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1
Construction of tobacco mosaic virus subgenomic replicons that are replicated and spread systemically in tobacco plants.构建在烟草植株中可进行复制并系统传播的烟草花叶病毒亚基因组复制子。
Virology. 1991 Sep;184(1):277-89. doi: 10.1016/0042-6822(91)90844-2.
2
In vivo complementation of infectious transcripts from mutant tobacco mosaic virus cDNAs in transgenic plants.在转基因植物中对来自突变烟草花叶病毒cDNA的感染性转录本进行体内互补。
Virology. 1991 Mar;181(1):109-17. doi: 10.1016/0042-6822(91)90475-q.
3
A tobacco mosaic virus-hybrid expresses and loses an added gene.一种烟草花叶病毒杂交种表达并丢失了一个添加的基因。
Virology. 1989 Sep;172(1):285-92. doi: 10.1016/0042-6822(89)90130-x.
4
Conundrum of the lack of defective RNAs (dRNAs) associated with tobamovirus Infections: dRNAs that can move are not replicated by the wild-type virus; dRNAs that are replicated by the wild-type virus do not move.与烟草花叶病毒感染相关的缺乏缺陷RNA(dRNAs)的难题:能够移动的dRNAs不能被野生型病毒复制;能被野生型病毒复制的dRNAs不能移动。
J Virol. 2001 Jun;75(12):5518-25. doi: 10.1128/JVI.75.12.5518-5525.2001.
5
Expression of tobacco mosaic virus RNA in transgenic plants.烟草花叶病毒RNA在转基因植物中的表达。
Mol Gen Genet. 1988 Mar;211(3):520-5. doi: 10.1007/BF00425710.
6
Replication, stability, and gene expression of tobacco mosaic virus mutants with a second 30K ORF.具有第二个30K开放阅读框的烟草花叶病毒突变体的复制、稳定性及基因表达
Virology. 1990 Mar;175(1):30-40. doi: 10.1016/0042-6822(90)90183-r.
7
Systemic expression of a bacterial gene by a tobacco mosaic virus-based vector.利用基于烟草花叶病毒的载体进行细菌基因的系统表达。
Proc Natl Acad Sci U S A. 1991 Aug 15;88(16):7204-8. doi: 10.1073/pnas.88.16.7204.
8
Insertion of sequences containing the coat protein subgenomic RNA promoter and leader in front of the tobacco mosaic virus 30K ORF delays its expression and causes defective cell-to-cell movement.在烟草花叶病毒30K开放阅读框前插入含有外壳蛋白亚基因组RNA启动子和前导序列的片段会延迟其表达,并导致细胞间运动缺陷。
Virology. 1990 Jan;174(1):145-57. doi: 10.1016/0042-6822(90)90063-w.
9
Specific sequence changes in the 5'-terminal region of the genome of satellite tobacco mosaic virus are required for adaptation to tobacco mosaic virus.烟草卫星花叶病毒基因组5'-末端区域的特定序列变化是适应烟草花叶病毒所必需的。
J Gen Virol. 1998 Apr;79 ( Pt 4):905-13. doi: 10.1099/0022-1317-79-4-905.
10
Plants transformed with a tobacco mosaic virus nonstructural gene sequence are resistant to the virus.用烟草花叶病毒非结构基因序列转化的植物对该病毒具有抗性。
Proc Natl Acad Sci U S A. 1990 Aug;87(16):6311-5. doi: 10.1073/pnas.87.16.6311.

