部署在深海热液系统中的腐蚀金属装置产生的粘液状沉淀物中富集的微生物群加速了铁的腐蚀。

IF 2.1 4区 环境科学与生态学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Satoshi Wakai, Sanae Sakai, Tatsuo Nozaki, Masayuki Watanabe, Ken Takai
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引用次数: 0

摘要

微生物影响的腐蚀是指由微生物引起或促进的金属材料腐蚀。虽然在各种人工和自然淡水及海水环境中发现了一些新型铁腐蚀微生物,但尚未对深海中受微生物影响的腐蚀进行详细研究。在本研究中,我们从人工热液喷口上的地球化学反应器中收集了由腐蚀产物和微生物群落组成的粘液状沉淀物,历时 14.5 个月,进行了依赖培养和不依赖培养的微生物群落分析,并测量了腐蚀活性。在 37、50 和 70°C 温度条件下用零价铁颗粒进行富集培养后,一些微生物群落表现出加速铁溶解的现象,比非生物对照组高出约 10 到 50 倍。根据腐蚀加速比和 16S rRNA 基因的扩增子测序进行比较分析,推测出三种腐蚀类型:甲烷原诱导型、甲烷原-硫酸盐还原菌合作型和硫酸盐还原韧菌诱导型。甲烷菌诱导型和甲烷菌-硫酸盐还原菌合作型出现在 50°C 温度条件下,而硫酸盐还原性真菌诱导型出现在 37°C 温度条件下。本研究结果表明了与深海热液系统中受微生物影响的腐蚀有关的微生物成分,为开发未来深海资源的金属基础设施提供了重要启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerated Iron Corrosion by Microbial Consortia Enriched from Slime-like Precipitates from a Corroded Metal Apparatus Deployed in a Deep-sea Hydrothermal System.

Microbiologically influenced corrosion refers to the corrosion of metal materials caused or promoted by microorganisms. Although some novel iron-corrosive microorganisms have been discovered in various manmade and natural freshwater and seawater environments, microbiologically influenced corrosion in the deep sea has not been investigated in detail. In the present study, we collected slime-like precipitates composed of corrosion products and microbial communities from a geochemical reactor set on an artificial hydrothermal vent for 14.5 months, and conducted culture-dependent and -independent microbial community ana-lyses with corrosive activity measurements. After enrichment cultivation at 37, 50, and 70°C with zero-valent iron particles, some of the microbial consortia showed accelerated iron dissolution, which was approximately 10- to 50-fold higher than that of the abiotic control. In a comparative ana-lysis based on the corrosion acceleration ratio and amplicon sequencing of the 16S rRNA gene, three types of corrosion were estimated: the methanogen-induced type, methanogen-sulfate-reducing bacteria cooperative type, and sulfate-reducing Firmicutes-induced type. The methanogen-induced and methanogen-sulfate-reducing bacteria cooperative types were observed at 50°C, while the sulfate-reducing Firmicutes-induced type was noted at 37°C. The present results suggest the microbial components associated with microbiologically influenced corrosion in deep-sea hydrothermal systems, providing important insights for the development of future deep-sea resources with metal infrastructures.

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来源期刊
Microbes and Environments
Microbes and Environments 生物-生物工程与应用微生物
CiteScore
4.10
自引率
13.60%
发文量
66
审稿时长
3 months
期刊介绍: Microbial ecology in natural and engineered environments; Microbial degradation of xenobiotic compounds; Microbial processes in biogeochemical cycles; Microbial interactions and signaling with animals and plants; Interactions among microorganisms; Microorganisms related to public health; Phylogenetic and functional diversity of microbial communities; Genomics, metagenomics, and bioinformatics for microbiology; Application of microorganisms to agriculture, fishery, and industry; Molecular biology and biochemistry related to environmental microbiology; Methodology in general and environmental microbiology; Interdisciplinary research areas for microbial ecology (e.g., Astrobiology, and Origins of Life); Taxonomic description of novel microorganisms with ecological perspective; Physiology and metabolisms of microorganisms; Evolution of genes and microorganisms; Genome report of microorganisms with ecological perspective.
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