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1.
菜豆金色花叶病毒属(Begomovirus)病毒是热带亚热带地区多种作物的重要病原,杂草作为该属病毒的中间寄主在病害发生流行中具有重要作用。本研究通过克隆、测序和生物信息学分析,对3株具有曲叶症状的凹头苋(Amaranthus lividus)进行菜豆金色花叶病毒属病毒的分离分析。从这些凹头苋中共分离到2种菜豆金色花叶病毒属病毒和3种beta卫星。序列分析显示,其中一种病毒与云南番茄黄化曲叶病毒相似性最高(96%),另一种与中国胜红蓟黄脉病毒相似性最高(96.5%或91%)。Beta卫星的分析显示,其中一种与云南番茄黄化曲叶beta卫星相似性最高(94.3%),另一种与赛葵曲叶beta卫星相似性最高(92%),最后一种与中国番茄曲叶beta卫星相似性最高(91%)。重组分析表明,分离物YN4331-69是一个重组病毒,是由中国胜红蓟黄脉病毒YN4326-60和一个尚未发现的菜豆金色花叶病毒属病毒重组形成。这是首次报道凹头苋被不同的菜豆金色花叶病毒属病毒及其伴随的beta卫星侵染,表明凹头苋是一个适宜该属病毒的中间寄主。  相似文献   

2.
双生病毒是一类在全球范围内危害严重的单链环状DNA病毒。本研究从2017年采自云南的胜红蓟样品中(YN2017)获得了一条菜豆金色花叶病毒属病毒和一条β卫星的全基因组序列。该双生病毒的全长序列与烟草曲茎病毒的相似性最高,为99.60%,确定为烟草曲茎病毒的分离物。YN2017β卫星与中国胜红蓟黄脉β卫星的同源性最高,为90.8%。进一步分析发现,该β卫星的卫星保守区域(SCR)至富含腺嘌呤区(A-rich区)之间约1 kb的序列与中国胜红蓟黄脉β卫星相应序列的相似性高达97.2%;其包含的A-rich区上游与SCR之间约300 bp的序列与中国胜红蓟黄脉β卫星相应序列的相似性仅为70.2%,而与烟草曲茎β卫星相应序列的相似性最高,为97.3%。重组分析发现,所分离的β卫星是由中国胜红蓟黄脉β卫星和烟草曲茎β卫星重组产生。这是首次在中国发现由不同的β卫星重组产生的β卫星分子。  相似文献   

3.
菜豆金色花叶病毒属病毒是一类在全球热带及亚热带地区造成严重经济损失的植物病毒,田间杂草是这类病毒重要的中间寄主。 本研究从云南省玉溪市采集了表现黄脉的青蒿植株,通过PCR扩增、克隆及测序从样品中获得两条菜豆金色花叶病毒属病毒DNA-A全基因组序列,分别为YN6393-23和YN6393-27,其全长均为2 739 bp,相似性为100%。序列分析发现,YN6393-23和YN6393-27的核苷酸序列与烟草曲茎病毒Tobacco curly shoot virus(TbCSV)的分离物YN4584的核苷酸序列相似性最高,为99.45%。根据国际病毒分类委员会对菜豆金色花叶病毒属病毒种的分类标准,全基因组序列相似性大于91%则为同种病毒,表明此病毒分离物为烟草曲茎病毒的一个分离物。这是菜豆金色花叶病毒属病毒侵染青蒿植株的首次报道。  相似文献   

4.
 为明确云南雾水葛表现叶片黄化、花叶等症状的植株是否被菜豆金色黄花叶病毒属病毒侵染,本研究通过PCR扩增、克隆测序及核苷酸序列特征分析,确定样品中病原种类及其系统进化关系。结果显示,该病样中检测到雾水葛金色花叶病毒(pouzolzia golden mosaic virus,PouGMV),该分离物全基因组具有典型的菜豆金色花叶病毒属单组分病毒结构特征,与来自越南的Vietam分离物(KC857508)亲缘关系最近,相似性最高达94.6%,与PouGMV其他分离物亲缘关系相对较远,相似性在88.9%~93.2%之间。病毒alpha卫星分子检测及分析显示,该样品中检测到的alpha卫星分子,其全长核苷酸序列与云南番茄黄化曲叶alpha卫星(tomato yellow leaf curl Yunnan alphasatellite,TYLCYnA)相似性最高,达到92.3%。研究结果表明云南雾水葛中分离到PouGMV,且异源伴随TYLCYnA卫星分子。这是雾水葛金色花叶病毒伴随alpha卫星分子侵染雾水葛的首次报道。  相似文献   

