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1.
Equine herpesvirus type 1 (EHV-1) is responsible for respiratory disorders, abortion and myeloencephalopathy (EHM) in horses. Two pathotypes of EHV-1 strains are circulating in the field: neurovirulent (N) and non-neurovirulent (NN). For both strains, CD172a+ monocytic cells are one of the main carrier cells of EHV-1 during primary infection, allowing the virus to invade the horse’s body. Recently, we showed that EHV-1 NN strains showed a restricted and delayed replication in CD172a+ cells. Here we characterize the in vitro replication kinetics of two EHV-1 N strains in CD172a+ cells and investigate if the replication of these strains is similarly silenced as shown for EHV-1 NN strains. We found that EHV-1 N replication was restricted to 7–8% in CD172a+ cells compared to 100% in control RK-13 cells. EHV-1 N replication was not delayed in CD172a+ cells but virus production was significant lower (103.0 TCID50/105 inoculated cells) than in RK-13 cells (108.5 TCID50/105 inoculated cells). Approximately 0.04% of CD172a+ cells produced and transmitted infectious EHV-1 to neighbour cells compared to 65% of RK-13 cells. Unlike what we observed for the NN strain, pretreatment of CD172a+ cells with histone deacetylases inhibitors (HDACi) did not influence the replication of EHV-1 N strains in these cells. Overall, these results show that the EHV-1 replication of N strains in CD172a+ cells differs from that observed for NN strains, which may contribute to their different pathogeneses in vivo.  相似文献   
2.
将APMV-I鹅源分离株YG97鸡源分离株Y98和NDV强毒株F48E8感染SPF鸡,运用透射电镜观察该2株病毒分离株对机体细胞的影响,结果显示3株禽副黏病毒均引起机体肝、胰、脾、肾、心、胃、十二指肠和直肠等实质器官组织细胞的超微病变,如黏膜上皮细胞多处受损,表面微绒毛脱落;实质细胞核固缩、凝聚、凹陷、核多形性,线粒体嵴断裂、空泡样变、膜溶解,粗面内质网扩张、囊泡变,细胞浆的囊泡内及细胞浆内存在有囊膜的成熟病毒粒子等,但YG97和Y98对不同实质器官的组织细胞超微病变程度不一:胃、肝、胰、脾、肾超微病变比心脏的超微病变严重。电镜观察结果还表明:3株禽副黏病毒引起宿主细胞的超微病变有2种形式:坏死性病变和凋亡性病变。  相似文献   
3.
The major role of DNA polymerase β was thought to be limited in its involvement in short patch base excision repair by removing 5’-deoxyribose phosphate and base insertion. However, the recent researches indicate that polymerase β might take part in a wide spectrum of DNA metabolism reactions, including long patch base excision repair, DNA replication, recombination, meiosis and transleisional DNA synthesis. Because of its wide and important cellular function, an inappropriate intracellular polymerase β level might be associated with genomic instability. Down-regulation or mutation of polymerase β is mutagenic due to deficient in DNA repair, while overexpression of this error-prone β polymerase might perturb the normal function of other accurate polymerases and cause genomic instability as well.  相似文献   
4.
【目的】马铃薯Y病毒(Potato virus Y,PVY)是危害烟草、马铃薯、番茄、辣椒等主要农作物的重要病毒,给农业生产带来巨大损失。论文旨在克隆Hsc70-2蛋白在本氏烟(Nicotiana benthamiana)中的基因序列并分析其生物学信息,研究NbHsc70-2蛋白对PVY侵染烟草的影响,为进一步解析PVY的侵染机制提供理论依据。【方法】以本氏烟为材料,克隆NbHsc70-2蛋白的基因编码序列(coding sequence,CDS),利用MEGA 6.0进行多序列比对并构建系统进化树;利用实时荧光定量PCR(qRT-PCR)分析NbHsc70-2在本氏烟各组织中的表达水平;采用在线软件BaCeILo和SignalP 4.0对NbHsc70-2进行生物信息学分析;构建NbHsc70-2-RFP融合蛋白确定该蛋白的亚细胞定位;研究PVY处理对本氏烟叶片中NbHsc70-2的影响;利用激光共聚焦观察PVY-GFP处理对NbHsc70-2-RFP定位的影响;构建NbHsc70-2 VIGS沉默体系及瞬时表达载体,采用qRT-PCR比较NbHsc70-2在沉默/过表达后对PVY表...  相似文献   
5.
通过重叠PCR扩增得到烟草丛顶病毒(Tobacco bushy top virus,TBTV)中国分离物RdRp的编码序列,构建以pMALC2X为基础载体的原核表达载体pMAL-TB-RdRp。0.5 mM IPTG诱导可特异性表达分子量约为120 kDa的MBP-RdRp融合蛋白。温度梯度实验显示,18℃下诱导表达的MBP-RdRp融合蛋白的可溶性比例较高,约17%;经亲和层析纯化的MBPRdRp可特异性识别TBTV正链和负链的3'末端序列,催化体外复制;对正负链的3'末端的体外复制效率存在差别,识别负链3'末端的体外复制效率明显高于正链3'末端。本研究创建的TBTV RdRp介导的体外复制体系为进一步研究TBTV基因组复制调控奠定了基础。  相似文献   
6.
7.
