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致埃及伊蚊幼虫的白纹伊蚊细小病毒(AaPV)的全核苷酸序列和基因组结构

Complete nucleotide sequence and genomic organization of the Aedes albopictus parvovirus (AaPV) pathogenic for Aedes aegypti larvae.

作者信息

Boublik Y, Jousset F X, Bergoin M

机构信息

Unité de Virologie Moléculaire, INRA-UA CNRS 1184, Saint Christol-lez-Alès, France.

出版信息

Virology. 1994 May 1;200(2):752-63. doi: 10.1006/viro.1994.1239.

Abstract

We have cloned the replicative form of the Aedes albopictus parvovirus (AaPV) genome and determined the complete sequence of the viral strand. The sequence is 4176 nucleotides (nt) in length. The first 134 nt at the 3' end and the terminal 182 nt at the 5' end of the viral (minus) strand can both generate by folding and annealing of complementary sequences a typical terminal T-shaped structure although they differ in their sequence. Three large open reading frames (ORFs), each one in a different frame, are present between map units (mu) 8.0 and 87.6 on the complementary (plus) strand. The left, mid (located within the left ORF), and right ORFs have potential coding capacities of 95, 41, and 40 kDa, respectively. Two potential promoters were found upstream from the left and right ORFs, at mu 7.2 and mu 60.0, respectively. Computer search for sequence homologies suggests that the left ORF very likely encodes the nonstructural NS-1 protein since it contains the highly conserved NTP-binding amino acid (aa) domain (GKRN sequence) of all parvoviruses. Comparison with other invertebrate and vertebrate parvoviruses revealed that the AaPV genome shares 77.3% nt sequence homology and between 73 and 78% aa sequence homologies with the Aedes aegypti densonucleosis virus (Aedes DNV). Organization of both genomes was similar except that no potential ORF was found on the minus strand of AaPV. The difference of 167 nt in length between AaPV and Aedes DNV (4009 nt) genomes is due to additional noncoding sequences located between the internal coding region and the terminal palindromes in the AaPV genome. No significant homology was found between AaPV and the two other insect parvoviruses sequenced so far, the Bombyx mori DNV (BmDNV) and the Junonia coenia DNV (JcDNV).

摘要

我们克隆了白纹伊蚊细小病毒(AaPV)基因组的复制形式,并确定了病毒链的完整序列。该序列长度为4176个核苷酸(nt)。病毒(负)链3'端的前134个nt和5'端的末端182个nt,尽管它们的序列不同,但通过互补序列的折叠和退火都能产生典型的末端T形结构。在互补(正)链的图谱单位(mu)8.0和87.6之间存在三个大的开放阅读框(ORF),每个阅读框位于不同的框架中。左、中(位于左ORF内)和右ORF的潜在编码能力分别为95、41和40 kDa。分别在左、右ORF上游的mu 7.2和mu 60.0处发现了两个潜在的启动子。计算机搜索序列同源性表明,左ORF很可能编码非结构NS-1蛋白,因为它包含所有细小病毒高度保守的NTP结合氨基酸(aa)结构域(GKRN序列)。与其他无脊椎动物和脊椎动物细小病毒的比较显示,AaPV基因组与埃及伊蚊浓核症病毒(埃及伊蚊DNV)的核苷酸序列同源性为77.3%,氨基酸序列同源性在73%至78%之间。两种基因组的组织相似,只是在AaPV的负链上未发现潜在的ORF。AaPV和埃及伊蚊DNV(4009 nt)基因组之间167 nt的长度差异是由于AaPV基因组内部编码区和末端回文之间存在额外的非编码序列。到目前为止,在AaPV与另外两种已测序的昆虫细小病毒,即家蚕DNV(BmDNV)和苎麻珍蝶DNV(JcDNV)之间未发现显著的同源性。

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