5.
为明确假酸浆Nicandra physalodes叶片黄化、皱缩症状是否由菜豆金色花叶病毒属病毒侵染引起,本研究利用分子检测方法和生物信息学技术鉴定了假酸浆样品中的病毒种类。从采集的病样中克隆并获得了2条菜豆金色花叶病毒属病毒DNA-A全序列和1条beta卫星全序列,经全序列分析发现,该双生病毒的两条DNA-A全序列与泰国番茄黄化曲叶病毒(tomato yellow leaf curl Thailand virus, TYLCTHV)云南分离物TYLCTHV-YN1732一致性最高,达99.3%,亲缘关系较近;beta卫星的全序列与云南番茄曲叶beta卫星(tomato leaf curl Yunnan betasatellite, TLCYnB)的分离物YN5230一致性最高,达99.3%,亲缘关系较近。重组分析显示,假酸浆上分离的TYLCTHV-YN5735-12是一个重组病毒,有两个重组事件,一个主要发生在AV1的编码区,由中国番茄黄化曲叶病毒(tomato yellow leaf curl China virus, TYLCCNV)和广西大戟曲叶病毒(euphorbia lea...  相似文献   

6.
为明确水茄Solanum torvum植株叶片邹缩、褪绿是否由菜豆金色花叶病毒属病毒侵染引起,从云南省西双版纳傣族自治州田间采集具有疑似感染症状的水茄植株叶片样品,应用菜豆金色花叶病毒属病毒简并引物和特异性引物进行PCR扩增、克隆和测序,通过生物信息软件分析比较其核苷酸序列特征,并对其进行系统发育分析。结果显示,从采集的疑似病叶中共克隆获得了5条菜豆金色花叶病毒属病毒DNA-A全序列和3条DNA-B全序列,经全序列分析发现,侵染水茄的2种菜豆金色花叶病毒属病毒分离物分别属于中国南瓜曲叶病毒(squash leaf curl China virus,SLCCNV)和野茼蒿黄脉病毒(Crassocephalum yellow vein virus,CraYVV)。SLCCNV水茄分离物的基因组具有典型的菜豆金色花叶病毒属病毒双组分结构特征,与来自泰国的SLCCNV分离物(AB330078)亲缘关系最近,相似性最高达到99.0%;CraYVV水茄分离物的基因组具有典型的菜豆金色花叶病毒属病毒单组分结构特征,与来自云南省景洪市的CraYVV分离物(EF165536)亲缘关系最近,相似性最高达到97.6%。表明水茄是这2种菜豆金色花叶病毒属病毒的新寄主,并首次发现双组分和单组分菜豆金色花叶病毒属病毒可复合侵染水茄。  相似文献   

7.
为了明确四川米易赛葵上的双生病毒种类及复合侵染情况,基于滚环扩增PCR(RCA-PCR)技术,利用双生病毒DNA-A、DNA-B及卫星DNA的通用引物对四川米易表现黄脉症状的12个赛葵样品进行了检测,并对其序列进行分析。双生病毒的检出率高达92%;共检出云南赛葵黄脉病毒(Malvastrum yellow vein Yunnan virus,MYVYNV)、赛葵黄脉病毒(Malvastrum yellow vein virus,MYVV)及中国番茄黄化曲叶病毒(Tomato yellow leaf curl China virus,TYLCCNV)等3种双生病毒,复合侵染率高达67%;11个阳性样品中共检测到两类卫星DNAβ分子,分别与MYVYNV伴随的DNAβ(MYVYNB-[Y160],98.4%~98.7%)和MYVV伴随的DNAβ(MYVB-[Y197],98.5%~98.7%)的序列相似性最高;未扩增到DNA-B及DNAα分子。表明病毒DNA-A与卫星DNAβ以病害复合体形式存在,且DNAβ可伴随异源辅助病毒。  相似文献   

8.
侵染垂花悬铃花的木尔坦棉花曲叶病毒分子特征研究   总被引:2,自引:0,他引:2  
 垂花悬铃花曲叶病是近期在广东发现的一种新病害,病株表现为叶片向上卷曲,叶脉肿大,叶脉变深绿色等症状。PCR检测结果显示, 该病样中均存在菜豆金色花叶病毒属病毒。基因克隆及序列分析结果表明,该病毒分离物(GD11)DNA-A全长为2 737 nt,具有菜豆金色花叶病毒属病毒基因组典型特征,为闭合环状单链DNA,编码6个ORFs;该序列与木尔坦棉花曲叶病毒(CLCuMV)各分离物序列的相似性均大于89.0%,其中与G6、Okra06及GX1等分离物序列的相似性大于99.0%。该病毒分离物也伴有卫星DNA β分子,其全长为1 348 nt,与CLCuMV各分离物的DNA β序列相似性大于85.0%,其中与G6、Okra06及GX1等DNA β的序列相似性均大于99.0%。因此,侵染广东垂花悬铃花的病毒分离物属于CLCuMV,且与入侵我国的朱槿分离物G6、黄秋葵分离物Okra06及棉花分离物GX1亲缘关系很近。本文首次报道了CLCuMV及其卫星β复合侵染垂花悬铃花。  相似文献   

