病毒(Sowbane mosaic virus,So MV)是菠菜上的重要有害生物,可通过种子、花粉、昆虫介体和机械等方式传播。随着我国种子、种苗进口量的进一步扩大和产业化种植,藜草花叶病毒传入我国的风险非常大。本文综述了藜草花叶病毒的生物学特性、分布、寄主范围、为害症状、传播途径、检测技术等,论述了藜草花叶病毒传入我国的潜在危害性和风险。  相似文献   
122.
引起牛病毒性腹泻/黏膜病(bovine viral diarrhea-mucosal disease,BVD-MD)的病原为牛病毒性腹泻病毒(Bovine viral diarrhea virus,BVDV),牛感染后会出现与其他腹泻病相似的症状,仅通过临床表现和病理观察很难做出准确鉴别;其次持续感染(PI)牛是该病主...  相似文献   
123.
Active serologic surveillance is necessary to control the spread of the avian influenza virus (AIV). In this study, we evaluated a commercially-available cELISA in terms of its ability to detect AIV antibodies in the sera of 3,358 animals from twelve species. cELISA detected antibodies against reference H1- through H15-subtype AIV strains without cross reactivity. Furthermore, the cELISA was able to detect antibodies produced following a challenge of the AIV H9N2 subtype in chickens, or following vaccination of the AIV H9 or H5 subtypes in chickens, ducks and geese. Next, we tested the sensitivity and specificity of the cELISA with sera from twelve different animal species, and compared these results with those obtained by the hemagglutination-inhibition (HI) test, the "gold standard" in AIV sera surveillance, a second commercially-available cELISA (IZS ELISA), or the agar gel precipitation (AGP) test. Compared with the HI test, the sensitivities and specificities of cELISA were 95% and 96% in chicken, 86% and 88% in duck, 97% and 100% in turkey, 100% and 87% in goose, and 91% and 97% in swine, respectively. The sensitivities and specificities of the cELISA in this study were higher than those of IZS ELISA for the duck, turkey, goose, and grey partridge sera samples. The results of AGP test against duck and turkey sera also showed significant correlation with the results of cELISA (R-value >0.9). In terms of flock sensitivity, the cELISA correlated better with the HI test than with commercially-available indirect ELISAs, with 100% flock sensitivity.  相似文献   
124.
AIM: To study the effect of p65 gene silencing by adeno-associated virus type 9 (AAV9)-mediated RNA interference on angiotensin Ⅱ (Ang Ⅱ; 10-6 mol/L for 24 h)-induced apoptosis of rat ventricular H9c2 myocytes, and to elucidate the possible mechanism. METHODS: The H9c2 cells were transfected with rAAV9-eGFP and rAAV9-eGFP-NF-κB p65-siRNA at multiplicity of infection (MOI)=4×106 vg/cell. eGFP expression in the cells was observed under an inverted fluorescence microscope, and the percentage of eGFP positive cells was determined by flow cytometry. The expression of p65 was determined by Western blot. CCK-8 assay was used to measured the viability of transfected H9c2 cells. The apoptosis of the cells transfected with the virus and with Ang Ⅱ stimulation was analyzed by flow cytometry. RESULTS: The cells began to exhibit eGFP expression on the 2nd day after transfection. The fluorescence intensity was increased over the time of transfection. eGFP expression reached the maximum on the 5th day, and the transfection efficiency was (52.7±1.9)% at this time point. Compared with blank control group, no significant effect of AAV9 on the viability of H9c2 cells was observed. In resting state, p65 in the H9c2 cells had a certain activity. After Ang Ⅱ stimulation, the activity of p65 was obviously increased, while transfection of rAAV9-eGFP-NF-κB p65-siRNA effectively inhibited the expression of p65. The apoptosis of H9c2 cells in Ang Ⅱ stimulation group was significantly higher than that in blank control group, while transfection of rAAV9-eGFP-NF-κB p65-siRNA effectively inhibited apoptosis of H9c2 cells. CONCLUSION: Transfection of rAAV9-eGFP-NF-κB p65-siRNA effectively inhibits the expression of p65 gene of NF-κB pathway in the H9c2 cells without causing cell growth inhibition, and reduces the apoptosis induced by Ang Ⅱ.  相似文献   
125.
为了解广东地方品种鸡J亚群禽白血病病毒(ALV-J)净化情况,利用ALV-p27特异性抗原检测、病毒分离、PCR扩增和全基因组测序分析等方法,从广东某地方品种鸡群中分离鉴定出1株ALV-J,命名为GDYH-Y1。全基因组序列分析表明,GDYH-Y1分离株的LTR、gag和pol基因相对保守,而3′UTR和gp85基因变异较大,其中gp85基因与ALV-J参考毒株序列同源性仅为87.5%~92.8%,3′UTR区的rTM出现大量碱基缺失,遗传进化分析表明GDYH-Y1分离株与美国白羽肉鸡源分离株ADOL-7501亲缘关系最近。研究为广东地方品种鸡ALV-J净化效果提供数据参考,为分析广东地方品种鸡ALV-J毒株的分子特征和变异趋势提供了重要的数据资料。  相似文献   
126.
