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酵母和菌丝体的转录组表达谱分析及建立申克孢子丝菌基因组数据库。

Transcriptome-wide expression profiling of yeast and mycelial forms and the establishment of the Sporothrix Genome DataBase.

机构信息

Department of Clinical and Experimental Medicine, University Hospital of Messina, Messina 98125, Italy.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina 98166, Italy.

出版信息

Microb Genom. 2020 Oct;6(10). doi: 10.1099/mgen.0.000445.

Abstract

is a dimorphic fungus existing as mould in the environment and as yeast in the host. The morphological shift between mycelial/yeast phases is crucial for its virulence, but the transcriptional networks implicated in dimorphic transition are still not fully understood. Here, we report the global transcriptomic differences occurring between mould and yeast phases of , including changes in gene expression profiles associated with these distinct cellular phenotypes. Moreover, we also propose a new genome annotation, which reveals a more complex transcriptional architecture than previously assumed. Using RNA-seq, we identified a total of 17 307 genes, of which 11 217 were classified as protein-encoding genes, whereas 6090 were designated as non-coding RNAs (ncRNAs). Approximately ~71 % of all annotated genes were found to overlap and the different-strand overlapping type was the most common. Gene expression analysis revealed that 8795 genes were differentially regulated among yeast and mould forms. Differential gene expression was also observed for antisense ncRNAs overlapping neighbouring protein-encoding genes. The release of transcriptome-wide data and the establishment of the Sporothrix Genome DataBase (http://sporothrixgenomedatabase.unime.it) represent an important milestone for research, because they provide a strong basis for future studies on the molecular pathways involved in numerous biological processes.

摘要

是一种存在于环境中的二相真菌,形态为霉菌,在宿主体内则为酵母。菌丝/酵母形态之间的形态转变对于其毒力至关重要,但涉及二相转变的转录网络仍未完全了解。在这里,我们报告了 霉菌和酵母相之间发生的全局转录组差异,包括与这些不同细胞表型相关的基因表达谱变化。此外,我们还提出了一个新的基因组注释,揭示了比以前假设更为复杂的转录结构。使用 RNA-seq,我们总共鉴定了 17307 个基因,其中 11217 个被归类为编码蛋白的基因,而 6090 个被指定为非编码 RNA (ncRNA)。所有注释基因中约有 71%被发现重叠,不同链重叠类型最为常见。基因表达分析显示,酵母和霉菌形态之间有 8795 个基因存在差异调控。相邻编码蛋白基因上的反义 ncRNA 也存在差异表达。全转录组数据的发布和 基因组数据库的建立(http://sporothrixgenomedatabase.unime.it)代表了 研究的一个重要里程碑,因为它们为未来研究涉及众多生物学过程的分子途径提供了坚实的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e61f/7660252/fff7c15279a5/mgen-6-445-g001.jpg

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