Shafik Karim, Umer Muhammad, You Huafeng, Aboushedida Hamdy, Wang Zhenhua, Ni Dejiang, Xu Wenxing
Hubei Hongshan Laboratory, Wuhan, China.
Department of Plant Pathology, Faculty of Agriculture, Alexandria University, Alexandria, Egypt.
Front Microbiol. 2021 Nov 17;12:757556. doi: 10.3389/fmicb.2021.757556. eCollection 2021.
A dsRNA segment was identified in the fungus isolated from tea plants. The complete dsRNA sequence, determined by random cloning together with RACE protocol, is 2,461 bp in length with an AU-rich content (62.37%) and comprises a single ORF of 2,265-nucleotides encoding an RNA-dependent RNA-polymerase (RdRp, 754 amino acids in size). The terminus sequences can fold into predicted stable stem-loop structures. A BLASTX and phylogenetic analysis revealed the dsRNA genome shows similarities with the RdRp sequences of mitoviruses, with the highest identity of 48% with those of grapevine-associated mitovirus 20 and Colletotrichum fructicola mitovirus 1. Our results reveal a novel member, tentatively named Melanconiella theae mitovirus 1 (MtMV1), belongs to the family . MtMV1 is capsidless as examined by transmission electron microscope, efficiently transmitted through conidia as 100 conidium-generated colonies were analyzed, and easily eliminated by hyphal tipping method combined with green-leaf tea powder. MtMV1 has a genomic sequence obviously divergent from those of most members in the family and some unique characteristics unreported in known members. This is the first report of a mycovirus infecting fungi to date.
在从茶树分离出的真菌中鉴定出一个双链RNA片段。通过随机克隆结合RACE技术确定的完整双链RNA序列长度为2461 bp,富含AU(62.37%),包含一个2265个核苷酸的单一开放阅读框,编码一种依赖RNA的RNA聚合酶(RdRp,大小为754个氨基酸)。末端序列可折叠成预测的稳定茎环结构。BLASTX和系统发育分析表明,该双链RNA基因组与线粒体病毒的RdRp序列相似,与葡萄相关线粒体病毒20和胶孢炭疽菌线粒体病毒1的序列一致性最高为48%。我们的结果揭示了一个新成员,暂命名为茶黑刺盘孢线粒体病毒1(MtMV1),属于该家族。通过透射电子显微镜检查发现MtMV1无衣壳,在分析100个由分生孢子产生的菌落时发现它能通过分生孢子有效传播,并且通过菌丝尖端法结合绿茶粉很容易将其消除。MtMV1的基因组序列与该家族大多数成员的序列明显不同,具有一些已知成员未报道的独特特征。这是迄今为止关于一种感染炭疽菌属真菌的真菌病毒的首次报道。