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1.
苹果茎沟病毒梨分离物外壳蛋白基因的克隆和序列分析   总被引:6,自引:1,他引:6  
 选取生物学和血清学特性存在较大差异的苹果茎沟病毒(Apple stem grooving virus,ASGV)梨分离物P-6-1-17、P-4-1-69、P-L2和P-D-21,采用RT-PCR法对3'端进行扩增,所获扩增片段经序列测定,全长分别为1089nt(P-6-1-17、P-L2)和1069nt(P-4-1-69、P-D-21)。4个分离物的CP基因均由714nt组成,其核苷酸和推导编码蛋白氨基酸序列同源性分别为89.8%~96.4%和94.9%~97.9%。将我国4个分离物的CP基因与已报道ASGV分离物及分子变种进行序列同源性比较和系统进化树分析,结果表明我国ASGV分离物至少可分为2个组群,其中生物学表现明显不同于其它分离物的P-L2,其CP基因核苷酸序列显示较大的变异。  相似文献   

2.
 甘薯褪绿斑病毒(Sweet potato chlorotic fleck virus,SPCFV)是侵染甘薯的主要病毒之一。本研究利用RT-PCR方法克隆了SPCFV中国4个分离物的外壳蛋白(CP)基因。序列分析表明,cp基因全长900 bp,编码299个氨基酸残基。4个分离物cp基因的核苷酸序列一致性为78.3%~89.9%,推导的氨基酸序列一致性为91.3%~95.7%,存在较大的分子变异。不同分离物CP氨基酸序列N末端的第3-32位氨基酸为多变区。将四川分离物的cp基因克隆到原核表达载体pET-28a(+)上,SDS-PAGE分析表明,经IPTG诱导,cp基因在大肠杆菌BL21(DE3)中得到了高效表达。以表达的蛋白为抗原免疫家兔,制备了SPCFV CP的特异性抗血清。ACP-ELISA检测结果表明,制备的抗血清效价达1∶128 000,可用于田间甘薯样品的检测。  相似文献   

3.
 从云南大理的东方型百合上得到黄瓜花叶病毒分离物(CMV-DL), ELISA检测初步确定为CMV亚组Ⅱ分离物, 设计并合成CMV亚组Ⅱ的特异引物, RT-PCR扩增得到1条约800 nt的特异片段, 经克隆及序列测定, 该片段长828 nt, 包含的外壳蛋白(CP)基因由657 nt组成。将该分离物的cp基因与其它14个CMV分离物进行同源性比较, 在核苷酸水平上与CMV亚组I和亚组Ⅱ的同源性分别为76.8%~78.1%和98.6%~99.2%;在氨基酸水平上与CMV亚组I和亚组Ⅱ的同源性分别为82.0%~84.3%和95.9%~100.0%。结果表明CMV-DL为CMV亚组Ⅱ成员。  相似文献   

4.
 通过RT-PCR扩增了黄瓜绿斑驳花叶病毒(Cucumber green mottle mosaic virus,CGMMV)济南分离物(CGMMV-JN)的基因组片段。序列测定结果表明CGMMV-JN基因组全长6 424核苷酸(nt),5′-和3′-UTR分别为60和176 nt,含有4个ORF,分别编码129 kDa和186 kDa复制酶相关蛋白、29 kDa移动蛋白及17.4 kDa外壳蛋白。CGMMV-JN与另外29个CGMMV分离物全基因组核苷酸序列一致率为90.0%~99.7%。重组分析发现韩国KOM(AF417243)、以色列EC(KF155231)、印度(DQ767631)和我国河北的CHB(KJ658958)4个分离物在RdRp编码区存在重组。系统发育分析结果表明,这些分离物可分成3个组。选择压力分析结果表明cp基因处于正选择,其它基因处于负选择。本文研究的结果为黄瓜绿斑驳花叶病毒的监测及防控提供了理论依据。  相似文献   

5.
 利用电镜和酶联免疫吸附测定法(ELISA)在黑龙江省采集的南瓜病样中检测到西瓜花叶病毒2号(WMV-2)。再利用免疫PCR (IC-PCR)和反转录PCR (RT-PCR)方法,扩增获得其外壳蛋白(CP)基因片段,并克隆到pGEM-T载体中。核苷酸序列测定表明,该分离物CP基因全长为852个核苷酸,编码由284个氨基酸组成的31.8 kDa蛋白。与国外已报道的WMV-2 CP基因相比,其核苷酸序列同源性为92.2%~94.0%,由此推导的氨基酸序列同源性为94.5%~98.1%。与国内2个分离物相比,和山西分离物核苷酸和氨基酸的同源性都达到98.5%,和郑州分离物核苷酸和氨基酸的同源性分别为91.5%和95.0%。  相似文献   

