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从立枯丝核菌(AG 2-2 IV)中分离出一种新型真菌病毒,这为了解番茄病毒目内的基因组可塑性提供了更多信息。

Identification of a novel mycovirus isolated from Rhizoctonia solani (AG 2-2 IV) provides further information about genome plasticity within the order Tymovirales.

作者信息

Bartholomäus Anika, Wibberg Daniel, Winkler Anika, Pühler Alfred, Schlüter Andreas, Varrelmann Mark

机构信息

Institute of Sugar Beet Research, D-37079, Göttingen, Germany.

Institute for Genome Research and Systems Biology, CeBiTec, Bielefeld University, D-33501, Bielefeld, Germany.

出版信息

Arch Virol. 2017 Feb;162(2):555-559. doi: 10.1007/s00705-016-3085-3. Epub 2016 Oct 12.

Abstract

The complete genome of a novel mycovirus, named Rhizoctonia solani flexivirus 1 (RsFV-1), which infects an avirulent strain of Rhizoctonia solani AG 2-2 IV, was sequenced and analyzed. Its RNA genome consists of 10,621 nucleotides, excluding the poly-A tail, and encodes a single protein of 3477 amino acids. The identification of conserved motifs of methyltransferase, helicase and RNA-dependent RNA polymerase revealed its relatedness to members of the alphavirus-like superfamily of positive-strand RNA viruses. Phylogenetic analysis of these fused domains suggested that this virus should be assigned to the order Tymovirales. The recently described Fusarium graminearum deltaflexivirus 1 was found to be its closest relative. However, the whole genome, as well as the encoded protein of RsFV-1, is larger than that of other known members of the order Tymovirales, and unlike all other viruses belonging to this order, its methyltransferase domain is not located at the N-terminus of the replicase. Although genome diversity, as a result of recombination and gene loss, is a well-documented trait in members of the order Tymovirales, no related virus with a comparable genome alteration has been reported before. For these reasons, RsFV-1 broadens our perception about genome plasticity and diversity within the order Tymovirales.

摘要

对一种新型真菌病毒——立枯丝核菌柔病毒1(RsFV-1)的全基因组进行了测序和分析,该病毒感染立枯丝核菌AG 2-2 IV的无毒菌株。其RNA基因组由10,621个核苷酸组成(不包括聚腺苷酸尾),编码一个由3477个氨基酸组成的单一蛋白质。甲基转移酶、解旋酶和RNA依赖性RNA聚合酶保守基序的鉴定揭示了它与正链RNA病毒的甲病毒样超家族成员的相关性。对这些融合结构域的系统发育分析表明,该病毒应归入番茄病毒目。最近描述的禾谷镰刀菌δ柔病毒1被发现是其最密切的亲属。然而,RsFV-1的全基因组以及编码的蛋白质比番茄病毒目的其他已知成员更大,并且与该目的所有其他病毒不同,其甲基转移酶结构域不在复制酶的N端。尽管由于重组和基因丢失导致的基因组多样性是番茄病毒目成员中一个有充分记录的特征,但之前尚未报道过具有类似基因组改变的相关病毒。由于这些原因,RsFV-1拓宽了我们对番茄病毒目内基因组可塑性和多样性的认识。

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