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首页> 外文期刊>Tuberculosis >The influence of reduced oxygen availability on pathogenicity and gene expression in Mycobacterium tuberculosis.
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The influence of reduced oxygen availability on pathogenicity and gene expression in Mycobacterium tuberculosis.

机译:减少的氧气供应量对结核分枝杆菌的致病性和基因表达的影响。

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摘要

We investigated how Mycobacterium tuberculosis responded to a reduced oxygen tension in terms of its pathogenicity and gene expression by growing cells under either aerobic or low-oxygen conditions in chemostat culture. The chemostat enabled us to control and vary the oxygen tension independently of other environmental parameters, so that true cause-and-effect relationships of reduced oxygen availability could be established. Cells grown under low oxygen were more pathogenic for guinea pigs than those grown aerobically. The effect of reduced oxygen on global gene expression was determined using DNA microarray. Spearman rank correlation confirmed that microarray expression profiles were highly reproducible between repeat cultures. Using microarray analysis we have identified genes that respond to a low-oxygen environment without the influence of other parameters such as nutrient depletion. Some of these genes appear to be involved in the biosynthesis of cell wall precursors and their induction may have contributed to increased infectivity in the guinea pig. This study has shown that a combination of chemostat culture and microarray presents a biologically robust and statistically reliable experimental approach for studying the effect of relevant and specific environmental stimuli on mycobacterial virulence and gene expression.
机译:我们研究了如何通过在有氧或低氧条件下在恒化器培养中生长细胞,根据结核杆菌的致病性和基因表达,对结核分枝杆菌如何应对降低的氧气张力。化学稳定器使我们能够独立于其他环境参数来控制和改变氧气张力,从而可以建立减少氧气供应的真实因果关系。在低氧条件下生长的细胞对豚鼠的致病性要比需氧培养的细胞高。使用DNA微阵列确定减少的氧气对整体基因表达的影响。 Spearman等级相关性证实,重复培养之间微阵列表达谱高度可再现。使用微阵列分析,我们已经鉴定了对低氧环境有响应的基因,而不受其他参数(如营养耗竭)的影响。这些基因中的一些似乎参与了细胞壁前体的生物合成,它们的诱导可能导致豚鼠的感染性增加。这项研究表明,化学恒温器培养和微阵列的结合为研究相关和特定环境刺激对分枝杆菌毒力和基因表达的影响提供了生物学上强大且统计学上可靠的实验方法。

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