6.
南瓜蚜传黄化病毒湖北和云南分离物的部分序列分析   总被引:2,自引:0,他引:2  
 本研究从带有黄化症状的南瓜叶片中提取总RNA,用RT-PCR方法扩增得到来自湖北和云南的南瓜蚜传黄化病毒(CABYV)2个分离物的1375nt特异性核苷酸片段。分别将PCR产物插入到克隆载体pMD19-T并转化大肠杆菌DH5α,对筛选到的阳性克隆进行了序列测定和分析(GenBank登录号为EF488996和EF488997)。所获片段含有部分复制酶基因576nt,非编码区199nt和完整的CP基因600nt,编码一个由199个氨基酸组成的分子量约为22kDa的结构蛋白。湖北和云南分离物与法国分离物、意大利分离物、西班牙分离物、北京分离物和上海分离物的CP基因核苷酸序列和推测氨基酸序列的同源性分别为93.1%~98.5%和91.4%~98.5%。  相似文献   

7.
 将采自辽宁兴城地区在生长期间具典型卷叶病症状的金星无核(Venus Seedless)葡萄品种休眠枝条,用RT-PCR检测4种葡萄卷叶伴随病毒(Grapevine leafroll-associated viruses,GLRaVs),扩增得到了葡萄卷叶伴随病毒2号(GLRaV-2)和葡萄卷叶伴随病毒3号(GLRaV-3)两种病毒的主要外壳蛋白(major coat protein,CP)基因的完整序列(GenBank登录号分别为FJ786017和FJ786016)。这表明该葡萄植株受到了GLRaV-2和GLRaV-3辽宁分离物(GLRaV-2-LN和GLRaV-3-LN)的复合侵染。根据检测结果,克隆了GLRaV-2-LN基因组3'端CPm (minor capsid protein)、p19(19-kDa protein)和p24(24-kDa protein)基因(GenBank登录号分别为FJ786018、FJ786019和FJ786018)。序列分析表明,GLRaV-3-LN的CP基因全长942 nt,与已报道的国内外其它分离物CP基因全序列相比,核苷酸序列同源性为89.8%~91.8%,由此推导的氨基酸序列同源性为94.9%~97.4%。GLRaV-2-LN的CP、CPm、p19和p24基因全长分别为597 nt、672 nt、486 nt和618 nt。与国外报道的几个分离物的相应蛋白基因全序列相比,核苷酸序列同源性分别为88.3%~100.0%、78.7%~99.9%、75.1%~99.4%和87.5%~99.5%;由此推导的氨基酸序列同源性分别为92.9%~100.0%、89.2%~100.0%、73.9%~99.4%和89.3%~99.0%。  相似文献   

8.
 16个芜菁花叶病毒(Turnip mosaic virus,TuMV)欧亚分离物分别来自奥地利、丹麦、德国、匈牙利、尼泊尔和英国6国。利用免疫捕获反转录PCR(Immunocapture RT-PCR,IC-RT-PCR)对16个分离物的HC-Pro(Helper component pro-teinase)基因进行PCR扩增,扩增产物克隆后进行序列测定,HC-Pro基因序列长度均为1374个核苷酸,编码458个氨基酸。16个分离物的HC-Pro基因核苷酸序列同源性为79.5%~99.8%,所编码的氨基酸同源性为94.1%~99.8%。对16个分离物及GenBank上已报道的其它14个TuMV的HC-Pro基因核苷酸的系统进化树分析表明:在16个TuMV欧亚分离物中,除了来自亚洲的分离物N23属Asian-BR组,其余15个来自欧洲的分离物都属于world-B组,其中分离物H1归属world-wide亚组,另外14个分离物则归属New World亚组。  相似文献   

9.
合肥地区发生的西瓜花叶病的病原鉴定   总被引:1,自引:1,他引:0  
 从合肥市郊区的西瓜病叶上分离出一病毒分离物,该分离物的热钝化温度为60~65℃,稀释终点为10-4~10-5,寄主体外存活期为20~23 d,电镜观察病毒粒子约750 nm×13 nm。参考已发表的小西葫芦黄化花叶病毒(Zucchini yellow mosaic virus,ZYMV) CP基因序列设计引物,RT-PCR扩增得到CP基因片段。将该CP片段克隆到pGEM-3Zf (+)中,测序结果表明,该CP基因全长840 nt,共编码279个氨基酸,与国内报道的ZYMV CP基因的核苷酸序列同源性为83.0%~97.3%,氨基酸序列的同源性为91.8%~99.8%,证明该分离物为ZYMV。  相似文献   

