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RNAseq Analysis Highlights Specific Transcriptome Signatures of Yeast and Mycelial Growth Phases in the Dutch Elm Disease Fungus Ophiostoma novo-ulmi

机译:RNAseq分析突出了荷兰榆病真菌Ophiostoma novo-ulmi中酵母和菌丝体生长阶段的特定转录组特征。

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Fungal dimorphism is a complex trait and our understanding of the ability of fungi to display different growth morphologies is limited to a small number of model species. Here we study a highly aggressive dimorphic fungus, the ascomycete Ophiostoma novo-ulmi , which is a model in plant pathology and the causal agent of Dutch elm disease. The two growth phases that this fungus displays, i.e. , a yeast phase and mycelial phase, are thought to be involved in key steps of disease development. We used RNAseq to investigate the genome-wide gene expression profiles that are associated with yeast and mycelial growth phases in vitro . Our results show a clear molecular distinction between yeast and mycelial phase gene expression profiles. Almost 12% of the gene content is differentially expressed between the two phases, which reveals specific functions related to each growth phase. We compared O. novo-ulmi transcriptome profiles with those of two model dimorphic fungi, Candida albicans and Histoplasma capsulatum . Few orthologs showed similar expression regulation between the two growth phases, which suggests that, globally, the genes associated with these two life forms are poorly conserved. This poor conservation underscores the importance of developing specific tools for emerging model species that are distantly related to the classical ones. Taken together, our results provide insights into transcriptome regulation and molecular specificity in O. novo-ulmi and offer a new perspective for understanding fungal dimorphism.
机译:真菌双态性是一个复杂的特征,我们对真菌显示不同生长形态的能力的理解仅限于少数模型物种。在这里,我们研究了一种具有高度侵略性的双态真菌,即新孢子囊霉,它是植物病理学模型和荷兰榆病的病原体。该真菌显示的两个生长阶段,即酵母阶段和菌丝体阶段,被认为与疾病发展的关键步骤有关。我们使用RNAseq来研究与酵母和菌丝体生长阶段相关的全基因组基因表达谱。我们的结果表明酵母和菌丝体期基因表达谱之间存在明显的分子区别。在两个阶段之间几乎有12%的基因含量差异表达,这揭示了与每个生长阶段相关的特定功能。我们比较了O. novo-ulmi转录组谱与两种模式二形性真菌白念珠菌和荚膜组织胞浆菌的谱。很少有直系同源物显示出在两个生长期之间相似的表达调控,这表明,从总体上看,与这两种生命形式相关的基因保守性很差。这种不良的保护措施突显了为新兴的与经典物种密切相关的模型物种开发特定工具的重要性。两者合计,我们的结果提供了对O. noul-ulmi中转录组调控和分子特异性的见解,并为理解真菌二态性提供了新的视角。

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