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对三种共同感染植物病原真菌雪腐核盘菌的真菌病毒的特性分析。

Characterization of three mycoviruses co-infecting the plant pathogenic fungus Sclerotinia nivalis.

作者信息

Wu Mingde, Deng Yue, Zhou Ziliang, He Guoyuan, Chen Weidong, Li Guoqing

机构信息

The State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, Hubei, China; The Key Laboratory of Plant Pathology of Hubei Province, Huazhong Agricultural University, Wuhan 430070, Hubei, China.

The State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, Hubei, China.

出版信息

Virus Res. 2016 Sep 2;223:28-38. doi: 10.1016/j.virusres.2016.06.009. Epub 2016 Jun 22.

Abstract

Two dsRNAs of approximately 6.0-kb and 3.0-kb in length were detected in strain SsSn-1 of Sclerotinia nivalis. Genomic analysis showed that the 6.0-kb dsRNA was a victorivirus, named as Sclerotinia nivalis victorivirus 1 (SnVV1). The genome of SnVV1 is 5162bp in length containing two large open reading frames (ORFs), ORF1 and ORF2. ORF1 was deduced to encode a coat protein (CP) showing homology to CPs of viruses belonging to the family Totiviridae. The stop codon of ORF1 overlaps the start codon of ORF2 in the tetranucleotide sequence AUGA. ORF2 was predicted to encode for a RNA-dependent RNA polymerase (RdRp) that was very similar to the RdRps of victoriviruses. The 3.0-kb dsRNA was consisted of two species of mitoviruses, named as Sclerotinia nivalis mitovirus 1/SsSn-1 (SnMV1/SsSn-1) and Sclerotinia sclerotiorum mitovirus 3/SsSn-1 (SsMV3/SsSn-1). The genomes of SnMV1/SsSn-1 and SsMV3/SsSn-1 were 2720nt and 2583nt in length, respectively. Both mitoviruses were AU-rich and deduced to contain a major large ORF encoding a mitoviral RdRp with the fungal mitochondrial codon usages. SnMV1/SsSn-1 was most closely related to Sclerotinia sclerotiorum mitovirus 4 (SsMV4/NZ1) and shared 76.5% and 80.1% identity with SsMV4/NZ1 for nucleotide and RdRp sequences, respectively. In addition, the nucleotide and RdRp sequences of SsMV3/SsSn-1 were 90.6% and 95.9% identical to the nucleotide and RdRp sequences of SsMV3/NZ1, respectively. Considering their nucleotide and RdRp sequence identities with other mitoviruses, SnMV1/SsSn-1 may belong to the genus Mitovirus, whereas SsMV3/SsSn-1 is possibly a strain of SsMV3. Both SnMV1/SsSn-1 and SsMV3/SsSn-1 were transmitted to a recipient virus-free colony faster than was SnVV1 through hyphal anastomosis. Co-infection by these mycoviruses had no apparent effects on growth and pathogenicity of S. nivalis.

摘要

在雪腐核盘菌菌株SsSn-1中检测到两条长度约为6.0 kb和3.0 kb的双链RNA。基因组分析表明,6.0 kb的双链RNA是一种胜利病毒,命名为雪腐核盘菌胜利病毒1(SnVV1)。SnVV1的基因组长度为5162 bp,包含两个大的开放阅读框(ORF),即ORF1和ORF2。推测ORF1编码一种衣壳蛋白(CP),与属于双分病毒科的病毒的CP具有同源性。ORF1的终止密码子在四核苷酸序列AUGA中与ORF2的起始密码子重叠。预测ORF2编码一种RNA依赖的RNA聚合酶(RdRp),与胜利病毒的RdRp非常相似。3.0 kb的双链RNA由两种线病毒组成,分别命名为雪腐核盘菌线病毒1/SsSn-1(SnMV1/SsSn-1)和核盘菌线病毒3/SsSn-1(SsMV3/SsSn-1)。SnMV1/SsSn-1和SsMV3/SsSn-1的基因组长度分别为2720 nt和2583 nt。两种线病毒都富含AU,并推测含有一个主要的大ORF,该ORF编码一种具有真菌线粒体密码子使用方式的线病毒RdRp。SnMV1/SsSn-1与核盘菌线病毒4(SsMV4/NZ1)关系最为密切,其核苷酸序列和RdRp序列与SsMV4/NZ1的同一性分别为76.5%和80.1%。此外,SsMV3/SsSn-1的核苷酸序列和RdRp序列与SsMV3/NZ1的核苷酸序列和RdRp序列的同一性分别为90.6%和95.9%。考虑到它们与其他线病毒的核苷酸序列和RdRp序列同一性,SnMV1/SsSn-1可能属于线病毒属,而SsMV3/SsSn-1可能是SsMV3的一个菌株。SnMV1/SsSn-1和SsMV3/SsSn-1通过菌丝融合传递到无病毒的受体菌落的速度都比SnVV1快。这些真菌病毒的共感染对雪腐核盘菌的生长和致病性没有明显影响。

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