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通过测定南瓜褪绿黄化病毒的完整RNA基因组序列所揭示的,联体病毒属内的进一步变异性。

Further variability within the genus Crinivirus, as revealed by determination of the complete RNA genome sequence of Cucurbit yellow stunting disorder virus.

作者信息

Aguilar Juan M, Franco Maribel, Marco Cristina F, Berdiales Benjamín, Rodriguez-Cerezo Emilio, Truniger Verónica, Aranda Miguel A

机构信息

Estación Experimental 'La Mayora', Consejo Superior de Investigaciones Científicas, 29750 Algarrobo-Costa, Málaga, Spain.

Centro Nacional de Biotecnología (CNB), Consejo Superior de Investigaciones Científicas, Campus Universidad Autónoma, 28049 Cantoblanco, Madrid, Spain.

出版信息

J Gen Virol. 2003 Sep;84(Pt 9):2555-2564. doi: 10.1099/vir.0.19209-0.

Abstract

The complete nucleotide (nt) sequences of genomic RNAs 1 and 2 of Cucurbit yellow stunting disorder virus (CYSDV) were determined for the Spanish isolate CYSDV-AlLM. RNA1 is 9123 nt long and contains at least five open reading frames (ORFs). Computer-assisted analyses identified papain-like protease, methyltransferase, RNA helicase and RNA-dependent RNA polymerase domains in the first two ORFs of RNA1. This is the first study on the sequences of RNA1 from CYSDV. RNA2 is 7976 nt long and contains the hallmark gene array of the family Closteroviridae, characterized by ORFs encoding a heat shock protein 70 homologue, a 59 kDa protein, the major coat protein and a divergent copy of the coat protein. This genome organization resembles that of Sweet potato chlorotic stunt virus (SPCSV), Cucumber yellows virus (CuYV) and Lettuce infectious yellows virus (LIYV), the other three criniviruses sequenced completely to date. However, several differences were observed. The most striking novel features of CYSDV compared to SPCSV, CuYV and LIYV are a unique gene arrangement in the 3'-terminal region of RNA1, the identification in this region of an ORF potentially encoding a protein which has no homologues in any databases, and the prediction of an unusually long 5' non-coding region in RNA2. Additionally, the CYSDV genome resembles that of SPCSV in having very similar 3' regions in RNAs 1 and 2, although for CYSDV similarity in primary structures did not result in predictions of equivalent secondary structures. Overall, these data reinforce the view that the genus Crinivirus contains considerable genetic variation. Additionally, several subgenomic RNAs (sgRNAs) were detected in CYSDV-infected plants, suggesting that generation of sgRNAs is a strategy used by CYSDV for the expression of internal ORFs.

摘要

测定了葫芦科黄化矮缩病毒(CYSDV)西班牙分离株CYSDV - AlLM的基因组RNA1和RNA2的完整核苷酸(nt)序列。RNA1长9123 nt,包含至少五个开放阅读框(ORF)。计算机辅助分析在RNA1的前两个ORF中鉴定出木瓜蛋白酶样蛋白酶、甲基转移酶、RNA解旋酶和RNA依赖性RNA聚合酶结构域。这是关于CYSDV的RNA1序列的首次研究。RNA2长7976 nt,包含了长线形病毒科的标志性基因阵列,其特征在于编码热休克蛋白70同源物、一个59 kDa蛋白、主要外壳蛋白和外壳蛋白的一个不同拷贝的ORF。这种基因组结构类似于甘薯褪绿矮缩病毒(SPCSV)、黄瓜黄化病毒(CuYV)和生菜传染性黄化病毒(LIYV),这是迄今另外三种已完全测序的长线形病毒。然而,观察到了一些差异。与SPCSV、CuYV和LIYV相比,CYSDV最显著的新特征是RNA1 3'-末端区域独特的基因排列、在该区域鉴定出一个可能编码在任何数据库中都没有同源物的蛋白质的ORF,以及预测RNA2中有一个异常长的5'非编码区。此外,CYSDV基因组在RNA1和RNA2的3'区域具有非常相似之处,这一点与SPCSV类似,尽管对于CYSDV而言,一级结构的相似性并未导致预测出等效的二级结构。总体而言,这些数据强化了长线形病毒属包含相当大遗传变异的观点。此外,在CYSDV感染的植物中检测到了几种亚基因组RNA(sgRNA),这表明sgRNA的产生是CYSDV用于表达内部ORF的一种策略。

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