通过对五种主要真菌植物病原体病毒组进行宏转录组学表征来鉴定多种真菌病毒

Identification of Diverse Mycoviruses through Metatranscriptomics Characterization of the Viromes of Five Major Fungal Plant Pathogens.

作者信息

Marzano Shin-Yi Lee, Nelson Berlin D, Ajayi-Oyetunde Olutoyosi, Bradley Carl A, Hughes Teresa J, Hartman Glen L, Eastburn Darin M, Domier Leslie L

机构信息

Department of Crop Sciences, University of Illinois, Urbana, Illinois, USA

Department of Plant Pathology, North Dakota State University, Fargo, North Dakota, USA.

出版信息

J Virol. 2016 Jul 11;90(15):6846-6863. doi: 10.1128/JVI.00357-16. Print 2016 Aug 1.

Abstract

UNLABELLED

Mycoviruses can have a marked effect on natural fungal communities and influence plant health and productivity. However, a comprehensive picture of mycoviral diversity is still lacking. To characterize the viromes of five widely dispersed plant-pathogenic fungi, Colletotrichum truncatum, Macrophomina phaseolina, Diaporthe longicolla, Rhizoctonia solani, and Sclerotinia sclerotiorum, a high-throughput sequencing-based metatranscriptomic approach was used to detect viral sequences. Total RNA and double-stranded RNA (dsRNA) from mycelia and RNA from samples enriched for virus particles were sequenced. Sequence data were assembled de novo, and contigs with predicted amino acid sequence similarities to viruses in the nonredundant protein database were selected. The analysis identified 72 partial or complete genome segments representing 66 previously undescribed mycoviruses. Using primers specific for each viral contig, at least one fungal isolate was identified that contained each virus. The novel mycoviruses showed affinity with 15 distinct lineages: Barnaviridae, Benyviridae, Chrysoviridae, Endornaviridae, Fusariviridae, Hypoviridae, Mononegavirales, Narnaviridae, Ophioviridae, Ourmiavirus, Partitiviridae, Tombusviridae, Totiviridae, Tymoviridae, and Virgaviridae More than half of the viral sequences were predicted to be members of the Mitovirus genus in the family Narnaviridae, which replicate within mitochondria. Five viral sequences showed strong affinity with three families (Benyviridae, Ophioviridae, and Virgaviridae) that previously contained no mycovirus species. The genomic information provides insight into the diversity and taxonomy of mycoviruses and coevolution of mycoviruses and their fungal hosts.

IMPORTANCE

Plant-pathogenic fungi reduce crop yields, which affects food security worldwide. Plant host resistance is considered a sustainable disease management option but may often be incomplete or lacking for some crops to certain fungal pathogens or strains. In addition, the rising issues of fungicide resistance demand alternative strategies to reduce the negative impacts of fungal pathogens. Those fungus-infecting viruses (mycoviruses) that attenuate fungal virulence may be welcome additions for mitigation of plant diseases. By high-throughput sequencing of the RNAs from 275 isolates of five fungal plant pathogens, 66 previously undescribed mycoviruses were identified. In addition to identifying new potential biological control agents, these results expand the grand view of the diversity of mycoviruses and provide possible insights into the importance of intracellular and extracellular transmission in fungus-virus coevolution.

摘要

未标记

真菌病毒可对天然真菌群落产生显著影响,并影响植物健康和生产力。然而,目前仍缺乏对真菌病毒多样性的全面了解。为了描述五种广泛分布的植物病原真菌(菜豆炭疽菌、菜豆壳球孢菌、长喙壳属真菌、立枯丝核菌和核盘菌)的病毒组特征,采用了基于高通量测序的宏转录组学方法来检测病毒序列。对菌丝体的总RNA和双链RNA(dsRNA)以及富集病毒颗粒的样本中的RNA进行了测序。对序列数据进行了从头组装,并选择了与非冗余蛋白质数据库中的病毒具有预测氨基酸序列相似性的重叠群。分析鉴定出72个部分或完整的基因组片段,代表66种先前未描述的真菌病毒。使用针对每个病毒重叠群的特异性引物,鉴定出至少一种含有每种病毒的真菌分离株。这些新型真菌病毒与15个不同的谱系具有亲缘关系:番茄丛矮病毒科、甜菜坏死黄脉病毒科、金黄病毒科、内质网病毒科、镰刀菌病毒科、低毒病毒科、单股负链RNA病毒目、arna病毒科、蛇形病毒科、奥尔米病毒属、分体病毒科、番茄病毒科、双链RNA病毒科、芜菁黄花叶病毒科和烟草花叶病毒科。超过一半的病毒序列预计属于arna病毒科中的线粒体病毒属,该属在线粒体内复制。五个病毒序列与三个以前没有真菌病毒物种的科(甜菜坏死黄脉病毒科、蛇形病毒科和烟草花叶病毒科)表现出很强的亲缘关系。这些基因组信息为真菌病毒的多样性和分类学以及真菌病毒与其真菌宿主的共同进化提供了见解。

重要性

植物病原真菌会降低作物产量,这影响到全球粮食安全。植物宿主抗性被认为是一种可持续的病害管理选择,但对于某些作物对某些真菌病原体或菌株而言,往往可能不完整或缺乏。此外,杀菌剂抗性问题日益严重,需要替代策略来减少真菌病原体的负面影响。那些能减弱真菌毒力的感染真菌的病毒(真菌病毒)可能是减轻植物病害的受欢迎的补充。通过对五种真菌植物病原体的275个分离株的RNA进行高通量测序,鉴定出66种先前未描述的真菌病毒。除了鉴定新的潜在生物防治剂外,这些结果还扩展了对真菌病毒多样性的总体认识,并为细胞内和细胞外传播在真菌 - 病毒共同进化中的重要性提供了可能的见解。

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