Instituto de Química San Luis (INQUISAL), CONICET, Chacabuco 917, 5700 San Luis, Argentina; Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Chacabuco 917, 5700 San Luis, Argentina.
Division of Basic Biomedical Sciences Sanford School of Medicine, University of South Dakota, Vermillion, SD, USA.
J Hazard Mater. 2021 Jun 15;412:125216. doi: 10.1016/j.jhazmat.2021.125216. Epub 2021 Jan 23.
Acid mine drainage-affected environments are interesting microbial niches for the isolation of metal-resistant microorganisms. In this sense, the aim of the present work is to isolate and characterize metal-resistant microorganisms from sediments of an abandoned gold mine located in San Luis (Argentina). For these purposes, the metal removal capacity and the microelemental composition of the biomass exposed to metals were evaluated. Likewise, proteomic techniques were applied to understand the removal and resistance mechanisms. Fusarium tricinctum M6 was isolated and identified as tolerant to Cu(II), Fe(II) and Cr(VI). When faced with 40 µg mL Cu(II), the growth was affected by 60% and the removal capacity was 30-35%. Copper was found uniformly distributed in the biomass (5.23% w/w) and variations in the proportion of other biomass constituent elements were detected. When exposed to Cu(II), F. tricinctum M6 showed differential expression of intra and extracellular proteins involved in different metabolic processes. A large number of proteins with metal ion binding sites were detected both at intra and extracellular levels. The results obtained in the present work indicated bioadsorption of the metal on the cell surface and an important readjustment of the protein expression to counteract the stress produced by Cu(II).
受酸性矿山排水影响的环境是分离耐金属微生物的有趣微生物生态位。从这个意义上说,本工作的目的是从位于圣路易斯(阿根廷)的一个废弃金矿的沉积物中分离和表征耐金属微生物。为此,评估了暴露于金属时的金属去除能力和生物质的微量元素组成。同样,应用蛋白质组学技术来了解去除和抗性机制。从沉积物中分离和鉴定出耐 Cu(II)、Fe(II) 和 Cr(VI) 的镰孢菌(Fusarium tricinctum)M6。当面临 40μg/mL 的 Cu(II) 时,生长受到 60%的影响,去除能力为 30-35%。铜均匀分布在生物质中(5.23%w/w),并检测到其他生物质成分元素的比例发生变化。当暴露于 Cu(II) 时,F. tricinctum M6 表现出与不同代谢过程相关的细胞内和细胞外蛋白的差异表达。在细胞内和细胞外水平都检测到大量具有金属离子结合位点的蛋白质。本工作的结果表明金属在细胞表面的生物吸附和对蛋白质表达的重要调整,以抵消 Cu(II)产生的应激。