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From the Cover: Long-distance electron transport in individual living cable bacteria

机译:从封面开始:单个活的细菌中的长距离电子传输

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摘要

Electron transport within living cells is essential for energy conservation in all respiring and photosynthetic organisms. While a few bacteria transport electrons over micrometer distances to their surroundings, filaments of cable bacteria are hypothesized to conduct electric currents over centimeter distances. We used resonance Raman microscopy to analyze cytochrome redox states in living cable bacteria. Cable-bacteria filaments were placed in microscope chambers with sulfide as electron source and oxygen as electron sink at opposite ends. Along individual filaments a gradient in cytochrome redox potential was detected, which immediately broke down upon removal of oxygen or laser cutting of the filaments. Without access to oxygen, a rapid shift toward more reduced cytochromes was observed, as electrons were no longer drained from the filament but accumulated in the cellular cytochromes. These results provide direct evidence for long-distance electron transport in living multicellular bacteria.
机译:活细胞内的电子运输对于所有呼吸和光合生物的能量节约至关重要。虽然少数细菌将电子在微米距离范围内传送到周围环境,但据推测电缆细菌的细丝可以在厘米范围内传导电流。我们使用共振拉曼显微镜分析了活索细菌中的细胞色素氧化还原状态。将电缆细菌细丝放置在显微镜室中,相对端以硫化物作为电子源,氧气作为电子宿。沿着单个细丝检测到细胞色素氧化还原电位的梯度,该梯度在除去氧气或激光切割细丝后立即分解。在没有氧气的情况下,观察到了向着更多还原的细胞色素的快速迁移,因为电子不再从细丝中流失,而是积聚在细胞色素中。这些结果为活多细胞细菌中远距离电子传输提供了直接的证据。

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