9.
2014年春季,在湖北省武汉市发现种植的番茄表现植株矮缩,叶片上卷,叶缘黄化等症状。PCR检测结果显示,所有采集的病样中均存在菜豆金色花叶病毒属病毒。进一步通过滚环扩增方法获得了该病毒的湖北分离物HB01的全基因组。基因克隆及序列分析结果表明,该病毒基因组全长为2 781nt,与已报道的番茄黄化曲叶病毒(TYLCV)各分离物同源性在89.0%以上,而与来自中国不同地区的TYLCV分离物的同源率均在97.0%以上。因此,HB01属于TYLCV的一个分离物。  相似文献   

10.
新疆番茄黄化曲叶病毒检测及其DNA-A基因组序列分析   总被引:2,自引:0,他引:2  
2012年,在新疆喀什、吐鲁番和伊犁地区发现番茄、辣椒、茄子、曼陀罗、仙客来、一品红和红掌等7种植物表现矮化、叶片黄化、卷曲等疑似双生病毒的感病症状。检测结果表明:以上7种植物均能被番茄黄化曲叶病毒 (Tomato yellow leaf curl virus, TYLCV)侵染。本试验共获得8个TYLCV病毒分离物,分别为番茄分离物KSCTo4、KSCTo16、KZPTo18、KYCTo20,辣椒分离物KSCPe6、KSCPe7,茄子分离物KSCEg1,曼陀罗分离物KSCDa。8个分离物全部序列均具有菜豆金色花叶病毒属Begomovirus病毒基因组典型特征,分离物在不同寄主上的序列差异较小,序列间相似性达99.0%~99.8%,与中国已报道的TYLCV分离物SH3、ZJ6、SD2A 7、HNSQ、HBBD的相似性达98.6%~99.5%。  相似文献   

11.
为明确木薯(Manihot esculenta Crantz)植株叶片皱缩、畸形是否由菜豆金色花叶病毒属病毒侵染引起,从云南省红河州田间采集具有疑似感染症状的木薯植株叶片样品,应用菜豆金色花叶病毒属病毒简并引物、种专化性引物及卫星分子引物进行PCR扩增、克隆,通过测序分析其核苷酸序列特征并对其进行系统进化分析.结果 显...  相似文献   

12.
Xiong Q  Fan S  Wu J  Zhou X 《Phytopathology》2007,97(4):405-411
ABSTRACT Ageratum conyzoides plants exhibiting yellow vein symptoms, collected near Haikou, Hainan Province, China, contained begomoviral DNA-A-like molecules. The complete sequences of the molecules from two samples, Hn2 and Hn2-19, were shown to consist of 2,768 and 2,748 nucelotides (nt), respectively. These sequences have more than 97% nucleotide sequence identity, but less than 86% identity with other reported begomovirus sequences. In line with the taxonomic convention for begomoviruses, Hn2 and Hn2-19 are therefore considered to represent isolates of a distinct begomovirus species, for which the name Ageratum yellow vein China virus (AYVCNV) is proposed. Sequence alignment shows AYVCNV has arisen by recombination among viruses related to Ageratum yellow vein virus, Papaya leaf curl China virus, and an unidentified begomovirus. Southern blot analyses revealed that all plants sampled contained molecules resembling DNAbeta. DNAbeta molecules from three samples were 1,323 or 1,324 nt long and had >98% sequence identity but <81% identity with previously reported DNAbeta sequences. Infectious clones of Hn2 and its associated DNAbeta were constructed and agroinoculated to plants. Hn2 alone caused sporadic asymptomatic systemic infection of Nicotiana benthamiana, N. glutinosa, Lycopersicon esculentum, Petunia hybrida, and A. conyzoides but its accumulation was much enhanced in plants co-inoculated with DNAbeta. The co-inoculated N. benthamiana, N. glutinosa, P. hybrida, and L. esculentum plants developed leaf curling or leaf crinkling symptom; those in A. conyzoides were typical of ageratum yellow vein disease. When the DNAbeta molecules associated with four other Chinese begomoviruses were coinoculated with Hn2 to N. benthamiana and N. glutinosa, the DNAbeta molecules were replicated, and the plants developed systemic symptoms of types that were specific for each DNAbeta. This illustrates that there is less specific interaction between monopartite begomovirus and DNAbeta than between the DNA-A and DNA-B of begomoviruses with bipartite genomes.  相似文献   

