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一种赋予植物病原真菌低毒力的新型多分体病毒。

A novel partitivirus that confers hypovirulence on plant pathogenic fungi.

作者信息

Xiao Xueqiong, Cheng Jiasen, Tang Jinghua, Fu Yanping, Jiang Daohong, Baker Timothy S, Ghabrial Said A, Xie Jiatao

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, Hubei Province, People's Republic of China Provincial Key Lab of Plant Pathology of Hubei Province, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, Hubei Province, People's Republic of China.

Provincial Key Lab of Plant Pathology of Hubei Province, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, Hubei Province, People's Republic of China.

出版信息

J Virol. 2014 Sep 1;88(17):10120-33. doi: 10.1128/JVI.01036-14. Epub 2014 Jun 25.

Abstract

UNLABELLED

Members of the family Partitiviridae have bisegmented double-stranded RNA (dsRNA) genomes and are not generally known to cause obvious symptoms in their natural hosts. An unusual partitivirus, Sclerotinia sclerotiorum partitivirus 1 (SsPV1/WF-1), conferred hypovirulence on its natural plant-pathogenic fungal host, Sclerotinia sclerotiorum strain WF-1. Cellular organelles, including mitochondria, were severely damaged. Hypovirulence and associated traits of strain WF-1 and SsPV1/WF-1 were readily cotransmitted horizontally via hyphal contact to different vegetative compatibility groups of S. sclerotiorum and interspecifically to Sclerotinia nivalis and Sclerotinia minor. S. sclerotiorum strain 1980 transfected with purified SsPV1/WF-1 virions also exhibited hypovirulence and associated traits similar to those of strain WF-1. Moreover, introduction of purified SsPV1/WF-1 virions into strain KY-1 of Botrytis cinerea also resulted in reductions in virulence and mycelial growth and, unexpectedly, enhanced conidial production. However, virus infection suppressed hyphal growth of most germinating conidia of B. cinerea and was eventually lethal to infected hyphae, since very few new colonies could develop following germ tube formation. Taken together, our results support the conclusion that SsPV1/WF-1 causes hypovirulence in Sclerotinia spp. and B. cinerea. Cryo-EM (cryo-electron microscopy) reconstruction of the SsPV1 particle shows that it has a distinct structure with similarity to the closely related partitiviruses Fusarium poae virus 1 and Penicillium stoloniferum virus F. These findings provide new insights into partitivirus biological activities and clues about molecular interactions between partitiviruses and their hosts.

IMPORTANCE

Members of the Partitiviridae are believed to occur commonly in their phytopathogenic fungal and plant hosts. However, most partitiviruses examined so far appear to be associated with latent infections. Here we report a partitivirus, SsPV1/WF-1, that was isolated from a hypovirulent strain of Sclerotinia sclerotiorum and describe its biological and molecular features. We have demonstrated that SsPV1 confers hypovirulence. Furthermore, SsPV1 can infect and cause hypovirulence in Botrytis cinerea. Our study also suggests that SsPV1 has a vigorous ability to proliferate and spread via hyphal contact. SsPV1 can overcome vegetative incompatibility barriers and can be transmitted horizontally among different vegetative compatibility groups of S. sclerotiorum, even interspecifically. Cryo-EM reconstruction of SsPV1 shows that it has a distinct structure with similarity to closely related partitiviruses. Our studies exploit a novel system, SsPV1 and its hosts, which can provide the means to explore the mechanisms by which partitiviruses interact with their hosts.

摘要

未标记

双分病毒科成员具有双节段双链RNA(dsRNA)基因组,通常在其自然宿主中不会引起明显症状。一种不寻常的双分病毒,核盘菌双分病毒1(SsPV1/WF-1),赋予其自然植物病原真菌宿主核盘菌菌株WF-1低毒力。包括线粒体在内的细胞器受到严重损伤。菌株WF-1和SsPV1/WF-1的低毒力及相关特性很容易通过菌丝接触水平共传递给核盘菌的不同营养亲和群,并能种间传递给雪腐核盘菌和小核盘菌。用纯化的SsPV1/WF-1病毒粒子转染的核盘菌菌株1980也表现出与菌株WF-1相似的低毒力及相关特性。此外,将纯化的SsPV1/WF-1病毒粒子导入灰葡萄孢菌的KY-1菌株也导致毒力和菌丝生长降低,出乎意料的是,分生孢子产量增加。然而,病毒感染抑制了灰葡萄孢菌大多数萌发分生孢子的菌丝生长,最终对受感染的菌丝是致命的,因为在芽管形成后很少有新的菌落能够发育。综上所述,我们的结果支持SsPV1/WF-1在核盘菌属和灰葡萄孢菌中引起低毒力的结论。SsPV1粒子的冷冻电镜(cryo-电子显微镜)重建显示,它具有与密切相关的双分病毒禾谷镰刀菌病毒1和匐枝青霉病毒F相似的独特结构。这些发现为双分病毒的生物学活性提供了新的见解,并为双分病毒与其宿主之间的分子相互作用提供了线索。

重要性

双分病毒科成员被认为在其植物病原真菌和植物宿主中普遍存在。然而,迄今为止检测的大多数双分病毒似乎与潜伏感染有关。在这里,我们报告了一种从核盘菌低毒力菌株中分离出的双分病毒SsPV1/WF-1,并描述了其生物学和分子特征。我们已经证明SsPV1赋予低毒力。此外,SsPV1可以感染灰葡萄孢菌并引起低毒力。我们的研究还表明,SsPV1具有通过菌丝接触进行增殖和传播的强大能力。SsPV1可以克服营养不亲和障碍,并能在核盘菌的不同营养亲和群之间水平传播,甚至种间传播。SsPV1的冷冻电镜重建显示,它具有与密切相关的双分病毒相似的独特结构。我们的研究利用了一个新的系统,即SsPV1及其宿主,这可以为探索双分病毒与其宿主相互作用的机制提供手段。

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