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1.
根据文献设计2对引物,PCR扩增FPV复制非必需区中外源基因插入位点两侧翼的片段,分别克隆到pUC19和pSK质粒中,并命名为pFP1和pFP2。根据文献设计引物,PCR扩增鸡传染性喉气管炎病毒(ILTV)的GB基因的编码区。将GB基因克隆到质粒pFP1中获得重组质粒pFP1-GB;用酶切质粒pEGFP,得到GFP片段并克隆到质粒pFP2中,得到重组质粒pFP2-GFP。双酶切pFP1-GB得到FP1-GB片段,并克隆到质粒pFP2-GFP中,得到重组质粒pFP1GB-FP2GPF。酶切质粒pE/L-7.5,获得背向连接的2个鸡痘病毒启动子片段——PE/L-7.5,并将该片段克隆到重组质粒pFP1GB-FP2GPF获得重组质粒pGB-GFP,该质粒即为鸡痘病毒的转移质粒。在质粒pGB-GFP中,2个背向连接的启动子被克隆到的GB和GFP基因之间,分别启动GB和GFP基因的表达。经酶切和测序鉴定pGB-GFP,启动子PE/L和P7.5已分别正确地插入到GB和GFP基因之间,分别启动外源表达基因GB和筛选标记基因GFP的表达,从而证明已获得表达鸡传染性喉气管炎病毒GB基因重组鸡痘病毒转移载体pGB-GFP。该载体为下一步获得表达鸡传染性喉气管炎病毒GB基因的重组鸡痘病毒奠定基础。  相似文献   

2.
根据已发表的传染性喉气管炎病毒(ILTV)SA-2株的核酸序列,设计了1对引物,以ILTV-中国王岗株DNA为模板,PCR法扩增出1条1.39kb的基因片段,将扩增产物插入到真核表达质粒pCR^TM3-Uni,得到重组质粒pTA-gD,另将克隆到pBluescript SK质料中的gC基因酶毁后,插入到pCR^TM3-Uni载体,得到重组质粒pTA-gC,经电泳分析、酶分、PCR鉴定后,进行序列测  相似文献   

3.
鸡传染性喉气管炎病毒DNA疫苗免疫效果观察   总被引:19,自引:1,他引:18  
将分别构建的含有鸡传染性喉气管炎病毒王岗株gB、gC和bD基因的重组真核表达质粒及空载体质粒分组肌肉注射雏鸡,攻毒后观察免疫保护效果。结果表明,重组质粒诱导了免疫应答,免疫保护率为79%,该基因疫苗可以作为预防ILT的一个补充。  相似文献   

4.
鸡传染性喉气管炎病毒中国王岗株gX基因的克隆及鉴定   总被引:4,自引:1,他引:3  
以pUC19质粒为载体克隆鸡传染性喉气管炎病毒(ILTV)中国王岗株的DNA,构建了鸡传染性喉气管炎病毒DNA的KpnⅠDNA文库。参考ILTV-SA2株gX基因的核酸序列,设计并合成了分别为12bp和13bp的1对引物。以ILTV中国王岗株DNA为模板,用PCR方法特异性地扩增出0.84kb的ILTV-gX基因片段。以地高辛标记该0.84kb的片段为探针,经Southern杂交从ILTV中国王岗株KpnⅠDNA文库中筛选出3个含5.2kb外源ILTVDNA片段的gX基因阳性重组子。经酶切分析、Southern杂交、PCR检测和该片段部分酶谱分析表明,ILTV中国王岗株DNA5.2kb的KpnⅠ片段无论是片段大小还是酶切图谱均与ILTV-SA2株完全相同,而且Southern杂交和PCR检测均为gX阳性,证明其中含有完整的gX基因  相似文献   

5.
PCR结合分子杂交法检测鸡传染性支气管炎病毒   总被引:6,自引:2,他引:4  
利用逆转录-PCR(RT-PCR)特异性扩增鸡传染性支气管炎病毒(IBV)基因组中M基因和N基因之间一段核酸片段。以pUC19质粒载体将此片段克隆,用EcoRI和HindⅢ酶切此重组质粒,回收克隆片段后,制成生物素标记的核酸探针。用RT-PCR及生物素核酸探针法分别对IBV,IBDV,ILTV,MDV及NDV进行检测,结果证明该方法为IBV特异性检测方法。对人工感染IBV的SPF鸡口腔棉拭样品进行跟踪检测,证明本方法能在SPF鸡接毒后1~10d内检出IBV。  相似文献   

