Exploration on the mechanism of Cr(VI) bioreduction by a novel cold and salt tolerant bacteria Algoriphagus sp. CM16 isolated from marine sediment

IF 6.7 2区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
WenZhao Li , Meng Wang , Dong Xiao , Yuzhong Zhang , YiDan Chen , TingTing Tang , ZhaoLi Li , YuPing Dai , BaiLu Tang , HaiLun He
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引用次数: 0

Abstract

Hexavalent chromium pollution, a hazardous heavy metal contamination, poses grave risks to human health, finding environmentally friendly ways to treat hexavalent chromium has become an urgent scientific problem. In this study, a novel marine hexavalent chromium-reducing strain, Algoriphagus sp. CM16 was discovered, the first report of a chromium-reducing bacterium of the genus Algoriphagus. CM16 exhibits exceptional reduction capacity at lower temperature (25°C) and higher salinity (3 %), removing 85.3 % of 50 mg/L chromium within 48 h, unaffected by heavy metal ions and anions (NO3²⁻, SO4²⁻). Utilizing diverse carbon source and electron mediators, CM16 significantly accelerates Cr(VI) removal. Strain CM16 mainly reduces Cr(VI) to trivalent chromium in the cytoplasm and cell envelope and forming an amorphous precipitate while producing massive Catalase(CAT) and Superoxide Dismutase(SOD) to effectively protect the cells from oxidative damage caused by Reactive Oxygen Species(ROS) during the reduction process. Furthermore, the whole-genome sequencing analysis suggested that CM16's robust chromium reduction capabilities and elevated levels of antioxidant enzymes may stem from a long-term adaptation strategy to harsh polar environments. Due to high chromium reduction efficiency, high salt tolerance properties, and high content of antioxidant enzymes, Algoriphagus sp. CM16 is predicted to be used for bioremediation of metal-contaminated and high-salt environments.
从海洋沉积物中分离的新型耐冷耐盐细菌Algoriphagus sp. CM16生物还原Cr(VI)的机理探讨
六价铬污染是一种严重危害人类健康的重金属污染,寻找环境友好的方法处理六价铬已成为迫切需要解决的科学问题。本研究发现了一种新的海洋六价铬还原菌Algoriphagus sp. CM16,这是首次报道的Algoriphagus属的铬还原细菌。CM16在较低温度(25°C)和较高盐度(3 %)下表现出卓越的还原能力,在48 h内去除50 mg/L的85.3 %的铬,不受重金属离子和阴离子(NO3²,SO4²毒血症)的影响。利用多种碳源和电子介质,CM16显著加速了Cr(VI)的去除。菌株CM16主要将细胞质和细胞膜中的Cr(VI)还原为三价铬并形成无定形沉淀,同时产生大量过氧化氢酶(CAT)和超氧化物歧化酶(SOD),有效保护细胞免受还原过程中活性氧(ROS)的氧化损伤。此外,全基因组测序分析表明,CM16强大的铬还原能力和抗氧化酶水平的升高可能源于对恶劣极地环境的长期适应策略。Algoriphagus sp. CM16具有高铬还原效率、高耐盐性和高抗氧化酶含量等特点,有望用于金属污染和高盐环境的生物修复。
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来源期刊
Environmental Technology & Innovation
Environmental Technology & Innovation Environmental Science-General Environmental Science
CiteScore
14.00
自引率
4.20%
发文量
435
审稿时长
74 days
期刊介绍: Environmental Technology & Innovation adopts a challenge-oriented approach to solutions by integrating natural sciences to promote a sustainable future. The journal aims to foster the creation and development of innovative products, technologies, and ideas that enhance the environment, with impacts across soil, air, water, and food in rural and urban areas. As a platform for disseminating scientific evidence for environmental protection and sustainable development, the journal emphasizes fundamental science, methodologies, tools, techniques, and policy considerations. It emphasizes the importance of science and technology in environmental benefits, including smarter, cleaner technologies for environmental protection, more efficient resource processing methods, and the evidence supporting their effectiveness.
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