 甘蔗花叶病广泛存在于我国甘蔗种植区,严重影响甘蔗产业的高质量发展。近年来甘蔗线条花叶病毒在蔗区肆虐,尽管针对其的血清学检测技术已经建立,但是快速、准确、高通量的检测方法亟待发掘。本研究制备了SCSMVCP的抗血清,特异性高,与引起甘蔗花叶病的另两种病原 (高粱花叶病毒和甘蔗花叶病毒) 间没有血清学交叉反应。基于该多克隆抗体,建立了直接抗原包被的ELISA、斑点杂交、Western blot和基于多抗的免疫试纸条检测技术。开发的免疫试纸条检测技术能快速、准确、高通量应用于田间病毒鉴定。本文提供了基于血清学的快速、准确、高通量,且便捷的甘蔗线条花叶病毒检测技术,有助于我国蔗区甘蔗花叶病的监测与防控。  相似文献   
127.
试验旨在探讨人工感染鸭源新城疫病毒(Newcastle disease virus,NDV)对绍鸭β-防御素(avian β-defensins,AvBDs)和细胞因子基因表达的影响。选用45只20日龄SPF绍鸭,随机分为攻毒组(27只)和对照组(18只),攻毒组采用滴鼻点眼的途径(108.38 EID50)接种鸭源NDV强毒株(Md/CH/LGD/1/2005),对照组接种磷酸盐缓冲液。在攻毒后24和48 h,从对照组及攻毒组各随机取6只鸭屠宰,分别采集肾脏、肺脏、气管、腺胃、骨髓、脾脏、盲肠扁桃体、哈德氏腺、法氏囊9个组织,运用实时荧光定量PCR法检测组织样品中9种AvBDs和细胞因子的表达量;剩余鸭每天持续观察,每隔4 d采血1次,直至24 d,检测血清抗体水平;于攻毒后24、48、72和120 h采集咽喉及泄殖腔拭子,以确定排毒周期。结果表明,感染该NDV毒株后,鸭没有临床发病症状和死亡情况发生;感染后鸭排毒开始于攻毒后第1天,到第5天停止,在攻毒组咽喉及泄殖腔拭子中均检测到NDV。抗体水平检测结果显示,该NDV能够诱导鸭体内产生抗NDV特异抗体。实时荧光定量PCR结果发现,与对照组相比,感染后24 h,部分鸭组织中AvBD1、AvBD2、AvBD5、AvBD6、AvBD9和AvBD16表达量均显著升高(P<0.05);感染后48 h,AvBD1和AvBD6在部分鸭组织中表达量均显著上调(P<0.05);感染后48 h法氏囊中白细胞介素6(IL-6)和脾脏中干扰素γ(IFN-γ)的表达量明显低于感染后24 h的表达量。综上所述,该鸭源NDV毒株感染可诱导绍鸭体内在早期产生天然免疫反应,这些反应可能与病毒在机体内复制有关。  相似文献   
128.
为原核表达牛疙瘩皮肤病病毒(LDSV) ORF132并对该基因进行生物信息学分析,本研究采用PCR扩增LSDV的ORF132基因,将其亚克隆至pGEX-6p-1载体中,构建重组质粒pGEX-LSDV-ORF132.生物信息学分析表明,LSDV的ORF132与Neethling vaccine LW1959株LW132、NI-2490株LSDV132和NW-LW株LD132的相应推导氨基酸同源性分别为100%、100%和94.4%,与山羊痘病毒、绵羊痘病毒相应推导氨基酸的同源性为20.7 %~36%.SDS-PAGE和western blot分析表明,pGEX-LSDV-ORF 132在大肠杆菌BL21中经IPTG诱导主要以包涵体形式存在,其重组蛋白大小约为48.95ku,并且与特异性抗体具有抗原反应活性.  相似文献   
129.
 从河北、北京、山东泰安和潍坊等地区的萝卜、大白菜、甘蓝、油菜上得到8个芜菁花叶病毒(Turnip mosaic virus,TuMV)分离物,测定了它们3'-末端cDNA片段的序列。根据衣壳蛋白基因(cp)核苷酸序列可以将这8个分离物与另外2个TuMV分离物分为3组:泰安旧镇大白菜(JZBC)、甘蓝(JZGL)和萝卜(JZLB)分离物为一组;北京(BJILB)、潍坊萝卜分离物(WFLB)与引起萝卜红心病的TuMV分离物(WFLB99)为一组;泰安范镇、河北、潍坊(WFLB04)萝卜和泰安旧镇油菜(JZYC)上的TuMV分离物为一组。农壳蛋白氨基酸序列比较结果与此基本一致,所不同的是分离物WFLB99与所有分离物的差异均较大,形成单独一个分支。有必要对TuMV的变异情况和致病机理进行深入研究。  相似文献   
130.
Zoonotic disease surveillance is typically triggered after animal pathogens have already infected humans. Are there ways to identify high‐risk viruses before they emerge in humans? If so, then how and where can identifications be made and by what methods? These were the fundamental questions driving a workshop to examine the future of predictive surveillance for viruses that might jump from animals to infect humans. Virologists, ecologists and computational biologists from academia, federal government and non‐governmental organizations discussed opportunities as well as obstacles to the prediction of species jumps using genetic and ecological data from viruses and their hosts, vectors and reservoirs. This workshop marked an important first step towards envisioning both scientific and organizational frameworks for this future capability. Canine parvoviruses as well as seasonal H3N2 and pandemic H1N1 influenza viruses are discussed as exemplars that suggest what to look for in anticipating species jumps. To answer the question of where to look, prospects for discovering emerging viruses among wildlife, bats, rodents, arthropod vectors and occupationally exposed humans are discussed. Finally, opportunities and obstacles are identified and accompanied by suggestions for how to look for species jumps. Taken together, these findings constitute the beginnings of a conceptual framework for achieving a virus surveillance capability that could predict future species jumps.  相似文献   
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