首页> 美国卫生研究院文献>Viruses >Novel Mitoviruses and a Unique Tymo-Like Virus in Hypovirulent and Virulent Strains of the Fusarium Head Blight Fungus Fusarium boothii
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Novel Mitoviruses and a Unique Tymo-Like Virus in Hypovirulent and Virulent Strains of the Fusarium Head Blight Fungus Fusarium boothii

机译:镰刀菌枯萎病菌的低毒力和强毒株中的新型线粒体病毒和独特的拟真病毒

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摘要

Hypovirulence of phytopathogenic fungi are often conferred by mycovirus(es) infections and for this reason many mycoviruses have been characterized, contributing to a better understanding of virus diversity. In this study, three strains of Fusarium head blight fungus (Fusarium boothii) were isolated from Ethiopian wheats as dsRNA-carrying strains: hypovirulent Ep-BL13 (>10, 3 and 2.5 kbp dsRNAs), and virulent Ep-BL14 and Ep-N28 (3 kbp dsRNA each) strains. The 3 kbp-dsRNAs shared 98% nucleotide identity and have single ORFs encoding a replicase when applied to mitochondrial codon usage. Phylogenetic analysis revealed these were strains of a new species termed Fusarium boothii mitovirus 1 in the genus Mitovirus. The largest and smallest dsRNAs in Ep-BL13 appeared to possess single ORFs and the smaller was originated from the larger by removal of its most middle part. The large dsRNA encoded a replicase sharing the highest amino acid identity (35%) with that of Botrytis virus F, the sole member of the family Gammaflexiviridae. Given that the phylogenetic placement, large genome size, simple genomic and unusual 3′-terminal RNA structures were far different from members in the order Tymovirales, the virus termed Fusarium boothii large flexivirus 1 may form a novel genus and family under the order.
机译:植物病原性真菌的低毒力通常是由霉菌病毒感染引起的,因此,已经鉴定了许多霉菌病毒,有助于更好地了解病毒的多样性。在这项研究中,从埃塞俄比亚小麦中分离出三种带有dsRNA的镰刀菌枯萎真菌(Fusarium Bootii):低毒的Ep-BL13(> 10、3和2.5 kbp dsRNA),有毒的Ep-BL14和Ep-N28 (每个3 kbp dsRNA)菌株。当应用于线粒体密码子使用时,这3 kbp-dsRNA具有98%的核苷酸同一性,并具有编码复制酶的单个ORF。系统发育分析表明,这些是线粒体病毒属中一种称为镰刀菌细微体病毒1的新物种的菌株。 Ep-BL13中最大和最小的dsRNA似乎具有单个ORF,而较小的dsRNA则是通过去除其最大的中间部分而从较大的dsRNA产生的。大的dsRNA编码的复制酶与Botrytis病毒F(Gammaflexiviridae家族的唯一成员)具有最高的氨基酸同一性(35%)。考虑到系统发育的位置,大的基因组大小,简单的基因组和不寻常的3'-末端RNA结构与Tymovirales顺序的成员相差甚远,被称为镰刀菌大柔韧性病毒1的病毒可能会在该顺序下形成一个新的属和家族。

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