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应对农药污染:利用液体闪烁光谱法评估红树林芽孢杆菌属对碳标记六氯苯的去除情况

Combatting pesticide pollution: using liquid scintillation spectrometry to assess C-labeled hexachlorobenzene removal by mangrove Bacillus spp.

作者信息

Mota Wanessa J Santana, de Jesus Jessica R, Rego Ana P Justiniano, da Costa Ayslan S P, Tornisielo Valdemar L, Eguiluz Katlin I Barrios, Salazar-Banda Giancarlo R, Hernández-Macedo Maria L, López Jorge A

机构信息

Institute of Technology and Research, Aracaju, SE, 49032-490, Brazil.

Industrial Biotechnology Graduation Program, Tiradentes University, Aracaju, SE, 49032-490, Brazil.

出版信息

Biodegradation. 2025 Feb 7;36(1):18. doi: 10.1007/s10532-025-10113-9.

Abstract

This study explored the ability of two Bacillus species isolated from mangrove sediments to degrade hexachlorobenzene (HCB), a persistent organic pollutant that affects the quality of surface water, groundwater, and soil. Hence, we analyzed bacterial growth in a medium with hexachlorobenzene as the sole carbon source. Moreover, chemical oxygen demand removal, ecotoxicity, and measured radiolabeled HCB degradation were assessed. Our results revealed that both Bacillus strains (I3 and I6) demonstrated hexachlorobenzene-degrading potential and achieved degradation rates of 11.5 ± 1.47% and 21.1 ± 0.84%. Additionally, the ability of these strains to mineralize HCB was confirmed by the production of radiolabeled carbon dioxide, assessed by liquid scintillation spectrometry and thin-layer chromatography. Ecotoxicity assays further demonstrated the effectiveness of bacteria treatment in degrading HCB. These findings underscore the potential of Bacillus strains from mangrove sediments to degrade and mineralize HCB, opening new perspectives for the bioremediation of aromatic compounds in contaminated environments.

摘要

本研究探索了从红树林沉积物中分离出的两种芽孢杆菌降解六氯苯(HCB)的能力,六氯苯是一种持久性有机污染物,会影响地表水、地下水和土壤的质量。因此,我们分析了在以六氯苯作为唯一碳源的培养基中细菌的生长情况。此外,还评估了化学需氧量的去除、生态毒性以及测定的放射性标记六氯苯的降解情况。我们的结果显示,两种芽孢杆菌菌株(I3和I6)均表现出六氯苯降解潜力,降解率分别为11.5±1.47%和21.1±0.84%。此外,通过液体闪烁光谱法和薄层色谱法评估放射性标记二氧化碳的产生,证实了这些菌株矿化六氯苯的能力。生态毒性试验进一步证明了细菌处理降解六氯苯的有效性。这些发现强调了来自红树林沉积物的芽孢杆菌菌株降解和矿化六氯苯的潜力,为污染环境中芳香族化合物的生物修复开辟了新的前景。

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