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Acetylenotrophy: a hidden but ubiquitous microbial metabolism?

机译:乙酰营养不良:隐藏但无处不在的微生物代谢?

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摘要

Acetylene (IUPAC name: ethyne) is a colorless, gaseous hydrocarbon, composed of two triple bonded carbon atoms attached to hydrogens (C H ). When microbiologists and biogeochemists think of acetylene, they immediately think of its use as an inhibitory compound of certain microbial processes and a tracer for nitrogen fixation. However, what is less widely known is that anaerobic and aerobic microorganisms can degrade acetylene, using it as a sole carbon and energy source and providing the basis of a microbial food web. Here, we review what is known about acetylene degrading organisms and introduce the term 'acetylenotrophs' to refer to the microorganisms that carry out this metabolic pathway. In addition, we review the known environmental sources of acetylene and postulate the presence of an hidden acetylene cycle. The abundance of bacteria capable of using acetylene and other alkynes as an energy and carbon source suggests that there are energy cycles present in the environment that are driven by acetylene and alkyne production and consumption that are isolated from atmospheric exchange. Acetylenotrophs may have developed to leverage the relatively high concentrations of acetylene in the pre-Cambrian atmosphere, evolving later to survive in specialized niches where acetylene and other alkynes were produced.
机译:乙炔(IUPAC名称:乙炔)是一种无色的气态烃,由两个与氢(C H)连接的三键碳原子组成。当微生物学家和生物地球化学家想到乙炔时,他们立即想到乙炔用作某些微生物过程的抑制性化合物和固氮示踪剂。然而,鲜为人知的是,厌氧和好氧微生物可以降解乙炔,将其用作唯一的碳和能源并提供微生物食物网的基础。在这里,我们回顾关于乙炔降解生物的已知知识,并引入术语“乙炔营养生物”来指代执行此代谢途径的微生物。此外,我们回顾了乙炔的已知环境来源,并提出了隐藏的乙炔循环的存在。能够将乙炔和其他炔烃用作能源和碳源的细菌数量众多,这表明环境中存在能量循环,这些能量循环由与大气交换隔离的乙炔和炔烃的生产和消耗驱动。乙炔营养体可能已经发展成在寒武纪前的大气层中利用相对较高浓度的乙炔,后来进化成在能够生产乙炔和其他炔烃的特殊壁ches中生存。

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