化学
产甲烷
巴氏甲烷八叠球菌
硫化地杆菌
地杆菌
磁铁矿
电子受体
电子转移
无机化学
环境化学
生物化学
甲烷
细菌
有机化学
生物
材料科学
冶金
生物膜
遗传学
作者
Oumei Wang,Shiling Zheng,Bing-Chen Wang,Wenjing Wang,Fanghua Liu
出处
期刊:PeerJ
[PeerJ, Inc.]
日期:2018-03-21
卷期号:6: e4541-e4541
被引量:18
摘要
Background Magnetite-mediated direct interspecies electron transfer (DIET) between Geobacter and Methanosarcina species is increasingly being invoked to explain magnetite stimulation of methane production in anaerobic soils and sediments. Although magnetite-mediated DIET has been documented in defined co-cultures reducing fumarate or nitrate as the electron acceptor, the effects of magnetite have only been inferred in methanogenic systems. Methods Concentrations of methane and organic acid were analysed with a gas chromatograph and high-performance liquid chromatography, respectively. The concentration of HCl-extractable Fe(II) was determined by the ferrozine method. The association of the defined co-cultures of G. metallireducens and M. barkeri with magnetite was observed with transmission electron micrographs. Results Magnetite stimulated ethanol metabolism and methane production in defined co-cultures of G. metallireducens and M. barkeri ; however, magnetite did not promote methane production in co-cultures initiated with a culture of G. metallireducens that could not produce electrically conductive pili (e-pili), unlike the conductive carbon materials that facilitate DIET in the absence of e-pili. Transmission electron microscopy revealed that G. metallireducens and M. barkeri were closely associated when magnetite was present, as previously observed in G. metallireducens/G. sulfurreducens co-cultures. These results show that magnetite can promote DIET between Geobacter and Methanosarcina species, but not as a substitute for e-pili, and probably functions to facilitate electron transfer from the e-pili to Methanosarcina . Conclusion In summary, the e-pili are necessary for the stimulation of not only G. metallireducens/G. sulfurreducens , but also methanogenic G. metallireducens/M. barkeri co-cultures with magnetite.
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