Zmyslony  Jean  Gagnon  Daniel 《Landscape Ecology》2000,15(4):357-371
Contagious spatial patterns were shown to exist in the landscape of front-yards in street sections of Hochelaga-Maisonneuve, Montréal. Neighbour mimicry was hypothesized as the mechanism behind this pattern (Zmyslony and Gagnon 1998). To assess the role of spatial environmental factors in structuring this pattern, we carried out a path analysis on the front-yard landscape with five spatial factors: relative distance, street side, width, depth and type of front-yard. We removed all non-significant factors from our model with simple Mantel tests and untangled the common spatial component from the relationship between spatial factors and front-yard landscape with partial Mantel tests. We then used path analysis to evaluate the relative importance of all significant spatial factors in structuring front-yard landscape and to determine the r 2 (% of landscape variation explained by spatial factors). Results showed that (1) among all spatial environmental factors, distance (proximity) remained the best predictor of front-yard vegetation – distance alone explained an average of 20% of the landscape variation of a street section, (2) depth, width and type of front-yard also structured the front-yard landscape independently of distance, (3) front-yard landscape expresses greater similarity within the same side of a street section, and (4) in two street sections of Hochelaga-Maisonneuve, spatial factors predicted over 40% of the landscape variation. This suggests (1) that landscape contagion exists also in highly humanized environments and (2) that the mimicry phenomenon was induced not only by proximity, but also by similar environmental conditions in same side street sections and whole street sections. Finally, we suggest that street sections are a very useful and appropriate unit of analysis of urban ecosystems.  相似文献   
8.
刘昕彤  王希 《农学学报》2023,13(1):66-72
为了更深入的对植物增殖细胞核抗原(proliferating cell nuclear antigen, PCNA)进行研究,本研究归纳了PCNA的研究现状,总结了PCNA的结构特征和包括PCNA参与DNA复制、DNA损伤修复和细胞周期调控等在内的PCNA的功能特点。目前有关PCNA的研究以医学和动物体为主,有关植物PCNA研究的报道很少且相对落后,但已有文献指出,PCNA调控DNA复制,参与DNA复制以确保植物体正常生长发育,因此植物PCNA的功能值得继续研究。  相似文献   
9.
BackgroundInterferon lambda receptor 1 (IFNLR1) is a type II cytokine receptor that clings to interleukins IL-28A, IL29B, and IL-29 referred to as type III IFNs (IFN-λs). IFN-λs act through the JAK-STAT signaling pathway to exert antiviral effects related to preventing and curing an infection. Although the immune function of IFN-λs in virus invasion has been described, the molecular mechanism of IFNLR1 in that process is unclear.ObjectivesThe purpose of this study was to elucidate the role of IFNLR1 in the pathogenesis and treatment of porcine reproductive and respiratory syndrome virus (PRRSV).MethodsThe effects of IFNLR1 on the proliferation of porcine alveolar macrophages (PAMs) during PRRSV infection were investigated using interference and overexpression methods.ResultsIn this study, the expressions of the IFNLR1 gene in the liver, large intestine, small intestine, kidney, and lung tissues of Dapulian pigs were significantly higher than those in Landrace pigs. It was determined that porcine IFNLR1 overexpression suppresses PRRSV replication. The qRT-PCR results revealed that overexpression of IFNLR1 upregulated antiviral and IFN-stimulated genes. IFNLR1 overexpression inhibits the proliferation of PAMs and upregulation of p-STAT1. By contrast, knockdown of IFNLR1 expression promotes PAMs proliferation. The G0/G1 phase proportion in IFNLR1-overexpressing cells increased, and the opposite change was observed in IFNLR1-underexpressing cells. After inhibition of the JAK/STAT signaling pathway, the G2/M phase proportion in the IFNLR1-overexpressing cells showed a significant increasing trend. In conclusion, overexpression of IFNLR1 induces activation of the JAK/STAT pathway, thereby inhibiting the proliferation of PAMs infected with PRRSV.ConclusionExpression of the IFNLR1 gene has an important regulatory role in PRRSV-infected PAMs, indicating it has potential as a molecular target in developing a new strategy for the treatment of PRRSV.  相似文献   
10.
旨在构建鸭肠炎病毒(DEV)UL41基因缺失毒株,并对其生物学特性进行分析,本研究以克隆有DEV UL41基因的重组黏粒D1为骨架,利用Red/ET重组技术构建缺失UL41基因的重组黏粒D1 dUL41;将UL41基因缺失重组黏粒D1 dUL41与其他4个克隆有DEV基因组片段的亲本黏粒共转染鸭胚成纤维细胞(DEF),拯救获得UL41基因缺失毒株rDEV-SD19/dUL41。将该基因缺失病毒感染DEF后,提取病毒基因组进行PCR鉴定及测序,并利用间接免疫荧光试验检测该病毒感染细胞中UL41基因表达情况;绘制拯救的基因缺失病毒的生长曲线,分析其体外复制特性。PCR及测序结果显示,本研究成功构建了缺失UL41基因的重组黏粒D1 dUL41。将该基因缺失黏粒与其他含有DEV基因组的亲本黏粒共转染DEF后能够产生典型的蚀斑病变。PCR及测序结果显示,UL41基因成功从DEV基因组中缺失;间接免疫荧光试验发现,基因缺失病毒rDEV-SD19/dUL41感染DEF后,未见UL41蛋白表达。综上表明,本研究成功构建了DEV UL41基因缺失病毒。体外生长曲线显示,rDEV-SD19/dUL41在DEF中的复制能力明显低于亲本病毒,提示UL41蛋白在DEV复制中发挥重要作用。UL41基因缺失DEV的构建为进一步研究UL41基因在DEV感染和致病中的作用机制奠定了基础。  相似文献   
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