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High-throughput transcriptome sequencing and comparative analysis of Escherichia coli and Schizosaccharomyces pombe in respiratory and fermentative growth

机译:呼吸道和发酵生长中大肠杆菌和Schizosaccharomyces Pombe的高通量转录组测序和比较分析

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In spite of increased complexity in eukaryotes compared to prokaryotes, several basic metabolic and regulatory processes are conserved. Here we explored analogies in the eubacteria Escherichia coli and the unicellular fission yeast Schizosaccharomyces pombe transcriptomes under two carbon sources: 2% glucose; or a mix of 2% glycerol and 0.2% sodium acetate using the same growth media and growth phase. Overall, twelve RNA-seq libraries were constructed. A total of 593 and 860 genes were detected as differentially expressed for E . coli and S . pombe , respectively, with a log2 of the Fold Change ≥ 1 and False Discovery Rate ≤ 0.05. In aerobic glycolysis, most of the expressed genes were associated with cell proliferation in both organisms, including amino acid metabolism and glycolysis. In contrast in glycerol/acetate condition, genes related to flagellar assembly and membrane proteins were differentially expressed such as the general transcription factors fliA , flhD , flhC , and flagellum assembly genes were detected in E . coli , whereas in S . pombe genes for hexose transporters, integral membrane proteins, galactose metabolism, and ncRNAs related to cellular stress were overexpressed. In general, our study shows that a conserved "foraging behavior" response is observed in these eukaryotic and eubacterial organisms in gluconeogenic carbon sources.
机译:尽管与原核生物相比,真核生物中复杂性增加,但节省了几种基本的代谢和监管过程。在这里,我们探讨了大肠杆菌大肠杆菌的类比和单细胞裂变酵母Schizosaccaromyces Pombe在两个碳源下转录om:2%葡萄糖;或使用相同的生长培养基和生长阶段的2%甘油和0.2%乙酸钠的混合物。总的来说,构建了12个RNA-SEQ库。为E差异表达,总共593和860个基因检测到。 Coli和s。分别具有折叠变化的log2≥1和假发现率≤0.05。在需氧糖酵解中,大多数表达基因与两种生物中的细胞增殖相关,包括氨基酸代谢和糖酵解。相反,在甘油/醋酸甘油条件下,与鞭毛组件和膜蛋白相关的基因差异表达,例如在E中检测到一般转录因子Flia,FlHD,FlHC和鞭毛组装基因。大肠杆菌,而在s。对于己糖转运蛋白,整体膜蛋白,半乳糖代谢和与细胞应激相关的NCRNA的POMBE基因均过表达。一般来说,我们的研究表明,在葡糖原碳源的这些真核和有关核生物中观察到保守的“觅食行为”响应。

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