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以直接种间电子传递作为主要能量交换机制的共代谢生长。

Syntrophic growth with direct interspecies electron transfer as the primary mechanism for energy exchange.

机构信息

Department of Microbiology, University of Massachusetts, Amherst, MA, 01003, USA.

出版信息

Environ Microbiol Rep. 2013 Dec;5(6):904-10. doi: 10.1111/1758-2229.12093. Epub 2013 Sep 12.

Abstract

Direct interspecies electron transfer (DIET) through biological electrical connections is an alternative to interspecies H2 transfer as a mechanism for electron exchange in syntrophic cultures. However, it has not previously been determined whether electrons received via DIET yield energy to support cell growth. In order to investigate this, co-cultures of Geobacter metallireducens, which can transfer electrons to wild-type G. sulfurreducens via DIET, were established with a citrate synthase-deficient G. sulfurreducens strain that can receive electrons for respiration through DIET only. In a medium with ethanol as the electron donor and fumarate as the electron acceptor, co-cultures with the citrate synthase-deficient G. sulfurreducens strain metabolized ethanol as fast as co-cultures with wild-type, but the acetate that G. metallireducens generated from ethanol oxidation accumulated. The lack of acetate metabolism resulted in less fumarate reduction and lower cell abundance of G. sulfurreducens. RNAseq analysis of transcript abundance was consistent with a lack of acetate metabolism in G. sulfurreducens and revealed gene expression levels for the uptake hydrogenase, formate dehydrogenase, the pilus-associated c-type cytochrome OmcS and pili consistent with electron transfer via DIET. These results suggest that electrons transferred via DIET can serve as the sole energy source to support anaerobic respiration.

摘要

直接种间电子转移(DIET)通过生物电连接是一种替代种间 H2 转移的机制,用于协同培养物中的电子交换。然而,此前尚未确定通过 DIET 接收的电子是否产生能量来支持细胞生长。为了研究这一点,建立了可以通过 DIET 将电子转移到野生型 G. sulfurreducens 的 Geobacter metallireducens 共培养物,与柠檬酸合酶缺陷型 G. sulfurreducens 菌株建立共培养物,该菌株只能通过 DIET 接收电子进行呼吸。在以乙醇作为电子供体和富马酸盐作为电子受体的培养基中,与野生型相比,柠檬酸合酶缺陷型 G. sulfurreducens 菌株的共培养物能够快速代谢乙醇,但 G. metallireducens 从乙醇氧化产生的乙酸盐积累。缺乏乙酸盐代谢导致富马酸盐还原减少,G. sulfurreducens 的细胞丰度降低。转录物丰度的 RNAseq 分析与 G. sulfurreducens 中缺乏乙酸盐代谢一致,并揭示了摄取氢酶、甲酸脱氢酶、菌毛相关 c 型细胞色素 OmcS 和菌毛的基因表达水平,这些都与通过 DIET 进行电子转移一致。这些结果表明,通过 DIET 传递的电子可以作为唯一的能源来支持厌氧呼吸。

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