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Whole-Genome Microarray and Gene Deletion Studies Reveal Regulation of the Polyhydroxyalkanoate Production Cycle by the Stringent Response in Ralstonia eutropha H16

机译:全基因组微阵列和基因缺失研究揭示了富营养小球藻(Halstonia eutropha)H16的严格反应对多羟基链烷酸酯生产周期的调节

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Poly(3-hydroxybutyrate) (PHB) production and mobilization in Ralstonia eutropha are well studied, but in only a few instances has PHB production been explored in relation to other cellular processes. We examined the global gene expression of wild-type R. eutropha throughout the PHB cycle: growth on fructose, PHB production using fructose following ammonium depletion, and PHB utilization in the absence of exogenous carbon after ammonium was resupplied. Our results confirm or lend support to previously reported results regarding the expression of PHB-related genes and enzymes. Additionally, genes for many different cellular processes, such as DNA replication, cell division, and translation, are selectively repressed during PHB production. In contrast, the expression levels of genes under the control of the alternative sigma factor σ~(54) increase sharply during PHB production and are repressed again during PHB utilization. Global gene regulation during PHB production is strongly reminiscent of the gene expression pattern observed during the stringent response in other species. Furthermore, a ppGpp synthase deletion mutant did not show an accumulation of PHB, and the chemical induction of the stringent response with dl-norvaline caused an increased accumulation of PHB in the presence of ammonium. These results indicate that the stringent response is required for PHB accumulation in R. eutropha , helping to elucidate a thus-far-unknown physiological basis for this process.
机译:富营养小球藻(Ralstonia eutropha)中聚(3-羟基丁酸)(PHB)的产生和动员已经得到了很好的研究,但是在少数情况下,已经探索了与其他细胞过程相关的PHB产生。我们检查了整个PHB周期中野生型富营养富营养菌的全球基因表达:果糖上的生长,铵消耗后使用果糖生产PHB以及铵补充后在没有外源碳的情况下利用PHB。我们的结果证实或支持先前报道的有关PHB相关基因和酶表达的结果。另外,PHB生产过程中选择性抑制了许多不同细胞过程的基因,例如DNA复制,细胞分裂和翻译。相反,在替代σ因子σ〜(54)的控制下,基因的表达水平在PHB生产过程中急剧增加,而在PHB利用过程中又被抑制。 PHB生产过程中的全局基因调控强烈让人联想到其他物种在严格反应期间观察到的基因表达模式。此外,ppGpp合酶缺失突变体没有显示PHB的积累,并且在铵盐存在下化学诱导dl-正缬氨酸的严格反应导致PHB的积累增加。这些结果表明,富营养红球菌中PHB的积累需要严格的响应,有助于阐明这一过程迄今未知的生理学基础。

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