6.
将克隆到pUC119中的传染性喉气管炎病毒(ILTV)糖蛋白gB基因,通过EcoRI位点克隆至杆状态病毒转移载体pVL1393中,构建成重组杆状病毒转移载体rpVLgB,将rpVLgB转移载体质粒与杆状态病毒DNA(Bac-N-Blue DNA)共转染Sf9昆虫细胞,经3轮蚀斑纯化,获得重组病毒并命名为rpVL-ILTVgB。PCR方法鉴定证明gB基因正确插入到杆状病毒基因组中,直接免疫荧光试验和Dot-ELISA结果均表明gB基因在重组杆状病毒感染的Sf9昆虫细胞保获得表达,表达的gB蛋白将作为鸡传染性喉气管炎的亚单位疫苗和诊断抗原。  相似文献   

7.
鸡传染性支气管炎病毒SY毒株S1基因的RT-PCR扩增与克隆   总被引:2,自引:0,他引:2  
利用 IBV S1基因特异性寡聚核苷酸引物,经 RT-PCR技术扩增鸡传染性支气管炎病毒 SY毒株 S1基因,得到预期的1.7kb片段。并将扩增所得cDNA插入克隆质粒载体pUC19的EcoRⅠ/BamHⅠ酶切位点,在大肠杆菌DH_(5a)中实现目的基因的克隆,获得SY毒株S1基因重组质粒。  相似文献   

8.
建立了检测鸡喉气管炎病毒(ILTV)的二温式聚合酶链反应(二温式PCR),根据已报道的ILTV TK基因的序列,设计并合成了1对引物,用二温式PCR对5株不同ILTV DNA进行扩增。该对引物对5株ILTV DNA均扩增出与预期大小相一致的647bp的扩增产物,而对新城疫病毒(NDV)、传染性支气管炎病毒(IBV)、禽呼肠孤病毒(ARV)、禽沙门氏菌、鸡毒霉形体和禽巴氏杆菌等6种禽病病原体的扩增,  相似文献   

9.
为了检测表达鸡传染性喉气管炎病毒糖蛋白gB基因重组鸡痘病毒(rFPV-ILTVgB)的稳定性,我们对重组病毒进行6代和16代克隆纯化,对纯化后的病毒通过转瓶连续培养传20代,结果发现第6代纯化病毒(rFPV-ILTVgB-C6)在传代过程中有白斑出现,说明病毒纯度不够;经过16代纯化的病毒(rFPV-ILTVgB-C16)对细胞的嗜性加强,病毒的效价进一步升高,20代传代后蓝斑率仍然为100%,PCR的检测进一步证明插入的外源基因能在病毒的长期传代过程中稳定地遗传。抽取病毒细胞传代过程中的第5,10,15,20代次的病毒翅膀内侧无血管处皮下接种2周龄SPF鸡,20天后分为两组,分别用传染性喉气管炎病毒WG株和鸡痘病毒102株攻击,结果不同代次的重组病毒均可以使免疫鸡抵抗传染性喉气管炎病毒和鸡痘病毒强毒的攻击,鸡体内病毒传代试验表明,重组病毒在接种部位仅存在6天,之后就检测不到病毒,重组病毒通过SPF鸡连续传代,不存在病毒返祖的可能,由此可以得出一个结论:rFPV-ILTVgB在结构上和免疫原性上是稳定的,无论是在体外传代,还是在体内均可以稳定遗传,不存在因为接种重组疫苗而给免疫鸡群带来安全威胁的可能,完全可以作为疫苗毒株进行商品化开发。  相似文献   

