Ruan Xiao-Hui, Qian Ya-Jie, Xue Gang, Gao Pin
State Environmental Protection Engineering Center for Pollution Treatment and Control in Textile Industry, College of Environmental Science and Engineering, Donghua University, Shanghai 201620, China.
Huan Jing Ke Xue. 2020 Feb 8;41(2):823-830. doi: 10.13227/j.hjkx.201907209.
Tetracycline resistant bacteria (TRB) screened from activated sludge were used to study the effect of tetracycline (TC) antibiotic on the transcriptional expression of tetracycline resistance genes (TC-ARGs). The gene abundances of seven TC-ARGs including , , , , , , and , as well as their expression levels, were quantified by quantitative PCR (qPCR) and reverse transcriptional PCR (RT-PCR). The correlations between TC concentrations and gene abundance of TC-ARGs and their expression levels were discussed. The results showed that the gene abundances of , and generally increased with increasing TC exposure concentrations during the entire culture cycle, whereas other TC-ARGs fluctuated greatly. The impact of TC stress on the transcriptional expression level of different TC-ARGs varied to a great extent. The gene expression of was relatively stable and exhibited an upregulated trend with increasing TC concentrations. When the TC concentration was 100 mg·L, the upregulation of expression was as high as 5.3-fold compared with the control. Under short-term TC stress (one day), the transcriptional expression level was upregulated with increasing TC concentration. The correlation results showed that gene abundances of and correlated significantly with their respective expression levels, indicating that they can evaluate expression levels to a certain extent, which can further mirror functional activities and environmental risks.
从活性污泥中筛选出的四环素抗性细菌(TRB)用于研究四环素(TC)抗生素对四环素抗性基因(TC-ARGs)转录表达的影响。通过定量聚合酶链反应(qPCR)和逆转录聚合酶链反应(RT-PCR)对包括、、、、、、和在内的7种TC-ARGs的基因丰度及其表达水平进行了定量分析。探讨了TC浓度与TC-ARGs基因丰度及其表达水平之间的相关性。结果表明,在整个培养周期中,、和的基因丰度一般随TC暴露浓度的增加而增加,而其他TC-ARGs波动较大。TC胁迫对不同TC-ARGs转录表达水平的影响差异很大。的基因表达相对稳定,且随TC浓度的增加呈上调趋势。当TC浓度为100 mg·L时,与对照相比,的表达上调高达5.3倍。在短期TC胁迫(一天)下,转录表达水平随TC浓度的增加而上调。相关性结果表明,和的基因丰度与它们各自的表达水平显著相关,表明它们在一定程度上可以评估表达水平,进而反映功能活性和环境风险。