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首页> 外文期刊>Frontiers in Microbiology >Mediation of Extracellular Polymeric Substances in Microbial Reduction of Hematite by Shewanella oneidensis MR-1
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Mediation of Extracellular Polymeric Substances in Microbial Reduction of Hematite by Shewanella oneidensis MR-1

机译: oneidensis MR-1介导的微生物还原赤铁矿中的细胞外聚合物

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Extracellular electron transfer (EET) plays a fundamental role in microbial reduction/oxidation of minerals. Extracellular polymeric substances (EPS) surrounding the cells constitute a matrix that separates the cell’s outer membrane from insoluble minerals and environmental fluid. This study investigated the effects of EPS on EET processes during microbial reduction of hematite by the iron-reducing strain Shewanella oneidensis MR-1 (MR-1). Electrochemical characterization techniques were employed to determine the influence of EPS components on the redox ability of MR-1. Cells with removed EPS exhibited approximately 30% higher hematite reduction than regular MR-1 cells, and produced a current density of 56 μA cm ~(-2), corresponding to 3–4 fold that of regular MR-1. The superior EET of EPS-deprived cells could be attributed to direct contact between outer membrane proteins and hematite surface, as indicated by more redox peaks being detected by cyclic voltammetry and differential pulse voltammetry. The significantly reduced current density of MR-1 cells treated with proteinase K and deoxyribonuclease suggests that the electron transfer capacity across the EPS layer depends mainly on the spatial distribution of specific proteins and electron shuttles. Exopolysaccharides in EPS tend to inhibit electron transfer, however they also favor the attachment of cells onto hematite surfaces. Consistently, the charge transfer resistance of cells lacking EPS was only 116.3 Ω, approximately 44 times lower than that of regular cells (5,139.1 Ω). These findings point to a negative influence of EPS on EET processes for microbial reduction/oxidation of minerals.
机译:细胞外电子转移(EET)在微生物对矿物质的还原/氧化中起着基本作用。细胞周围的细胞外聚合物(EPS)构成一个基质,将细胞的外膜与不溶性矿物质和环境流体隔开。本研究调查了铁还原性希瓦氏菌(Shewanella oneidensis)MR-1(MR-1)对赤铁矿微生物还原过程中EPS对EET过程的影响。电化学表征技术被用来确定EPS成分对MR-1的氧化还原能力的影响。去除EPS的细胞比常规MR-1细胞具有约30%的赤铁矿减少,电流密度为56μAcm〜(-2),相当于常规MR-1的3-4倍。 EPS剥夺的细胞的优异EET可以归因于外膜蛋白与赤铁矿表面之间的直接接触,这可以通过循环伏安法和差分脉冲伏安法检测到更多的氧化还原峰来表明。用蛋白酶K和脱氧核糖核酸酶处理的MR-1细胞的电流密度显着降低,表明跨EPS层的电子转移能力主要取决于特定蛋白质和电子穿梭的空间分布。 EPS中的胞外多糖倾向于抑制电子转移,但是它们也有利于细胞附着在赤铁矿表面。一致地,缺乏EPS的电池的电荷转移电阻仅为116.3Ω,比普通电池(5,139.1Ω)低约44倍。这些发现表明,EPS对EET过程中矿物质的微生物还原/氧化具有负面影响。

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