10.
将鸡传染性喉气管炎病毒(ILTV)gD基因和鸡白细胞介素2(ChIL-2)基因通过同源重组法重组禽痘病毒转移载体,构建含ILTVgD基因和ChIL-2基因的重组禽痘病毒转移载体rFPVIL2ILTV—gD,蓝色蚀斑纯化法纯化重组病毒,用IFA检测重组病毒中ILTVgD基因的表达和用ELISA试剂盒检测ChIL-2的表达。重组病毒rFPV—IL2-ILTV-gD免疫试验鸡,间接ELISA测定血清中ILTV抗体效价,动物试验用构建的ILTV强毒以滴鼻方式攻击各组试验鸡,结果表明,外源基因在重组禽疽病毒中得到了稳定表达;ELISA检测结果表明在免疫7d后能够检测到血清抗体,免疫21d后血清抗体达到高峰,此后便开始逐渐下降,符合疫苗免疫的消长规律;攻毒后每组鸡的发病情况可以看出重组病毒rFPV-IL2-ILTV-gD组和疫苗对照组对ILTV强毒攻击的保护率分别为96%和92%,而空白对照组为8%。说明构建的重组病毒rFPV-IL2-ILTV—gD免疫效力稍优于弱毒疫苗,能够较好的保护免疫鸡群。  相似文献   

11.
用鸡痘病毒载体表达马立克氏病病毒(MDV)糖蛋白B(gB)基因构建成重组鸡痘病毒(rFPV)。以MDV GA或Md5和RBIB混合攻毒,在不同品种的鸡中评价rFPV-gB/R单价苗和与火鸡疱疹病毒(HVT)组成的二价苗的免疫保护效力。试验结果表明,MDV疫苗和FPV母源抗体阴性的SPF鸡和母源抗体阳性的商品鸡中,rFDV-gB/R均能提供免疫保护作用,且其中一种商品蛋鸡中rFPV-gB/R与HVT液氮苗或HVT冻干苗结合使用,均有显著的免疫协同保护作用。免疫学研究指出,rFPV-gB/R与常规疫苗一样,可显著地降低疫苗免疫攻毒鸡的病毒血症和羽囊排毒。  相似文献   

12.
Earlier studies have shown that the B haplotype has a significant influence on the protective efficacy of vaccines against Marek's disease (MD) and that the level of protection varies dependent on the serotype of MD virus (MDV) used in the vaccine. To determine if the protective glycoprotein gene gB is a basis for this association, we compared recombinant fowlpox virus (rFPV) containing a single gB gene from three serotypes of MDV. The rFPV were used to vaccinate 15.B congenic lines. Nonvaccinated chickens from all three haplotypes had 84%-97% MD after challenge. The rFPV containing gB1 provides better protection than rFPV containing gB2 or gB3 in all three B genotypes. Moreover, the gB proteins were critical, since the B*21/*21 chickens had better protection than chickens with B*13/*13 or B*5/*5 using rFPV with gB1, gB2, or gB3. A newly described combined rFPV/gB1gEgIUL32 + HVT vaccine was analyzed in chickens of lines 15 x 7 (B*2/*15) and N (B*21/*21) challenged with two vv+ strains of MDV. There were line differences in protection by the vaccines and line N had better protection with the rFPV/gB1gEgIUL32 + HVT vaccines (92%-100%) following either MDV challenge, but protection was significantly lower in 15 X 7 chickens (35%) when compared with the vaccine CVI988/Rispens (94%) and 301B1 + HVT (65%). Another experiment used four lines of chickens receiving the new rFPV + HVT vaccine or CVI988/Rispens and challenge with 648A MDV. The CVI 988/Rispens generally provided better protection in lines P and 15 X 7 and in one replicate with line TK. The combined rFPV/gB1gEgIUL32 + HVT vaccines protected line N chickens (90%) better than did CVI988/Rispens (73%). These data indicate that rFPV + HVT vaccines may provide protection against MD that is equivalent to or superior to CVI988/ Rispens in some chicken strains. It is not clear whether the rFPV/gB1gEgIUL32 + HVT vaccine will offer high levels of protection to commercial strains, but this vaccine, when used in line N chickens, may be a useful model to study interactions between vaccines and chicken genotypes and may thereby improve future MD vaccines.  相似文献   

