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杆状病毒科的缺陷 RNA。

The defective RNAs of Closteroviridae.

机构信息

The S. Tolkowsky Laboratory, Virology Department, Plant Protection Institute, Agricultural Research Organization Beit Dagan, Israel.

出版信息

Front Microbiol. 2013 May 23;4:132. doi: 10.3389/fmicb.2013.00132. eCollection 2013.

Abstract

The family Closteroviridae consists of two genera, Closterovirus and Ampelovirus with monopartite genomes transmitted respectively by aphids and mealybugs and the Crinivirus with bipartite genomes transmitted by whiteflies. The Closteroviridae consists of more than 30 virus species, which differ considerably in their phytopathological significance. Some, like beet yellows virus and citrus tristeza virus (CTV) were associated for many decades with their respective hosts, sugar beets and citrus. Others, like the grapevine leafroll-associated ampeloviruses 1, and 3 were also associated with their grapevine hosts for long periods; however, difficulties in virus isolation hampered their molecular characterization. The majority of the recently identified Closteroviridae were probably associated with their vegetative propagated host plants for long periods and only detected through the considerable advances in dsRNA isolation and sequencing of PCR amplified replicons. Molecular characterization of CTV and several other Closteroviridae revealed that, in addition to genomic and subgenomic RNAs, infected plants contain several different subviral defective RNAs (dRNAs). The roles and biological functions of dRNAs associated with Closteroviridae remain terra incognita.

摘要

家族 Closteroviridae 由两个属组成,即 Closterovirus 和 Ampelovirus,它们的基因组分别为单分体,通过蚜虫和粉虱传播,而 Crinivirus 的基因组为二分体,通过粉虱传播。Closteroviridae 由 30 多种病毒组成,它们在植物病理学意义上有很大的不同。一些病毒,如甜菜黄化病毒和柑橘衰退病毒(CTV),与各自的宿主甜菜和柑橘已经有几十年的关联。其他病毒,如葡萄卷叶伴随的 ampeloviruses 1 和 3,也与它们的葡萄宿主有很长时间的关联;然而,病毒分离的困难阻碍了它们的分子特征描述。最近鉴定的大多数 Closteroviridae 可能与它们的营养繁殖宿主植物有很长时间的关联,并且只是通过 dsRNA 分离和 PCR 扩增复制子的测序的显著进展才被检测到。对 CTV 和其他几种 Closteroviridae 的分子特征描述表明,除了基因组和亚基因组 RNA 之外,感染的植物还含有几种不同的亚病毒缺陷 RNA(dRNAs)。与 Closteroviridae 相关的 dRNAs 的作用和生物学功能仍然是未知领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a826/3661990/fb1c58b9d97d/fmicb-04-00132-g001.jpg

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