10.
 核苷酸序列分析结果表明,小麦黄色花叶病毒(W YMV)不同分离物的外壳蛋白基因存在一定的差异。邓州分离物CP基因在其31~33nt处均缺失了3个核苷酸,其余分离物与潢川分离物及日本分离物长度一致,均为882nt。不同分离物CP基因核苷酸序列同源性为97.3%~98.9%,由此推导的氨基酸序列同源性为97.6%~99.3%,外壳蛋白N末端的110个氨基酸和C末端的55个氨基酸在各个分离物间是高度保守的。潢川分离物有5个氨基酸与其它5个分离物明显不同。WYMV不同分离物外壳蛋白序列分析结果进一步确认了WYMV与WSSMV为Bymovirus属的2种不同病毒。  相似文献   

11.
Apple chlorotic leaf spot virus (ACLSV) isolates from sand pear (Pyrus pyrifolia) were characterized by analyzing the sequences of their coat protein (CP) genes and serological reactivity of recombinant coat proteins (rCPs). The sequences of CP genes from 22 sand pear isolates showed a high divergence, with 87.3–100% identities at the nucleotide (nt) level and 92.7–100% identities at the amino acid (aa) level. Phylogenetic analysis on the aa sequence of CP showed that the analyzed ACLSV isolates fell into different clusters and all isolates from sand pear were grouped into a large cluster (I) which was then divided into two sub-clusters (A and B). Sodium dodecylsulfate-polyacrylamide gel electrophoresis (SDS-PAGE), western blot and enzyme-linked immunosorbent assay (ELISA) analyses demonstrated that rCPs of eight ACLSV isolates (PP13, PP15-2, PP24, PP43, PE, PP54, PP56 and ACLSV-C) from two sub-clusters had different mobility rates and serological reactivity. The rCPs of five isolates grouped into the sub-cluster A showed stronger reactivity with antibodies against rCPs of a sand pear isolate ACLSV-BD and virions of a Japanese apple isolate P-205 than that with the antibody against a Chinese apple isolate ACLSV-C. Three isolates grouped into the sub-cluster B showed stronger reactivity with the antibody against ACLSV-C. The antigenic determinants of CPs from these eight isolates and isolates ACLSV-BD and P-205 were predicted. These results contribute to a further understanding of molecular diversity of the virus and its implication in serological detection.  相似文献   

12.
 苹果褪绿叶斑病毒(Apple chlorotic leaf spot virus, ACLSV)是引起果树病害的一种重要病毒。ACLSV寄主范围广、发生较普遍,可侵染苹果、梨等仁果类果树和桃、扁桃、李、樱桃、杏等核果类果树,据报道我国梨产区感染ACLSV达80%以上。ACLSV引起植物症状的类型与寄主种类、病毒株系有关。ACLSV为线形病毒科(Betaflexiviridae)、纤毛病毒属(Trichovirus)的代表成员[1]。ACLSV的CP相对比较保守,研究表明不同的ACLSV分离物的CP基因具有序列多样性,存在分子变异[2~5],CP基因分子特性的研究可为ACLSV株系划分提供依据。来源于欧洲、亚洲和北美的桃、李等核果类果树,以及苹果寄主上的ACLSV分离物的分子变异报道较多[2,3,5],来源于梨寄主上的ACLSV分子变异研究较少[4,5]。  相似文献   

13.
Apple chlorotic leaf spot virus (ACLSV) is one of the latent viruses that occur in apple orchards worldwide but usually without visible symptoms. In 2010–2012, a total of 550 apple leaf samples from 12 different major apple-producing areas in Shaanxi, China, were tested by serological assay for ACLSV; the results revealed an infection level of 51.5 %. Because of the known variability in the putative amino acid sequences of the coat protein (CP), and thus the potential for non-detection by serological assay, the molecular variability of isolates of ACLSV collected in Shaanxi was analyzed using PCR and compared with isolates from the rest of the world. Sequences of 504 nt corresponding to 87 % of the CP gene of 12 isolates were acquired by RT-PCR and deposited in GenBank with the accession numbers KF134387–KF134298. Comparisons of the partial CP gene sequences of these 12 isolates as well as isolates previously reported in the world revealed the pairwise identities ranging from 68.9–99.8 % and 73.8–100 % at the nucleotide and amino acid level, respectively. Phylogenetic analysis based on these nucleotide sequences showed that the 72 isolates deposited in GenBank fell into three groups (P205, B6 and Ta Tao 5 Group). Our 12 ACLSV isolates were separated into the P205 and B6 groups, respectively. Multiple alignment analysis of the amino acid sequences of CP revealed that there was a combination of six amino acids at positions 40, 59, 75, 86, 130 and 184 in isolates from each group that could be used to distinguish among the three groups. Two recombination events were identified from all isolates by recombination analysis, and three ACLSV isolates collected in this study participated in these two events. Our results show that molecular variation was present in isolates of ACLSV collected in Shaanxi province and this may reflect introductions of the virus associated with different sources of germplasm.  相似文献   

