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首页> 外文期刊>BMC Genomics >Comparison of transcriptome technologies in the pathogenic fungus Aspergillus fumigatus reveals novel insights into the genome and MpkA dependent gene expression
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Comparison of transcriptome technologies in the pathogenic fungus Aspergillus fumigatus reveals novel insights into the genome and MpkA dependent gene expression

机译:病原真菌烟曲霉中转录组技术的比较揭示了对基因组和MpkA依赖性基因表达的新见解

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Background The filamentous fungus Aspergillus fumigatus has become the most important airborne fungal pathogen causing life-threatening infections in immuno-compromised patients. Recently developed high-throughput transcriptome and proteome technologies, such as microarrays, RNA deep-sequencing, and LC-MS/MS of peptide mixtures, are of enormous value for systematically investigating pathogenic organisms. In the field of infection biology, one of the priorities is to collect and standardise data, in order to generate datasets that can be used to investigate and compare pathways and gene responses involved in pathogenicity. The “omics” era provides a multitude of inputs that need to be integrated and assessed. We therefore evaluated the potential of paired-end mRNA-Seq for investigating the regulatory role of the central mitogen activated protein kinase (MpkA). This kinase is involved in the cell wall integrity signalling pathway of A. fumigatus and essential for maintaining an intact cell wall in response to stress. Results The comparison of the transcriptome and proteome of an A. fumigatus wild-type strain with an mpkA null mutant strain revealed that 70.4% of the genome was found to be expressed and that MpkA plays a significant role in the regulation of many genes involved in cell wall remodelling, oxidative stress and iron starvation response, and secondary metabolite biosynthesis. Moreover, absence of the mpkA gene also strongly affects the expression of genes involved in primary metabolism. The data were further processed to evaluate the potential of the mRNA-Seq technique. We comprehensively matched up our data to published transcriptome studies and were able to show an improved data comparability of mRNA-Seq experiments independently of the technique used. Analysis of transcriptome and proteome data revealed only a weak correlation between mRNA and protein abundance. Conclusions High-throughput analysis of MpkA-dependent gene expression confirmed many previous findings that this kinase is important for regulating many genes involved in metabolic pathways. Our analysis showed more than 2000 differentially regulated genes. RNA deep-sequencing is less error-prone than established microarray-based technologies. It also provides additional information in A. fumigatus studies and as a result is more suitable for the creation of extensive datasets.
机译:背景技术丝状真菌烟曲霉已成为最重要的空气传播真菌病原体,在免疫功能低下的患者中引起威胁生命的感染。最近开发的高通量转录组和蛋白质组技术,例如微阵列,RNA深度测序和肽混合物的LC-MS / MS,对于系统研究病原生物具有巨大的价值。在感染生物学领域,优先事项之一是收集和标准化数据,以便生成可用于调查和比较致病性相关途径和基因反应的数据集。 “组学”时代提供了大量需要整合和评估的投入。因此,我们评估了双末端mRNA-Seq用于研究中央有丝分裂原活化蛋白激酶(MpkA)的调节作用的潜力。该激酶参与了烟曲霉的细胞壁完整性信号传导途径,并且是维持完整的细胞壁以应对压力所必需的。结果烟曲霉野生型菌株与mpkA无效突变株的转录组和蛋白质组的比较表明,发现表达了70.4%的基因组,并且MpkA在许多参与该基因的调控中起着重要作用。细胞壁重塑,氧化应激和铁饥饿反应以及次级代谢产物的生物合成。此外,缺少mpkA基因也会强烈影响参与初级代谢的基因的表达。进一步处理数据以评估mRNA-Seq技术的潜力。我们将我们的数据与公开的转录组研究进行了全面匹配,并且能够独立于所使用的技术而显示出改进的mRNA-Seq实验数据可比性。转录组和蛋白质组数据的分析显示,mRNA和蛋白质丰度之间的相关性很弱。结论对MpkA依赖性基因表达的高通量分析证实了许多以前的发现,即该激酶对于调节许多参与代谢途径的基因很重要。我们的分析显示了2000多个差异调节基因。与基于微阵列的成熟技术相比,RNA深度测序不易出错。它还在烟曲霉研究中提供了更多信息,因此更适合创建大量数据集。

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