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四种真菌病毒感染禾谷镰刀菌后转录模式与真菌学表型的比较

A comparison of transcriptional patterns and mycological phenotypes following infection of Fusarium graminearum by four mycoviruses.

作者信息

Lee Kyung-Mi, Cho Won Kyong, Yu Jisuk, Son Moonil, Choi Hoseong, Min Kyunghun, Lee Yin-Won, Kim Kook-Hyung

机构信息

Department of Agricultural Biotechnology, Center for Fungal Pathogenesis, and Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.

出版信息

PLoS One. 2014 Jun 25;9(6):e100989. doi: 10.1371/journal.pone.0100989. eCollection 2014.

Abstract

Many fungi-infecting viruses, which are termed mycoviruses, have been identified, and most do not cause any visible symptoms. Some mycoviruses, however, can attenuate the virulence of the infected fungi, a phenomenon referred to as hypovirulence. To study fungus responses to virus infection, we established a model system composed of Fusarium graminearum and four mycoviruses including FgV1 (Fusarium graminearum virus 1), FgV2, FgV3, and FgV4. FgV1 and FgV2 infections caused several phenotypic alterations in F. graminearum including abnormal colony morphology, defects in perithecium development, and reductions in growth rate, conidiation, and virulence. In contrast, FgV3 and FgV4 infections did not cause any phenotypic change. An RNA-Seq-based analysis of the host transcriptome identified four unique Fusarium transcriptomes, one for each of the four mycoviruses. Unexpectedly, the fungal host transcriptome was more affected by FgV1 and FgV4 infections than by FgV2 and FgV3 infections. Gene ontology (GO) enrichment analysis revealed that FgV1 and FgV3 infections resulted in down-regulation of host genes required for cellular transport systems. FgV4 infection reduced the expression of genes involved in RNA processing and ribosome assembly. We also found 12 genes that were differentially expressed in response to all four mycovirus infections. Unfortunately, functions of most of these genes are still unknown. Taken together, our analysis provides further detailed insights into the interactions between mycoviruses and F. graminearum.

摘要

许多感染真菌的病毒,即所谓的真菌病毒,已被鉴定出来,而且大多数不会引起任何可见症状。然而,一些真菌病毒可减弱受感染真菌的毒力,这种现象被称为低毒力。为了研究真菌对病毒感染的反应,我们建立了一个由禾谷镰刀菌和四种真菌病毒组成的模型系统,这四种真菌病毒包括FgV1(禾谷镰刀菌病毒1)、FgV2、FgV3和FgV4。FgV1和FgV2感染导致禾谷镰刀菌出现了几种表型改变,包括菌落形态异常、子囊壳发育缺陷以及生长速率、产孢量和毒力降低。相比之下,FgV3和FgV4感染未引起任何表型变化。基于RNA测序对宿主转录组进行的分析鉴定出了四个独特的镰刀菌转录组,每种真菌病毒各一个。出乎意料的是,真菌宿主转录组受FgV1和FgV4感染的影响比受FgV2和FgV3感染的影响更大。基因本体(GO)富集分析表明,FgV1和FgV3感染导致细胞转运系统所需宿主基因的下调。FgV4感染降低了参与RNA加工和核糖体组装的基因的表达。我们还发现有12个基因在对所有四种真菌病毒感染的反应中差异表达。遗憾的是,这些基因中的大多数功能仍然未知。综上所述,我们的分析为真菌病毒与禾谷镰刀菌之间的相互作用提供了更详细的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a690/4071046/10a7bea2acfb/pone.0100989.g001.jpg

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