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利用海洋细菌海单胞菌属RS3对汞进行生物解毒及其在汞胁迫下merA基因的表达

Biodetoxification mercury by using a marine bacterium Marinomonas sp. RS3 and its merA gene expression under mercury stress.

作者信息

Al-Ansari Mysoon M

机构信息

Department of Botany and Microbiology, College of Science, King Saud University, Riyadh, 11451, Saudi Arabia.

出版信息

Environ Res. 2022 Apr 1;205:112452. doi: 10.1016/j.envres.2021.112452. Epub 2021 Nov 29.

DOI:10.1016/j.envres.2021.112452
PMID:34856165
Abstract

Mercury (Hg) pollution in water has been a problem for the ecosystem and human health, thus eco-friendly remediation methods are gaining traction around the world. In this study, a bacterial strain designated as RS3 isolated from the Red Sea (Saudi Arabia) has shown tolerance to more than 250 mg/L of Hg on minimum inhibitory studies. The isolate RS3 was identified as Marinomonas sp., (Accession No: OK271312) using 16s rRNA sequencing. Tracing the growth curve for the RS3 showed that maximum growth attained at 72 h and only 10% reduction than the control medium for 50 mg/L HgCl supplemented seawater medium, which continued to reduce as 21% to 60 with the increment of HgCl from 100 to 350 mg/L. The Hg removal potential of RS3 is observed to be 78% at 50 mg/L HgCl/72 h, which is significantly altered with the addition of carbon source such as glucose (84.5%) > fructose (79.8%) > control (78%) > citrate (73.4%) > acetate (60.2%) > maltose (54.7%). Box-Behnken design (BBD) well proposed a model with R value of 0.8922, which predict a utmost Hg removal of 89.5% by RS2 at favorable conditions (pH-7; NaC 1% and glucose 5%) at 72 h. Mercuric reductase enzyme encoded merA gene expression was found to be high in RS3 isolates cultivated in 100 mg/L of HgCl in comparison with other variables. Thus the seawater isolate Marinomonas sp. RS3 expressed a significant tolerance and removal potential towards the Hg, which would make it is a noteworthy applicant for effective mercury remediation practices.

摘要

水中的汞(Hg)污染一直是影响生态系统和人类健康的问题,因此,环保型修复方法在全球越来越受到关注。在本研究中,从红海(沙特阿拉伯)分离出的一株名为RS3的细菌菌株在最低抑菌研究中显示出对超过250mg/L汞的耐受性。使用16s rRNA测序将分离株RS3鉴定为海单胞菌属(登录号:OK271312)。追踪RS3的生长曲线表明,在补充了50mg/L HgCl的海水培养基中,72小时达到最大生长,比对照培养基仅降低10%,随着HgCl从100mg/L增加到350mg/L,降低幅度持续增加至21%至60%。观察到RS3在50mg/L HgCl/72小时时的汞去除潜力为78%,添加碳源(如葡萄糖(84.5%)>果糖(79.8%)>对照(78%)>柠檬酸盐(7

3.4%)>醋酸盐(60.2%)>麦芽糖(54.7%))后,汞去除潜力有显著变化。Box-Behnken设计(BBD)很好地提出了一个R值为0.8922的模型,该模型预测在有利条件(pH-7;NaCl 1%和葡萄糖5%)下,RS2在72小时时的最大汞去除率为89.5%。发现与其他变量相比,在100mg/L HgCl中培养的RS3分离株中,编码汞还原酶的merA基因表达较高。因此,海水分离株海单胞菌属RS3对汞表现出显著的耐受性和去除潜力,这使其成为有效汞修复实践的一个值得关注的候选者。

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