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首页> 外文期刊>Journal of Biotechnology >Inhibition effect of isopropanol on acetyl-CoA synthetase expression level of acetoclastic methanogen, Methanosaeta concilii
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Inhibition effect of isopropanol on acetyl-CoA synthetase expression level of acetoclastic methanogen, Methanosaeta concilii

机译:异丙醇对乙酰碎裂性产甲烷菌甲烷单胞菌乙酰甲烷辅酶A合成酶表达水平的抑制作用

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摘要

Isopropanol is a widely found solvent in industrial wastewaters, which have commonly been treated using anaerobic systems. In this study, inhibitory effect of isopropanol on the key microbial group in anaerobic bioreactors, acetoclastic methanogens, was investigated. Anaerobic sludges in serum bottles were repeatedly fed with acetate and isopropanol; and quantitative real-time PCR was used for determining effect of isopropanol on the expression level of a key enzyme in acetoclastic methane production, acetyl-CoA synthetase of Methanosaeta concilii. Active Methanosaeta spp. cells were also quantified using Fluorescent in situ hybridization (FISH). Transcript abundance of acetyl-CoA synthetase was 1.23 +/- 0.62 x 10(6) mRNAs/mL in the uninhibited reactors with 222 mL cumulative methane production. First exposure to isopropanol resulted in 71.2%, 84.7%, 89.2% and 94.6% decrease in mRNA level and 35.0%, 65.0%, 91.5% and 100.0% reduction in methane production for isopropanol concentrations of 0.1 M, 0.5 M, 1.0 M and 2.0 M, respectively. Repeated exposures resulted in higher inhibitions; and at the end of test, fluorescent intensities of active Methanosaeta cells were significantly decreased due to isopropanol. The overall results indicated that isopropanol has an inhibitory effect on acetoclastic methanogenesis; and the inhibition can be detected by monitoring level of acetyl-CoA transcripts and rRNA level
机译:异丙醇是工业废水中广泛发现的溶剂,通常使用厌氧系统对其进行处理。在这项研究中,研究了异丙醇对厌氧生物反应器中的关键微生物基团(破裂菌产甲烷菌)的抑制作用。反复向血清瓶中的厌氧污泥中加入乙酸盐和异丙醇。实时荧光定量PCR测定异丙醇对产甲烷菌的关键酶,乙酰甲胺基辅酶A的乙酰辅酶A合成酶表达水平的影响。活跃的甲烷菌属。还使用荧光原位杂交(FISH)对细胞进行定量。在不受抑制的反应器中,乙酰辅酶A合成酶的转录本丰度为1.23 +/- 0.62 x 10(6)mRNAs / mL,累计甲烷产量为222 mL。首次接触异丙醇会导致mRNA水平分别降低71.2%,84.7%,89.2%和94.6%,而当异丙醇浓度为0.1 M,0.5 M,1.0 M和1.0 M时,甲烷生成量分别降低35.0%,65.0%,91.5%和100.0%。分别为2.0M。反复接触会产生更高的抑制作用。在测试结束时,由于异丙醇的作用,活性甲烷菌的细胞的荧光强度显着降低。总体结果表明,异丙醇对乙酰碎裂性甲烷生成具有抑制作用。通过监测乙酰辅酶A转录物水平和rRNA水平可以检测到抑制作用

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