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Expanding Possibilities for Foreign Gene Expression by Cucumber Green Mottle Mosaic Virus Genome-Based Bipartite Vector System.基于黄瓜绿斑驳花叶病毒基因组的二分载体系统扩展外源基因表达的可能性
Plants (Basel). 2024 May 19;13(10):1414. doi: 10.3390/plants13101414.
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A Survey of Virus Recombination Uncovers Canonical Features of Artificial Chimeras Generated During Deep Sequencing Library Preparation.一项病毒重组研究揭示了深度测序文库制备过程中产生的人工嵌合体的典型特征。
G3 (Bethesda). 2018 Mar 28;8(4):1129-1138. doi: 10.1534/g3.117.300468.
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Conundrum of the lack of defective RNAs (dRNAs) associated with tobamovirus Infections: dRNAs that can move are not replicated by the wild-type virus; dRNAs that are replicated by the wild-type virus do not move.与烟草花叶病毒感染相关的缺乏缺陷RNA(dRNAs)的难题:能够移动的dRNAs不能被野生型病毒复制;能被野生型病毒复制的dRNAs不能移动。
J Virol. 2001 Jun;75(12):5518-25. doi: 10.1128/JVI.75.12.5518-5525.2001.
4
Replication of tobacco mosaic virus RNA.烟草花叶病毒RNA的复制
Philos Trans R Soc Lond B Biol Sci. 1999 Mar 29;354(1383):613-27. doi: 10.1098/rstb.1999.0413.
5
Comparison of the replication of positive-stranded RNA viruses of plants and animals.植物和动物正链RNA病毒复制的比较。
Adv Virus Res. 1996;47:159-251. doi: 10.1016/s0065-3527(08)60736-8.
6
Genetic elements of plant viruses as tools for genetic engineering.植物病毒的遗传元件作为基因工程工具
Microbiol Rev. 1995 Dec;59(4):548-78. doi: 10.1128/mr.59.4.548-578.1995.
7
Homologous RNA recombination in brome mosaic virus: AU-rich sequences decrease the accuracy of crossovers.雀麦花叶病毒中的同源RNA重组:富含AU的序列降低了交叉的准确性。
J Virol. 1996 Jan;70(1):415-26. doi: 10.1128/JVI.70.1.415-426.1996.
8
Cis-preferential replication of the turnip yellow mosaic virus RNA genome.芜菁黄花叶病毒RNA基因组的顺式偏好性复制。
Proc Natl Acad Sci U S A. 1993 Jul 1;90(13):6095-9. doi: 10.1073/pnas.90.13.6095.
9
Efficient system of homologous RNA recombination in brome mosaic virus: sequence and structure requirements and accuracy of crossovers.雀麦花叶病毒中同源RNA重组的高效系统:序列、结构要求及交叉准确性
J Virol. 1995 Jan;69(1):131-40. doi: 10.1128/JVI.69.1.131-140.1995.
10
Genetic recombination in brome mosaic virus: effect of sequence and replication of RNA on accumulation of recombinants.雀麦花叶病毒中的基因重组:RNA序列和复制对重组体积累的影响。
J Virol. 1992 Nov;66(11):6824-8. doi: 10.1128/JVI.66.11.6824-6828.1992.

本文引用的文献

1
cDNA cloning of the complete genome of tobacco mosaic virus and production of infectious transcripts.烟草花叶病毒全基因组 cDNA 克隆及传染性转录本的制备。
Proc Natl Acad Sci U S A. 1986 Mar;83(6):1832-6. doi: 10.1073/pnas.83.6.1832.
2
Function of the 30 kd protein of tobacco mosaic virus: involvement in cell-to-cell movement and dispensability for replication.烟草花叶病毒 30kD 蛋白的功能:参与细胞间运动和复制的非必需性。
EMBO J. 1987 Sep;6(9):2557-63. doi: 10.1002/j.1460-2075.1987.tb02544.x.
3
Expression of bacterial chloramphenicol acetyltransferase gene in tobacco plants mediated by TMV-RNA.烟草花叶病毒RNA介导细菌氯霉素乙酰转移酶基因在烟草植株中的表达。
EMBO J. 1987 Feb;6(2):307-11. doi: 10.1002/j.1460-2075.1987.tb04755.x.
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The isolation of defective tobacco mosaic virus strains.有缺陷烟草花叶病毒株的分离
Proc Natl Acad Sci U S A. 1962 Oct 15;48(10):1845-51. doi: 10.1073/pnas.48.10.1845.
5
Multiple structurally related defective-interfering RNAs formed during undiluted passages of Semliki forest virus.在未稀释传代的Semliki森林病毒过程中形成了多种结构相关的缺陷干扰RNA。
Virology. 1981 Sep;113(2):686-97. doi: 10.1016/0042-6822(81)90197-5.
6
Extreme ends of the genome are conserved and rearranged in the defective interfering RNAs of Semliki Forest virus.在塞姆利基森林病毒的缺陷干扰RNA中,基因组的两端是保守的且发生了重排。
J Mol Biol. 1982 Apr 25;156(4):731-48. doi: 10.1016/0022-2836(82)90139-5.
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The origins of defective interfering particles of the negative-strand RNA viruses.负链RNA病毒缺陷干扰颗粒的起源
Cell. 1981 Oct;26(2 Pt 2):145-54. doi: 10.1016/0092-8674(81)90298-1.
8
Nucleotide sequence of tobacco mosaic virus RNA.烟草花叶病毒RNA的核苷酸序列。
Proc Natl Acad Sci U S A. 1982 Oct;79(19):5818-22. doi: 10.1073/pnas.79.19.5818.
9
Defective interfering Semliki Forest virus populations are biologically and physically heterogeneous.缺陷干扰性塞姆利基森林病毒群体在生物学和物理性质上是异质的。
J Gen Virol. 1984 Aug;65 ( Pt 8):1273-83. doi: 10.1099/0022-1317-65-8-1273.
10
Does the higher order structure of the influenza virus ribonucleoprotein guide sequence rearrangements in influenza viral RNA?流感病毒核糖核蛋白的高级结构是否引导流感病毒RNA中的序列重排?
Cell. 1983 Sep;34(2):619-27. doi: 10.1016/0092-8674(83)90394-x.

