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Toxic effects of chromium(VI) on anaerobic and aerobic growth of Shewanella oneidensis MR-1

机译:六价铬对拟南芥菜MR-1厌氧和好氧生长的毒性作用

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Cr(VI) was added to early- and mid-log-phase Shewanella oneidensis (S. oneidensis) MR-1 cultures to study the physiological state-dependent toxicity of Cr(VI). Cr(VI) reduction and culture growth were measured during and after Cr(VI) reduction. Inhibition of growth was observed when Cr(VI) was added to cultures of MR-1 growing aerobically or anaerobically with fumarate as the terminal electron acceptor. Under anaerobic conditions, there was immediate cessation of growth upon addition of Cr(VI) in early- and mid-log-phase cultures. However, once Cr(VI) was reduced below detection limits (0.002 mM), the cultures resumed growth with normal cell yield values observed. In contrast to anaerobic MR-1 cultures, addition of Cr(VI) to aerobically growing cultures resulted in a gradual decrease of the growth rate. In addition, under aerobic conditions, lower cell yields were also observed with Cr(VI)-treated cultures when compared to cultures that were not exposed to Cr(VI). Differences in response to Cr(VI) between aerobically and anaerobically growing cultures indicate that Cr(VI) toxicity in MR-1 is dependent on the physiological growth condition of the culture. Cr(VI) reduction has been previously studied in Shewanella spp., and it has been proposed that Shewanella spp. may be used in Cr(VI) bioremediation systems. Studies of Shewanella spp. provide valuable information on the microbial physiology of dissimilatory metal reducing bacteria; however, our study indicates that S. oneidensis MR-1 is highly susceptible to growth inhibition by Cr(VI) toxicity, even at low concentrations [0.015 mM Cr(VI)].
机译:将Cr(VI)添加到对数早期和中期对虾希瓦氏菌(S. oneidensis)MR-1培养物中,以研究Cr(VI)的生理状态依赖性毒性。在Cr(VI)还原期间和之后测量Cr(VI)的减少和培养物的生长。将Cr(VI)添加到以富马酸酯为末端电子受体的需氧或厌氧生长的MR-1培养物中,观察到了生长抑制作用。在厌氧条件下,对数和中期对数培养物中添加Cr(VI)会立即停止生长。但是,一旦Cr(VI)降低到检测限以下(0.002 mM),培养物就恢复了正常细胞产量值的生长。与厌氧MR-1培养相比,向需氧生长的培养物中添加Cr(VI)会导致生长速率逐渐降低。另外,在有氧条件下,与未暴露于Cr(VI)的培养物相比,用Cr(VI)处理的培养物也观察到较低的细胞产量。有氧和厌氧培养物对Cr(VI)的响应差异表明,MR-1中的Cr(VI)毒性取决于培养物的生理生长条件。先前已经在Shewanella spp。中研究了Cr(VI)的还原,并且已经提出了Shewanella spp.。可用于六价铬生物修复系统。希瓦氏菌的研究。提供有关异化金属还原细菌的微生物生理学的有价值的信息;但是,我们的研究表明,即使在低浓度[0.015 mM Cr(VI)]下,oneidensis MR-1仍很容易受到Cr(VI)毒性的生长抑制。

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