13.
Leaf samples of Cucurbita pepo with yellow mosaic disease symptoms were collected in 2012. Rolling circle amplification and PCR amplification with begomovirus-specific primers confirmed the presence of an Old World bipartite begomovirus, an alphasatellite and a betasatellite. Molecular analysis of full-length sequences showed that Tomato leaf curl New Delhi virus (DNA-A) is associated with its cognate DNA-B, Papaya leaf curl betasatellite and a novel alphasatellite. To the best of our knowledge, this is the first report of an alphasatellite and a betasatellite associated with a bipartite begomovirus.  相似文献   

14.
乔蕊  周雪平  李方方 《植物保护》2024,50(3):266-271
2022年9月在广东省罗定市发现了叶片表现为黄色网状症状的胜红蓟病株。为了明确胜红蓟叶片的黄脉症状是否由双生病毒感染引起, 本研究使用检测双生病毒的简并引物PA/PB进行PCR扩增, 获得约500 bp的片段。根据该序列设计特异性引物扩增并且克隆得到了病毒DNA-A的全基因组序列。通过BLAST比对发现, 获得的DNA-A与中国胜红蓟黄脉病毒(ageratum yellow vein China virus, AYVCNV)海南分离物(OQ421190)的DNA-A的相似性最高, 相似度为98.11%。系统进化树分析显示, 获得的病毒DNA-A与海南分离物(OQ421190)在同一分支, 说明具有较近的亲缘关系。以上研究结果表明侵染胜红蓟的病毒是AYVCNV的分离物。这是关于AYVCNV在广东地区侵染胜红蓟的首次报道, 可为当地病毒病的防控提供参考。  相似文献   

15.
Leaf samples (five) from brinjal/eggplant fields showing upward leaf curling symptoms were collected from Varanasi, Uttar Pradesh state, India. The full length genome of begomovirus and associated betasatellite were amplified by PCR, cloned and sequenced. Sequences of homologous DNA-A and its betasatellite in all samples were the same. The samples failed to amplify DNA-B, suggesting that the begomovirus associated with leaf curl disease of eggplant was monopartite. The complete genome (homologous of DNA-A) consists of 2758 nts, whereas the betasatellite has 1352 nts and the genome organization is typical of Old World begomoviruses. The sequence analysis showed high levels of nucleotide sequence identity (79.8–91.7%) of virus with Tomato leaf curl Joydebpur virus (ToLCJoV) infecting chilli in India, suggesting it as a strain of ToLCJoV based on the current ICTV taxonomic criteria for begomovirus strain demarcation. However, the betasatellite associated was identified as a variant of Tomato leaf curl Bangladesh betasatellite (ToLCBDB), with which it shared highest sequence identity of 84.7–94.8%. Phylogenetic analyses of the genome further supported the above results. The recombination analyses of both genome and betasatellite showed that a major part of genome sequences are derived from begomoviruses (ToLCJoV, ChiLCuV, AEV) infecting chilli, tomato, ageratum and betasatellite from PaLCuB as the foremost parents in evolution, suggesting this as a new recombinant virus strain. This is the first report of a monopartite begomovirus and a betasatellite molecule associated with the leaf curl disease of eggplant.  相似文献   

16.
Three begomovirus isolates were obtained from tomato plants showing leaf curl symptoms in Guangxi province of China. Typical begomovirus DNA components representing the three isolates (GX-1, GX-2 and GX-3) were cloned and their full-length sequences were determined to be 2752 nucleotides. Nucleotide identities among the three viral sequences were 98.9–99.7%, but all shared <86.7% nucleotide sequence identity with other reported begomoviruses. The sequence data indicated that GX-1, GX-2 and GX-3 are isolates of a distinct begomovirus species for which the name Tomato leaf curl Guangxi virus (ToLCGXV) is proposed. Further analysis indicated that ToLCGXV probably originated through recombination among viruses related to Ageratum yellow vein virus, Tomato leaf curl China virus and Euphorbia leaf curl virus. PCR and Southern blot analyses demonstrated that isolates GX-1 and GX-2 were associated with DNAβ components, but not isolate GX-3. Sequence comparisons revealed that GX-1 and GX-2 DNAβ components shared the highest sequence identity (86.2%) with that of Tomato yellow leaf curl China virus (TYLCCNV). An infectious construct of ToLCGXV isolate GX-1 (ToLCGXV-GX) was produced and determined to be highly infectious in Nicotiana benthamiana, N. glutinosa, tobacco cvs. Samsun and Xanthi, tomato and Petunia hybrida plants inducing leaf curl and stunting symptoms. Co-inoculation of tomato plants with ToLCGXV-GX and TYLCCNV DNAβ resulted in disease symptoms similar to that caused by ToLCGXV-GX alone or that observed in infected field tomato plants.  相似文献   

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