构建在烟草植株中可进行复制并系统传播的烟草花叶病毒亚基因组复制子。

Construction of tobacco mosaic virus subgenomic replicons that are replicated and spread systemically in tobacco plants.

作者信息

Raffo A J, Dawson W O

机构信息

Department of Plant Pathology, University of California, Riverside 92521.

出版信息

Virology. 1991 Sep;184(1):277-89. doi: 10.1016/0042-6822(91)90844-2.

DOI:10.1016/0042-6822(91)90844-2
PMID:1871972
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7131223/
Abstract

Two tobacco mosaic virus (TMV)-derived replicons, created by deletion of most of the 126/183-kDa open reading frame (ORF), replicated and systemically invaded tobacco plants when supported by wild type TMV. One RNA replicon contained an internal direct repeat of 476 nucleotides from the 3' end of the 30-kDa ORF. Although this RNA was replicated, most of the progeny were heterogeneous in size and smaller than the original transcript. A second TMV-derived RNA replicon, without any internally repeated sequences and containing a deletion of the 5' portion of the 30-kDa ORF as well as most of the 126/183-kDa ORF, was created and coinoculated with wild type TMV as helper. This RNA also was replicated efficiently and systemically invaded tobacco plants. An examination of the sequences of cDNA clones obtained after PCR amplification of the progeny population of this RNA replicon demonstrated that the observed size heterogeneity was due to deletions and insertions adjacent to the artificially created deletion junction. These data demonstrate that a TMV infection is capable of supporting an artificially created RNA replicon, similar to defective interfering RNAs or satellites. However, these dependent RNAs were replicated without noticeably interfering with wild type TMV symptoms or replication.

摘要

通过缺失大部分126/183-kDa开放阅读框(ORF)构建的两种烟草花叶病毒(TMV)衍生复制子,在野生型TMV的支持下,能够复制并系统侵染烟草植株。一种RNA复制子包含来自30-kDa ORF 3'端的476个核苷酸的内部直接重复序列。尽管这种RNA能够复制,但大多数子代在大小上是异质的,并且比原始转录本小。构建了第二种TMV衍生的RNA复制子,其没有任何内部重复序列,并且缺失了30-kDa ORF的5'部分以及大部分126/183-kDa ORF,并与野生型TMV作为辅助病毒进行共接种。这种RNA也能高效复制并系统侵染烟草植株。对该RNA复制子子代群体进行PCR扩增后获得的cDNA克隆序列检查表明,观察到的大小异质性是由于与人工创建的缺失连接处相邻的缺失和插入所致。这些数据表明,TMV感染能够支持人工创建的RNA复制子,类似于缺陷干扰RNA或卫星RNA。然而,这些依赖RNA在复制时并未明显干扰野生型TMV的症状或复制。