Tan Ao-Bo, Wang Hui, Ji Jiang-Tao, Yao Han-Yue, Tang Hong-Yan
School of Chemistry & Chemical Engineering, Henan University of Science and Technology, Luoyang, 471000, China.
College of Agricultural Equipment Engineering, Henan University of Science and Technology, Luoyang, 471000, China.
Int Microbiol. 2025 Mar;28(3):525-538. doi: 10.1007/s10123-024-00559-x. Epub 2024 Jul 19.
In this study, the mercury-tolerant strain LTC105 was isolated from a contaminated soil sample collected from a molybdenum-lead mine in Luanchuan County, Henan Province, China. The strain was shown to be highly resistant to mercury, with a minimum inhibitory concentration (MIC) of 32 mg·L. After a 24-h incubation in LB medium with 10 mg·L Hg, the removal, adsorption, and volatilization rates of Hg were 97.37%, 7.3%, and 90.07%, respectively, indicating that the strain had significant influence on mercury removal. Based on the results of Fourier infrared spectroscopy (FTIR) and scanning electron microscopy (SEM), the investigation revealed that the primary function of LTC105 was to encourage the volatilization of mercury. The LTC105 strain also showed strong tolerance to heavy metals such as Mn, Zn, and Pb. According to the results of the soil incubation test, the total mercury removal rate of the LTC105 inoculation increased by 16.34% when the initial mercury concentration of the soil was 100 mg·L and by 62.28% when the initial mercury concentration of the soil was 50 mg·kg. These findings indicate that LTC105 has certain bioremediation ability for Hg-contaminated soil and is a suitable candidate strain for microbial remediation of heavy metal-contaminated soil in mining areas.
在本研究中,耐汞菌株LTC105是从中国河南省栾川县某钼铅矿采集的污染土壤样本中分离得到的。该菌株对汞具有高度抗性,最低抑菌浓度(MIC)为32 mg·L。在含有10 mg·L汞的LB培养基中培养24小时后,汞的去除率、吸附率和挥发率分别为97.37%、7.3%和90.07%,表明该菌株对汞的去除有显著影响。基于傅里叶红外光谱(FTIR)和扫描电子显微镜(SEM)的结果,研究发现LTC105的主要功能是促进汞的挥发。LTC105菌株对锰、锌和铅等重金属也表现出较强的耐受性。根据土壤培养试验结果,当土壤初始汞浓度为100 mg·L时,接种LTC105后的总汞去除率提高了16.34%;当土壤初始汞浓度为50 mg·kg时,总汞去除率提高了62.28%。这些发现表明,LTC105对汞污染土壤具有一定的生物修复能力,是矿区重金属污染土壤微生物修复的合适候选菌株。