13.
Sun HL  Wang YF  Tong GZ  Zhang PJ  Miao DY  Zhi HD  Wang M  Wang M 《Avian diseases》2008,52(1):111-117
A recombinant fowlpox virus (rFPV) coexpressing the Newcastle disease virus (NDV) fusion and hemagglutinin-neuraminidase genes and infectious laryngothracheitis virus (ILTV) glycoprotein B gene was constructed. This virus was then evaluated for its ability to protect specific-pathogen-free (SPF) chickens against clinical symptoms and death after challenge by virulent NDV and ILTV. SPF chickens were grouped and vaccinated with the rFPV and commercial NDV (La Sota) and ILTV attenuated live vaccine (Nobilis ILT), respectively. After challenge with NDV 10 days postvaccination, 70% of chickens vaccinated with rFPV were protected from death, whereas 100% of the commercial NDV-vaccinated chickens were protected from death. In contrast, 100% of the unvaccinated chickens died after challenge. After challenge with ILTV, both the rFPV and commercial ILTV-vaccinated chickens were completely protected from death and 70% of chickens were protected from respiratory signs. In comparison, 100% of the unvaccinated chickens developed severe respiratory disease and 10% of chickens died. The protective efficacy was also measured by the antibody responses and isolation of challenge viruses. Results showed that this rFPV could be a potential vaccine for preventing NDV and ILTV by a single immunization.  相似文献   

14.
Recombinant fowl poxviruses (rFPVs) were constructed to express genes from serotype 1 Marek's disease virus (MDV) coding for glycoproteins B, E, I, H, and UL32 (gB1, gE, gI, gH, and UL32). An additional rFPV was constructed to contain four MDV genes (gB1, gE, gI, and UL32). These rFPVs were evaluated for their ability to protect maternal antibody-positive chickens against challenge with highly virulent MDV isolates. The protection induced by a single rFPV/gB1 (42%) confirmed our previous finding. The protection induced by rFPV/gI (43%), rFPV/gB1UL32 (46%), rFPV/gB1gEgI (72%), and rFPV/gB1gEgIUL32 (70%) contributed to additional knowledge on MDV genes involved in protective immunity. In contrast, the rFPV containing gE, gH, or UL32 did not induce significant protection compared with turkey herpesvirus (HVT). Levels of protection by rFPV/gB1 and rFPV/gl were comparable with that of HVT. Only gB1 and gI conferred synergism in rFPV containing these two genes. Protection by both rFPV/gB1gEgI (72%) and rFPV/gB1gEgIUL32(70%) against Marek's disease was significantly enhanced compared with a single gB1 or gI gene (40%). This protective synergism between gB1 and gI in rFPVs may be the basis for better protection when bivalent vaccines between serotypes 2 and 3 were used. When rFPV/gB1gIgEUL32 + HVT were used as vaccine against Md5 challenge, the protection was significantly enhanced (94%). This synergism between rFPV/gB1gIgEUL32 and HVT indicates additional genes yet to be discovered in HVT may be responsible for the enhancement.  相似文献   

15.
本试验构建了H9亚型禽流感病毒HA基因禽痘病毒转移载体,经转染、蓝斑克隆、筛选和纯化,获得了遗传性状稳定的HA基因重组禽痘病毒。提取感染重组病毒的鸡胚成纤维细胞(CEF)的DNA进行PCR扩增,获得1.7kb的携带有外源目的基因片段。收集纯化的重组病毒CEF细胞,用H9亚型禽流感病毒多克隆血清作一抗,碱性磷酸酶标记的鸡IgG为二抗进行Western blot检测,结果表明重组痘病毒能在体外的CEF细胞表达HA糖蛋白。  相似文献   

16.
传染性喉气管炎新城疫鸡痘重组病毒免疫效力的研究   总被引:1,自引:2,他引:1  
在表达鸡传染性喉气管炎病毒(ILTV)糖蛋白gB基因和新城疫病毒(NDV)F基因的重组鸡痘病毒(rF-PV-gB-F)安全性检验合格后,以5.0×101~5.0×104PFU不同含量按0.1mL/鸡的剂量免疫100只30日龄SPF鸡,30d后分组分别用ILTVWG株和NDVF48E9株强毒进行攻击。免疫鸡抗鸡痘病毒抗体都转为阳性,痘反应和接种剂量有关,重组疫苗的最小反应剂量为50PFU。重组疫苗可以诱发对新城疫和传染性喉气管炎的保护,0.1mL/鸡的接种量在500~5000PFU浓度范围内的免疫效果最好,对于ILTV攻击的发病保护率在70%以上,对NDV强毒攻击的抗死亡保护率可以达到80%,这为进一步考察疫苗的免疫效力试验以及进行田间试验奠定了基础。  相似文献   