14.
油菜花叶病毒Wh株系的鉴定   总被引:3,自引:1,他引:3       下载免费PDF全文
依据病毒的寄主植物反应、血清学性质和RNA 3'末端含cp和mp基因1554 bp cDNA片段序列分析,明确一个侵染油菜的烟草花叶病毒属Tobamovirus病毒分离物是油菜花叶病毒(Oileed rape mosaic virus,ORMV)的一个株系,定名为Wh株系.ORMV-Wh侵染油菜、白菜和大白菜等十字花科的作物,初期产生典型明脉症状,对辣椒、番茄和烟草等茄科植物致病性弱;血清学与烟草花叶病毒(Tobacco mosaic virus,TMV)有明显差异.ORMV-Wh mp、cp基因和3'UTR区段大小分别为798、474和235个核苷酸,mp和cp基因有77个核苷酸重叠;与TMV序列同源性在60%以下,与侵染十字花科Tobamovirus属病毒株系序列同源性在80%以上;其中与ORMV的不同株系RMV-CAB、RMV-Sh、YoMV、YoMV-Cg和CTMV-W的同源性在90%以上.  相似文献   

15.
An isolate of PVS, HZ00P1, was obtained from nature infected Solanum tuberosum from Hang-zhou, Zhejiang province. It was primarily identified by DAS-ELISA and host reaction tests. 3' end partial sequence of the virus isolate was cloned. Nucleic acid sequence of the cp gene and deduced cp amino acid se-quence alignments were compared with 16 other isolates registered in GenBank. The results showed that the 17 PVS isolates were divided into two groups. Among them, two Andean isolates were classified to group Ⅱ, HZ00P1 and the other 14 isolates were assigned to group Ⅰ. Compared with other PVS isolates in group Ⅰ, PVS HZ00P1 had 93.1%-98.1% and 95.9%-99.3% homologies of nucleotide sequence and deduced amino acid sequence respectively, whereas its similarities to the group Ⅱwere 81.4%-81.7% and 93.5%-93.9%. A survey of PVS occurrence in Zhejiang province was achieved by RNA spot hybridization (RSH). Among the 30 samples collected from different areas of the province, 26.7% were found to have the infection of PVS. It is concluded that PVS has become a common virus in Zhejiang province.  相似文献   

16.
甘蔗花叶病毒福建分离物外壳蛋白基因的克隆及序列分析   总被引:3,自引:0,他引:3  
 A fujian isolate of Sugarcane mosaic virus named SCMV-FJ was isolated from infected sugarcane. Cloning and sequence analysis of the coat protein gene of this isolate was carried out. A pair of primers was designed and synthesized based on the nucleotide sequences of coat protein genes of sugarcane mosaic viruses reported. The coat protein gene of SCMV-FJ was amplified from the extracted total RNA of the infected sugarcane by using RT-PCR, and cloned into the pMD18-T vector. The sequencing result indicated that the cloned segment included a 1137 bp open reading frame(ORF) and a 228 bp 3' untranslated region, in which the ORF comprised the whole coat protein and part of the nuclear inclusion b. The nucleotide and the deduced amino acid sequences of the coat protein gene were compared with those of the other isolates or strains of SCMV subgroup reported in GenBank. The result showed that it shares 56.8%-97.1% and 55.3%-99.4% homology in nucleotide and the putative amino acid sequences, respectively, with the highest amino acid homology of 99.4% with SCMV-D. Thus it was identified as a SCMV-D. This experiment provided a rapid, sensitive and relatively inexpensive method for RT-PCR detection of SCMV. At the same time, the cloning of SCMV-FJ coat protein gene provided the foundation for plant gene engineering against SCMV.  相似文献   

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