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候选聚集细菌在电缆细菌沉积物中表达的细胞外电子转移基因。

Extracellular electron transfer genes expressed by candidate flocking bacteria in cable bacteria sediment.

作者信息

Lustermans Jamie J M, Sereika Mantas, Burdorf Laurine D W, Albertsen Mads, Schramm Andreas, Marshall Ian P G

机构信息

Center for Electromicrobiology, Department of Biology, Aarhus University, Aarhus, Denmark.

Microbial Systems Technology Excellence Centre, University of Antwerp, Wilrijk, Belgium.

出版信息

mSystems. 2025 Jan 21;10(1):e0125924. doi: 10.1128/msystems.01259-24. Epub 2024 Dec 19.

Abstract

UNLABELLED

Cable bacteria, filamentous sulfide oxidizers that live in sulfidic sediments, are at times associated with large flocks of swimming bacteria. It has been proposed that these flocks of bacteria transport electrons extracellularly to cable bacteria via an electron shuttle intermediate, but the identity and activity of these bacteria in freshwater sediment remain mostly uninvestigated. Here, we elucidate the electron exchange capabilities of the bacterial community by coupling metagenomics and metatranscriptomics to 16S rRNA amplicon-based correlations with cable bacteria over 155 days. We identified candidate flocking bacteria as bacteria containing genes for motility and extracellular electron transfer including synthesis genes for potential extracellular electron shuttles: phenazines and flavins. Based on these criteria, 22 MAGs were from candidate flockers, which constituted 21.4% of all 103 MAGs. Of the candidate flocking bacteria, 42.1% expressed extracellular electron transfer genes. The proposed flockers belonged to a large variety of metabolically versatile taxonomic groups: 18 genera spread across nine phyla. Our data suggest that cable bacteria in freshwater sediments engage in electric relationships with diverse exoelectrogenic microbes. This community, found in deeper anoxic sediment layers, is involved in sulfur, carbon, and metal (in particular Fe) cycling and indirectly utilizes oxygen here by extracellularly transferring electrons to cable bacteria.

IMPORTANCE

Cable bacteria are ubiquitous, filamentous bacteria that couple sulfide oxidation to the reduction of oxygen at up to centimeter distances in sediment. Cable bacterial impact extends beyond sulfide oxidation via interactions with other bacteria that flock around cable bacteria and use them as electron acceptor "shortcut" to oxygen. The exact nature of this interspecies electric interaction remained unknown. With metagenomics and metatranscriptomics, we determined what extracellular electron transport processes co-occur with cable bacteria, demonstrating the identity and metabolic capabilities of these potential flockers. In sediments, microbial activities are sharply divided into anaerobic and aerobic processes, with oxygen reaching only millimeters deep. Cable bacteria extend the influence of oxygen to several centimeters, revealing a new class of anaerobic microbial metabolism with cable bacteria as electron acceptors. This fundamentally changes our understanding of sediment microbial ecology with wide-reaching consequences for sulfur, metal (in particular Fe), and carbon cycling in freshwater and marine sediments.

摘要

未标记

电缆细菌是生活在含硫沉积物中的丝状硫化物氧化菌,有时与大量游动细菌群有关。有人提出,这些细菌群通过电子穿梭中间体将电子胞外转运至电缆细菌,但这些细菌在淡水沉积物中的身份和活性大多仍未得到研究。在此,我们通过将宏基因组学和宏转录组学与基于16S rRNA扩增子的与电缆细菌的相关性相结合,在155天的时间里阐明了细菌群落的电子交换能力。我们将候选聚群细菌鉴定为含有运动性和胞外电子转移基因的细菌,包括潜在胞外电子穿梭体(吩嗪和黄素)的合成基因。基于这些标准,22个宏基因组组装基因组(MAGs)来自候选聚群细菌,占所有103个MAGs的21.4%。在候选聚群细菌中,42.1%表达胞外电子转移基因。所提出的聚群细菌属于多种代谢功能多样的分类群:分布在9个门的18个属。我们的数据表明,淡水沉积物中的电缆细菌与多种产电微生物存在电关系。这个群落存在于更深的缺氧沉积层中,参与硫、碳和金属(特别是铁)的循环,并通过向电缆细菌胞外转移电子在此间接利用氧气。

重要性

电缆细菌是普遍存在的丝状细菌,它们在沉积物中能将硫化物氧化与氧气还原耦合起来,距离可达厘米级。电缆细菌的影响不仅限于硫化物氧化,还通过与聚集在电缆细菌周围并将其用作通向氧气的电子受体“捷径”的其他细菌相互作用。这种种间电相互作用的确切性质仍然未知。通过宏基因组学和宏转录组学,我们确定了哪些胞外电子传输过程与电缆细菌同时发生,证明了这些潜在聚群细菌的身份和代谢能力。在沉积物中,微生物活动被明显分为厌氧和好氧过程,氧气只能到达几毫米深的地方。电缆细菌将氧气的影响扩展到几厘米,揭示了一类以电缆细菌为电子受体的新型厌氧微生物代谢。这从根本上改变了我们对沉积微生物生态学的理解,对淡水和海洋沉积物中的硫、金属(特别是铁)和碳循环产生广泛影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ef8/11748539/1f82ee4d9f5b/msystems.01259-24.f001.jpg

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