Zhou Shungui, Chen Shanshan, Yuan Yong, Lu Qin
College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Guangdong Institute of Eco-environmental and Soil Sciences, Guangzhou 510650, China.
Sci Rep. 2015 Nov 23;5:17067. doi: 10.1038/srep17067.
Humic acids (HAs) can act as electron shuttles and mediate biogeochemical cycles, thereby influencing the transformation of nutrients and environmental pollutants. HAs commonly complex with metals in the environment, but few studies have focused on how these metals affect the roles of HAs in extracellular electron transfer (EET). In this study, HA-metal (HA-M) complexes (HA-Fe, HA-Cu, and HA-Al) were prepared and characterized. The electron shuttle capacities of HA-M complexes were experimentally evaluated through microbial Fe(III) reduction, biocurrent generation, and microbial azoreduction. The results show that the electron shuttle capacities of HAs were enhanced after complexation with Fe but were weakened when using Cu or Al. Density functional theory calculations were performed to explore the structural geometry of the HA-M complexes and revealed the best binding sites of the HAs to metals and the varied charge transfer rate constants (k). The EET activity of the HA-M complexes were in the order HA-Fe > HA-Cu > HA-Al. These findings have important implications for biogeochemical redox processes given the ubiquitous nature of both HAs and various metals in the environment.
腐殖酸(HAs)可作为电子穿梭体并介导生物地球化学循环,从而影响养分和环境污染物的转化。HAs在环境中通常与金属络合,但很少有研究关注这些金属如何影响HAs在细胞外电子转移(EET)中的作用。在本研究中,制备并表征了HA-金属(HA-M)络合物(HA-Fe、HA-Cu和HA-Al)。通过微生物铁(III)还原、生物电流产生和微生物偶氮还原实验评估了HA-M络合物的电子穿梭能力。结果表明,HAs与Fe络合后电子穿梭能力增强,而与Cu或Al络合时则减弱。进行了密度泛函理论计算以探索HA-M络合物的结构几何形状,并揭示了HAs与金属的最佳结合位点以及不同的电荷转移速率常数(k)。HA-M络合物的EET活性顺序为HA-Fe > HA-Cu > HA-Al。鉴于环境中HAs和各种金属的普遍存在,这些发现对生物地球化学氧化还原过程具有重要意义。