Suppr超能文献

早期地球上铁(III)还原的微生物学证据。

Microbiological evidence for Fe(III) reduction on early Earth.

作者信息

Vargas M, Kashefi K, Blunt-Harris E L, Lovley D R

机构信息

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

出版信息

Nature. 1998 Sep 3;395(6697):65-7. doi: 10.1038/25720.

Abstract

It is generally considered that sulphur reduction was one of the earliest forms of microbial respiration, because the known microorganisms that are most closely related to the last common ancestor of modern life are primarily anaerobic, sulphur-reducing hyperthermophiles. However, geochemical evidence indicates that Fe(III) is more likely than sulphur to have been the first external electron acceptor of global significance in microbial metabolism. Here we show that Archaea and Bacteria that are most closely related to the last common ancestor can reduce Fe(III) to Fe(II) and conserve energy to support growth from this respiration. Surprisingly, even Thermotoga maritima, previously considered to have only a fermentative metabolism, could grow as a respiratory organism when Fe(III) was provided as an electron acceptor. These results provide microbiological evidence that Fe(III) reduction could have been an important process on early Earth and suggest that microorganisms might contribute to Fe(III) reduction in modern hot biospheres. Furthermore, our discovery that hyperthermophiles that had previously been thought to require sulphur for cultivation can instead be grown without the production of toxic and corrosive sulphide, should aid biochemical investigations of these poorly understood organisms.

摘要

一般认为,硫还原是微生物呼吸作用最早的形式之一,因为与现代生命的最后一个共同祖先关系最密切的已知微生物主要是厌氧的、还原硫的嗜热菌。然而,地球化学证据表明,在微生物代谢中,Fe(III)比硫更有可能是首个具有全球意义的外部电子受体。在此,我们表明,与最后一个共同祖先关系最密切的古菌和细菌能够将Fe(III)还原为Fe(II),并从这种呼吸作用中保存能量以支持生长。令人惊讶的是,即使是以前被认为只具有发酵代谢的海栖热袍菌,当以Fe(III)作为电子受体时,也能作为呼吸型生物体生长。这些结果提供了微生物学证据,表明Fe(III)还原可能是早期地球上的一个重要过程,并表明微生物可能在现代热生物圈中促进Fe(III)的还原。此外,我们发现,以前被认为培养需要硫的嗜热菌,现在可以在不产生有毒且有腐蚀性的硫化物的情况下生长,这应该有助于对这些了解甚少的生物体进行生化研究。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验