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A Novel Bipartite Double-Stranded RNA Mycovirus from the White Root Rot Fungus Rosellinia necatrix: Molecular and Biological Characterization, Taxonomic Considerations, and Potential for Biological Control▿

机译:白根腐烂真菌Rosellinia necatrix的新型双链双链RNA分支杆菌病毒:分子和生物学特性,分类学考虑和生物控制潜力▿

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摘要

White root rot, caused by the ascomycete Rosellinia necatrix, is a devastating disease worldwide, particularly in fruit trees in Japan. Here we report on the biological and molecular properties of a novel bipartite double-stranded RNA (dsRNA) virus encompassing dsRNA-1 (8,931 bp) and dsRNA-2 (7,180 bp), which was isolated from a field strain of R. necatrix, W779. Besides the strictly conserved 5′ (24 nt) and 3′ (8 nt) terminal sequences, both segments show high levels of sequence similarity in the long 5′ untranslated region of approximately 1.6 kbp. dsRNA-1 and -2 each possess two open reading frames (ORFs) named ORF1 to -4. Although the protein encoded by 3′-proximal ORF2 on dsRNA-1 shows sequence identities of 22 to 32% with RNA-dependent RNA polymerases from members of the families Totiviridae and Chrysoviridae, the remaining three virus-encoded proteins lack sequence similarities with any reported mycovirus proteins. Phylogenetic analysis showed that the W779 virus belongs to a separate clade distinct from those of other known mycoviruses. Purified virions ∼50 nm in diameter consisted of dsRNA-1 and -2 and a single major capsid protein of 135 kDa, which was shown by peptide mass fingerprinting to be encoded by dsRNA-1 ORF1. We developed a transfection protocol using purified virions to show that the virus was responsible for reduction of virulence and mycelial growth in several host strains. These combined results indicate that the W779 virus is a novel bipartite dsRNA virus with potential for biological control (virocontrol), named Rosellinia necatrix megabirnavirus 1 (RnMBV1), that possibly belongs to a new virus family.
机译:白粉病是由子囊性玫瑰茄引起的,在世界范围内是一种破坏性疾病,尤其是在日本的果树中。在这里,我们报道了一种新的包含dsRNA-1(8,931 bp)和dsRNA-2(7,180 bp)的新型双链双链RNA(dsRNA)病毒的生物学和分子特性,该病毒是从野猪R. necatrix分离得到的, W779。除了严格保守的5'(24 nt)和3'(8 nt)末端序列外,两个片段在约1.6 kbp的5'长非翻译区均显示出高水平的序列相似性。 dsRNA-1和-2每个都有两个开放阅读框(ORF),分别为ORF1至-4。尽管dsRNA-1上由3'-近端ORF2编码的蛋白与Totiviridae和Chrysoviridae家族成员的RNA依赖性RNA聚合酶显示22%至32%的序列同一性,但其余三种病毒编码的蛋白与任何报道的蛋白缺乏序列相似性霉菌病毒蛋白。系统发育分析表明,W779病毒属于与其他已知霉菌病毒不同的独立进化枝。直径约50 nm的纯化病毒体由dsRNA-1和-2以及一个135 kDa的主要衣壳蛋白组成,通过肽质量指纹图谱显示该蛋白由dsRNA-1 ORF1编码。我们开发了使用纯化的病毒体的转染方案,以表明该病毒负责减少几种宿主菌株的毒力和菌丝体生长。这些综合结果表明,W779病毒是一种新型的具有生物学控制潜力的双链dsRNA病毒(virocontrol),被命名为Rosellinia necatrix megabirnavirus 1(RnMBV1),可能属于一个新的病毒家族。

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