Key Laboratory of Biofuels, Shandong Provincial Key Laboratory of Energy Genetics, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Arch Microbiol. 2019 Sep;201(7):897-906. doi: 10.1007/s00203-019-01659-3. Epub 2019 Apr 16.
Humic acids are one of the main organic matters in sediments and contribute importantly to the marine biogeochemical cycles. Extracellular electron transfer is a ubiquitous natural process and has potentials to change the macrostructure of humic acids which can act as an electron shuttle. By setting up marine sediment microbial fuel cells, the present study revealed that enhanced extracellular electron transfer process could increase the content of C and H, but decrease the O content in humic acids, which could result in an increased aromaticity and decreased polarity of humic acids, whereas no significant changes occurred to the humification degree of the humic acids. Specific bacterial groups as potential exoelectrogens including Proteobacteria (especially Pseudomonas strains) and Firmicutes were enriched under enhanced extracellular electron transfer process, indicating that they were active to exchange electrons and might play important roles during the changes of humic acids, while the relative abundance of Verrucomicrobia and Bacteroidetes was reduced during these processes. The results of the present research shed lights on the relation between exoelectrogens and the transformation of humic acids in coastal sediment, while the microbial process and mechanisms behind it require further study.
腐殖酸是沉积物中主要的有机物质之一,对海洋生物地球化学循环有重要贡献。胞外电子传递是一种普遍存在的自然过程,具有改变腐殖酸宏观结构的潜力,腐殖酸可以作为电子穿梭体。通过建立海洋沉积物微生物燃料电池,本研究表明,增强的胞外电子传递过程可以增加腐殖酸中 C 和 H 的含量,但降低 O 的含量,这可能导致腐殖酸的芳香度增加,极性降低,而腐殖酸的腐殖化程度没有发生显著变化。在增强的胞外电子传递过程中,包括变形菌门(尤其是假单胞菌属)和厚壁菌门在内的特定细菌群作为潜在的外电子供体被富集,表明它们积极地交换电子,并可能在腐殖酸的变化过程中发挥重要作用,而疣微菌门和拟杆菌门的相对丰度则在这些过程中减少。本研究结果揭示了沿海沉积物中外电子供体与腐殖酸转化之间的关系,而其背后的微生物过程和机制需要进一步研究。