17.
将表达H9亚型禽流感病毒HA基因重组鸡痘病毒疫苗连续传代至30代,取第10、20、30代重组病毒作为受检代次,进行外源基因片段的克隆与测序,以间接免疫荧光试验检验各代次的表达,并以第10、20、30代重组鸡痘病毒疫苗进行免疫保护效力试验。对各代次模板进行PCR反应,分别扩增出特异的1.7kb外源基因片段,酶切位点与原始代次相同;各代次外源基因序列与原始序列相比,仅有1个碱基发生变化,不涉及氨基酸的变化;免疫荧光试验显示各代次均有显著表达;各免疫组在免疫后第7、10、14、20天的HI抗体效价(log2)逐渐上升;攻毒后第5天各免疫组排毒率与对照组相比差异显著,各免疫组之间无显著差异。结果表明:此重组载体疫苗具有较好的遗传稳定性,经过30代的传代后外源插入基因及其表达未见变化,免疫保护效力亦与原代一致。  相似文献   

18.
作者旨在探讨鸡痘病毒ORF073或ORF214基因缺失后,在母源抗体存在情况下对重组病毒免疫效力的影响。将构建好的在ORF073或ORF214基因插入H5亚型AIV HA基因的重组鸡痘病毒(rFPVLP-△73LRH5A、rFPVLP-△214LRH5A)及单表达H5亚型AIV HA基因的重组鸡痘病毒(rFPVLP-12LSH5A)分别免疫SPF鸡和商品鸡,检测重组疫苗诱导的免疫效力。结果:3种重组鸡痘病毒在SPF鸡产生较高的HI抗体效价及100%的免疫保护;在HI母源抗体效价为2.45的商品鸡体内基因缺失株重组病毒比rFPVLP-12LSH5A易于清除,抗体上升缓慢而且免疫28 d后HI抗体效价较低,免疫保护率低,分别为16.7%和23.3%;在母源HI抗体效价为0的商品鸡体内基因缺失株重组病毒免疫后产生的抗体效价高,免疫28 d后分别达到3.50和3.17。结果表明在商品鸡体内母源抗体影响下,缺失ORF073或ORF214基因的重组鸡痘病毒的免疫效力降低。  相似文献   

19.
将鸡传染性支气管炎病毒S1基因插入到鸡痘病毒转移载体pSY681中,获得重组转移载体pSY681。将pSY681-IBVS1转染已感染亲本鸡痘病毒S-FPV-017株的鸡胚成纤维细胞,使其在鸡胚成纤维细胞内与鸡痘病毒基因组发生同源重组,产生表达鸡IBVS1蛋白的重组鸡痘病毒rFPV-IBVS1。在含有X-gal的营养琼脂培养基上进行蓝斑筛选且进一步纯化14代。S1基因的PCR检测表明,获得的含传染性支气管炎病毒S1基因的重组鸡痘病毒能够稳定遗传,间接免疫荧光和Western blot等试验证实该重组病毒在CEF内真实地表达了分子量约为90Ku的具有免疫学活性的IBV S1糖蛋白。  相似文献   

20.
为评价共表达鸡IL-6和H5亚型禽流感病毒HA基因重组鸡痘病毒(rFPV-AH5AIL6)的遗传稳定性,本研究将其接种CEF,绘制生长曲线.结果显示,该重组病毒与亲本病毒的生长速度及蚀斑大小一致;在CEF 连续培养20代,取第0代、5代、10代、20代重组病毒PCR扩增HA和Ⅱ-6基因进行鉴定,显示HA基因无核苷酸突变,IL-6基因在第20代时有1个氨基酸发生突变,但不影响该蛋白的功能区;间接免疫荧光试验证明所选代次病毒均能够表达HA蛋白,RT-PCR试验表明各代次病毒均可以表达鸡IL-6基因;通过蓝斑鉴定重组病毒纯度,结果显示所有蚀斑均为蓝斑.因此,该重组鸡痘病毒具有良好的遗传稳定性,符合兽医生物制品的生产要求.  相似文献   

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