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Isolation and Genomic Characterization of ‘ Desulfuromonas soudanensis WTL’, a Metal- and Electrode-Respiring Bacterium from Anoxic Deep Subsurface Brine

机译:厌氧性深层地下卤水中具有金属和电极呼吸作用的细菌“ S。Suudanensis WTL”的分离和基因组学表征

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Reaching a depth of 713 m below the surface, the Soudan Underground Iron Mine (Soudan, MN, USA) transects a massive Archaean (2.7 Ga) banded iron formation, providing a remarkably accessible window into the terrestrial deep biosphere. Despite organic carbon limitation, metal-reducing microbial communities are present in potentially ancient anoxic brines continuously emanating from exploratory boreholes on Level 27. Using graphite electrodes deposited in situ as bait, we electrochemically enriched and isolated a novel halophilic iron-reducing Deltaproteobacterium, ‘ Desulfuromonas soudanensis ’ strain WTL, from an acetate-fed three-electrode bioreactor poised at +0.24 V (vs. standard hydrogen electrode). Cyclic voltammetry revealed that ‘ D. soudanensis ’ releases electrons at redox potentials approximately 100 mV more positive than the model freshwater surface isolate Geobacter sulfurreducens , suggesting that its extracellular respiration is tuned for higher potential electron acceptors. ‘ D. soudanensis ’ contains a 3,958,620-bp circular genome, assembled to completion using single-molecule real-time (SMRT) sequencing reads, which encodes a complete TCA cycle, 38 putative multiheme c -type cytochromes, one of which contains 69 heme-binding motifs, and a LuxI/LuxR quorum sensing cassette that produces an unidentified N- acyl homoserine lactone. Another cytochrome is predicted to lie within a putative prophage, suggesting that horizontal gene transfer plays a role in respiratory flexibility among metal reducers. Isolation of ‘ D. soudanensis ’ underscores the utility of electrode-based approaches for enriching rare metal reducers from a wide range of habitats.
机译:Soudan地下铁矿(位于美国明尼苏达州索丹)的深度达地表以下713 m,横穿了一块大型的太古宙带(2.7 Ga)带状铁矿层,为进入陆地深层生物圈提供了非常方便的窗口。尽管存在有机碳限制,但在第27级勘探井不断散发出来的潜在古老缺氧盐水中仍存在着还原金属的微生物群落。我们使用就地沉积的石墨电极作为诱饵,电化学富集和分离了一种新型的嗜盐铁还原三角洲变形杆菌,即脱硫尿单胞菌。 soudanensis菌株WTL,来自醋酸盐喂养的三电极生物反应器,蓄压于+0.24 V(与标准氢电极相比)。循环伏安法表明,“ D。soudanensis”以比模型淡水表面分离物Geobacter sulfreducens高约100 mV的氧化还原电势释放电子,这表明其细胞外呼吸适合于更高电势的电子受体。 'D. soudanensis'包含一个3,958,620-bp的环状基因组,使用单分子实时(SMRT)测序读段组装完成,该读段编码一个完整的TCA循环,有38种假定的多血红素c型细胞色素,其中一种包含69个血红素-结合基序,以及产生未知N-酰基高丝氨酸内酯的LuxI / LuxR群体感应盒。预计另一种细胞色素位于推定的噬菌体中,表明水平基因转移在金属还原剂之间的呼吸柔韧性中起作用。分离出“ D. soudanensis”强调了基于电极的方法可从多种生境中富集稀有金属还原剂的实用性。

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