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首页> 外文期刊>Applied and Environmental Microbiology >Temporal Transcriptomic Analysis as Desulfovibrio vulgaris Hildenborough Transitions into Stationary Phase during Electron Donor Depletion
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Temporal Transcriptomic Analysis as Desulfovibrio vulgaris Hildenborough Transitions into Stationary Phase during Electron Donor Depletion

机译:在电子供体耗竭过程中,寻常脱硫弧菌希尔登伯勒过渡到固定相的时间转录组学分析。

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Desulfovibrio vulgaris was cultivated in a defined medium, and biomass was sampled for approximately 70 h to characterize the shifts in gene expression as cells transitioned from the exponential to the stationary phase during electron donor depletion. In addition to temporal transcriptomics, total protein, carbohydrate, lactate, acetate, and sulfate levels were measured. The microarray data were examined for statistically significant expression changes, hierarchical cluster analysis, and promoter element prediction and were validated by quantitative PCR. As the cells transitioned from the exponential phase to the stationary phase, a majority of the down-expressed genes were involved in translation and transcription, and this trend continued at the remaining times. There were general increases in relative expression for intracellular trafficking and secretion, ion transport, and coenzyme metabolism as the cells entered the stationary phase. As expected, the DNA replication machinery was down-expressed, and the expression of genes involved in DNA repair increased during the stationary phase. Genes involved in amino acid acquisition, carbohydrate metabolism, energy production, and cell envelope biogenesis did not exhibit uniform transcriptional responses. Interestingly, most phage-related genes were up-expressed at the onset of the stationary phase. This result suggested that nutrient depletion may affect community dynamics and DNA transfer mechanisms of sulfate-reducing bacteria via the phage cycle. The putative feoAB system (in addition to other presumptive iron metabolism genes) was significantly up-expressed, and this suggested the possible importance of Fe2+ acquisition under metal-reducing conditions. The expression of a large subset of carbohydrate-related genes was altered, and the total cellular carbohydrate levels declined during the growth phase transition. Interestingly, the D. vulgaris genome does not contain a putative rpoS gene, a common attribute of the δ-Proteobacteria genomes sequenced to date, and the transcription profiles of other putative rpo genes were not significantly altered. Our results indicated that in addition to expected changes (e.g., energy conversion, protein turnover, translation, transcription, and DNA replication and repair), genes related to phage, stress response, carbohydrate flux, the outer envelope, and iron homeostasis played important roles as D. vulgaris cells experienced electron donor depletion.
机译:在规定的培养基中培养寻常型脱硫弧菌,对生物质进行约70小时采样,以表征在电子供体耗尽过程中,细胞从指数级过渡到固定相时基因表达的变化。除了时间转录组学外,还测量了总蛋白,碳水化合物,乳酸盐,乙酸盐和硫酸盐的水平。检查了微阵列数据的统计学上显着的表达变化,层次聚类分析和启动子元件预测,并通过定量PCR进行了验证。当细胞从指数期过渡到固定期时,大多数低表达的基因都参与翻译和转录,这种趋势在其余时间继续存在。随着细胞进入静止期,细胞内运输和分泌,离子运输和辅酶代谢的相对表达普遍增加。正如预期的那样,DNA复制机制被下调,并且在固定期DNA修复所涉及的基因表达增加。参与氨基酸获取,碳水化合物代谢,能量产生和细胞包膜生物发生的基因未显示出统一的转录反应。有趣的是,大多数与噬菌体相关的基因在固定相开始表达。该结果表明营养物耗竭可能通过噬菌体循环影响硫酸盐还原细菌的群落动力学和DNA转移机制。假定的feoAB系统(除其他推测的铁代谢基因外)显着表达,这表明在金属还原条件下获取Fe2 +的重要性。碳水化合物相关基因的大部分子集的表达发生了变化,在生长期过渡期间,总的细胞碳水化合物水平下降了。有趣的是,寻常小球藻基因组不含推定的rpoS基因,这是迄今为止已测序的δ-变形杆菌基因组的共同属性,其他推定的rpo基因的转录谱没有明显改变。我们的结果表明,除了预期的变化(例如,能量转换,蛋白质更新,翻译,转录以及DNA复制和修复)之外,与噬菌体,应激反应,碳水化合物通量,外膜和铁稳态有关的基因也起着重要作用。因为寻常的D.细胞经历了电子供体的消耗。

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