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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Iron-oxidizing bacteria in marine environments: recent progresses and future directions
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Iron-oxidizing bacteria in marine environments: recent progresses and future directions

机译:海洋环境中的铁氧化细菌:最近进展和未来的方向

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摘要

Iron-oxidizing bacteria (FeOB) refers to a group of bacteria with the ability to exchange and accumulate divalent iron dissolved in water as trivalent iron inside and outside the bacterial cell. Most FeOB belong the largest bacterial phylum, Proteobacteria. Within this phylum, FeOB with varying physiology with regards to their response to oxygen (obligate aerobes, facultative and obligate anaerobes) and pH optimum for proliferation (neutrophiles, moderate and extreme acidophiles) can be found. Although FeOB have been reported from a wide variety of environments, most of them have not been isolated and their biochemical characteristics remain largely unknown. This is especially true for those living in the marine realm, where the properties of FeOB was not known until the isolation of the Zetaproteobacteria Mariprofundus ferrooxydans, first reported in 2007. Since the proposal of Zetaproteobacteria by Emerson et al., the detection and isolation of those microorganisms from the marine environment has greatly escalated. Furthermore, FeOB have also recently been reported from works on ocean drilling and metal corrosion. This review aims to summarize the current state of phylogenetic and physiological diversity in marine FeOB, the significance of their roles in their environments (on both global and local scales), as well as their growing importance and applications in the industry.
机译:铁氧化细菌(FeoB)是指一组细菌,具有交换和积聚溶解在水中的二价铁作为细菌细胞内外的三价铁。大多数feob属于最大的细菌门植物,植物。在这种场上,可以发现对其对氧气的反应(非常简单的化学物质,致命性厌氧体)和PH值的增殖(中性蛋白,中度和极端嗜酸性)而异的病理学。虽然已经从各种环境中报道了Feof,但其中大多数都没有被隔离,其生化特征仍然很大程度上是未知的。对于生活在海洋领域的人尤其如此,其中FeoB的性质未知,直到2007年首次报道Zetaproteobacteria Mariprofundus ferrooxydans直到Zetaproteobacteria Mariprofundus。自从艾默生等人的提议,Zetaproteobacteria的提议,检测和隔离来自海洋环境的那些微生物大大升级。此外,最近也从河流钻井和金属腐蚀的工作中报道了FeoB。该审查旨在总结海洋Feob中的系统发育和生理多样性的现状,其在其环境中的角色(全球和当地尺度)以及它们在行业中越来越重要和应用。

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