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首页> 外文期刊>Applied and Environmental Microbiology >Transcriptome Analysis Reveals that Multidrug Efflux Genes Are Upregulated To Protect Pseudomonas aeruginosa from Pentachlorophenol Stress
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Transcriptome Analysis Reveals that Multidrug Efflux Genes Are Upregulated To Protect Pseudomonas aeruginosa from Pentachlorophenol Stress

机译:转录组分析显示多药外排基因被上调以保护铜绿假单胞菌免受五氯酚胁迫

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Through chemical contamination of natural environments, microbial communities are exposed to many different types of chemical stressors; however, research on whole-genome responses to this contaminant stress is limited. This study examined the transcriptome response of a common soil bacterium, Pseudomonas aeruginosa, to the common environmental contaminant pentachlorophenol (PCP). Cells were grown in chemostats at a low growth rate to obtain substrate-limited, steady-state, balanced-growth conditions. The PCP stress was administered as a continuous increase in concentration, and samples taken over time were examined for physiological function changes with whole-cell acetate uptake rates (WAURs) and cell viability and for gene expression changes by Affymetrix GeneChip technology and real-time reverse transcriptase PCR. Cell viability, measured by heterotrophic plate counts, showed a moderately steady decrease after exposure to the stressor, but WAURs did not change in response to PCP. In contrast to the physiological data, the microarray data showed significant changes in the expression of several genes. In particular, genes coding for multidrug efflux pumps, including MexAB-OprM, were strongly upregulated. The upregulation of these efflux pumps protected the cells from the potentially toxic effects of PCP, allowing the physiological whole-cell function to remain constant.
机译:通过自然环境的化学污染,微生物群落暴露于许多不同类型的化学胁迫下。然而,有关这种污染压力的全基因组反应的研究是有限的。这项研究检查了常见土壤细菌铜绿假单胞菌对常见环境污染物五氯苯酚(PCP)的转录组反应。使细胞在恒化器中以低生长速率生长,以获得底物有限的,稳态的,平衡生长的条件。 PCP应激以浓度不断增加的方式进行管理,并且随着时间的推移,对样品进行了检查,了解其生理功能随全细胞乙酸盐摄取率(WAUR)和细胞活力的变化,以及通过Affymetrix GeneChip技术和实时反向检测基因表达的变化转录酶PCR。通过异养平板计数测量的细胞活力在暴露于应激源后显示出适度稳定的下降,但WAUR对PCP的反应没有改变。与生理数据相反,微阵列数据显示几种基因表达的显着变化。特别是,编码多药外排泵的基因(包括MexAB-OprM)被强烈上调。这些外排泵的上调保护细胞免受PCP的潜在毒性作用,从而使生理全细胞功能保持恒定。

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