Zavala-Meneses Sofía G, Firrincieli Andrea, Chalova Petra, Pajer Petr, Checcucci Alice, Skultety Ludovit, Cappelletti Martina
Institute of Microbiology, Czech Academy of Sciences, Videnska 1083, 14220 Prague, Czech Republic.
Faculty of Science, Charles University, Vinicna 5, 12844 Prague, Czech Republic.
Microorganisms. 2024 Apr 8;12(4):753. doi: 10.3390/microorganisms12040753.
In this study, we conducted an extensive investigation of the biodegradation capabilities and stress response of the newly isolated strain SM-20 in order, to assess its potential for bioremediation of sites contaminated with polycyclic aromatic hydrocarbons (PAHs). Initially, phenotype microarray technology demonstrated the strain's proficiency in utilizing various carbon sources and its resistance to certain stressors. Genomic analysis has identified numerous genes involved in aromatic hydrocarbon metabolism. Biodegradation assay analyzed the depletion of phenanthrene (PHE) when it was added as a sole carbon and energy source. We found that strain SM-20 degraded approximately 25% of PHE over a 30-day period, starting with an initial concentration of 600 µg/mL, while being utilized for growth. The degradation process involved PHE oxidation to an unstable arene oxide and 9,10-phenanthrenequinone, followed by ring-cleavage. Comparative proteomics provided a comprehensive understanding of how the entire proteome responded to PHE exposure, revealing the strain's adaptation in terms of aromatic metabolism, surface properties, and defense mechanism. In conclusion, our findings shed light on the promising attributes of SM-20 and offer valuable insights for the use of species in environmental restoration efforts targeting PAH-impacted sites.
在本研究中,我们对新分离的菌株SM - 20的生物降解能力和应激反应进行了广泛调查,以评估其对多环芳烃(PAHs)污染场地进行生物修复的潜力。最初,表型微阵列技术证明了该菌株在利用各种碳源方面的能力以及对某些应激源的抗性。基因组分析确定了许多参与芳烃代谢的基因。生物降解试验分析了菲(PHE)作为唯一碳源和能源添加时的消耗情况。我们发现,菌株SM - 20在初始浓度为600 µg/mL的情况下,经过30天的生长,降解了约25%的PHE。降解过程包括PHE氧化为不稳定的环氧芳烃和9,10 - 菲醌,随后进行环裂解。比较蛋白质组学全面了解了整个蛋白质组对PHE暴露的反应,揭示了该菌株在芳烃代谢、表面特性和防御机制方面的适应性。总之,我们的研究结果揭示了SM - 20的潜在优势,并为在针对PAH污染场地的环境修复工作中使用该菌株提供了有价值的见解。