Why are archaea not pathogenic? A hypothesis based on metabolism-habitat covariation.

IF 5.4 1区 生物学 Q1 MICROBIOLOGY
mBio Pub Date : 2026-08-21 DOI:10.1128/mbio.01185-26
Daniel J Harrison, Matthew S Fullmer, Nobuto Takeuchi
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引用次数: 0

Abstract

Pathogenicity, the ability to cause infectious diseases in multicellular eukaryotes, is widespread among bacteria and eukaryotes but has not been reliably identified in archaea. To explore possible reasons for this disparity, we perform comparative analyses of thousands of bacterial and archaeal isolates. Our results show that isolated bacterial pathogens possess the ability to use organic compounds as sources of energy, electrons, and carbon (chemo-organo-heterotrophy or COH), suggesting that COH is a metabolic prerequisite for pathogenicity. Moreover, we find that isolated archaea capable of COH do not inhabit multicellular eukaryotes and instead predominantly inhabit extreme environments that preclude such eukaryotes. In contrast, all isolated archaea that inhabit multicellular eukaryotes are incapable of COH metabolism. This metabolism-habitat covariation in isolated archaea, together with COH as a potential prerequisite for pathogenicity in bacteria, suggests that the absence of archaeal pathogens may be due to a combination of the two factors: COH-capable archaea lack the environmental opportunity to inhabit multicellular eukaryotes, while non-COH archaea lack the metabolic prerequisite for pathogenicity.IMPORTANCEPathogenicity-the ability to cause infectious disease-is widespread among bacteria and eukaryotes but conspicuously absent from archaea, the third domain of life. To understand why archaea are non-pathogenic, we performed comparative analyses of thousands of bacterial and archaeal isolates. We found that the absence of pathogenic archaea can be explained by a combination of metabolic and environmental factors. Specifically, archaea living within eukaryotic, multicellular hosts lack a metabolic capability correlated with pathogenicity-chemo-organo-heterotrophy-whereas those possessing this metabolism typically live under extreme conditions, such as high temperature, and therefore lack the environmental opportunity to interact with eukaryotic hosts. These findings advance our understanding of microbes by revealing important links between their metabolism, habitats, and pathogenicity.

为什么古细菌不具有致病性?一种基于代谢-生境共变的假说。
致病性,即在多细胞真核生物中引起传染病的能力,在细菌和真核生物中广泛存在,但在古细菌中尚未得到可靠的鉴定。为了探索这种差异的可能原因,我们对数千种细菌和古细菌进行了比较分析。我们的研究结果表明,分离的细菌病原体具有利用有机化合物作为能量、电子和碳源的能力(化学-有机-异养或COH),这表明COH是致病性的代谢先决条件。此外,我们发现能够COH的分离古细菌不栖息于多细胞真核生物中,而是主要栖息于排除此类真核生物的极端环境中。相反,所有居住在多细胞真核生物中的分离古细菌都不能代谢COH。分离古菌的代谢-栖息地共变,以及COH作为细菌致病性的潜在先决条件,表明古菌病原体的缺失可能是由于两个因素的结合:COH能力的古菌缺乏栖息多细胞真核生物的环境机会,而非COH的古菌缺乏致病性的代谢先决条件。致病性——引起传染病的能力——在细菌和真核生物中广泛存在,但在生命的第三领域古细菌中却明显缺失。为了理解为什么古细菌是非致病性的,我们对数千种细菌和古细菌进行了比较分析。我们发现致病古菌的缺失可以通过代谢和环境因素的结合来解释。具体来说,生活在真核多细胞宿主中的古细菌缺乏与致病性相关的代谢能力-化学-器官-异养-而那些拥有这种代谢的人通常生活在极端条件下,如高温,因此缺乏与真核宿主相互作用的环境机会。这些发现通过揭示微生物代谢、栖息地和致病性之间的重要联系,促进了我们对微生物的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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