Extracellular electron uptake by autotrophic microbes: physiological, ecological, and evolutionary implications.

Abstract:

:Microbes exchange electrons with their extracellular environment via direct or indirect means. This exchange is bidirectional and supports essential microbial oxidation-reduction processes, such as respiration and photosynthesis. The microbial capacity to use electrons from insoluble electron donors, such as redox-active minerals, poised electrodes, or even other microbial cells is called extracellular electron uptake (EEU). Autotrophs with this capability can thrive in nutrient and soluble electron donor-deficient environments. As primary producers, autotrophic microbes capable of EEU greatly impact microbial ecology and play important roles in matter and energy flow in the biosphere. In this review, we discuss EEU-driven autotrophic metabolisms, their mechanism and physiology, and highlight their ecological, evolutionary, and biotechnological implications.

authors

Gupta D,Guzman MS,Bose A

doi

10.1007/s10295-020-02309-0

subject

Has Abstract

pub_date

2020-10-01 00:00:00

pages

863-876

issue

9-10

eissn

1367-5435

issn

1476-5535

pii

10.1007/s10295-020-02309-0

journal_volume

47

pub_type

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