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嗜热菌凯氏穆尔氏菌的甲醇和一氧化碳代谢

Methanol and Carbon Monoxide Metabolism of the Thermophile Moorella caeni.

作者信息

Vecchini Santaella Nicolas A, Stams Alfons J M, Sousa Diana Z

机构信息

Laboratory of Microbiology, Wageningen University & Research, Wageningen, the Netherlands.

出版信息

Environ Microbiol. 2025 Apr;27(4):e70096. doi: 10.1111/1462-2920.70096.

Abstract

Moorella species are thermophilic acetogens that primarily produce acetate from one-carbon (C1) compounds including CO, CO (+H), methanol and formate. Notably, Moorella caeni DSM 21394 displays a hydrogenogenic metabolism on CO and an acetogenic metabolism on methanol. Furthermore, M. caeni is unable to use CO (+H) and grows only on formate in the presence of a methanogen or when thiosulfate is added as an electron acceptor. Presently, all theoretical frameworks for C1 metabolism in Moorella species are derived from experimental and genomic analyses of Moorella thermoacetica, which exhibits an acetogenic metabolism with all C1 substrates. In this study, we applied a transcriptomics approach to elucidate the mechanisms underlying the C1 metabolism of Moorella caeni during growth on methanol and CO. Our results indicate that respiratory Complex 1, a proton-translocating (ubi)quinone oxidoreductase, is the primary respiratory enzyme in methanol-grown cells of M. caeni. Conversely, in CO-grown cells, an energy-conserving hydrogenase complex (Ech) appears to be the primary respiratory complex, alongside respiratory Complex 1. This study provides insight into the C1 metabolism of M. caeni and reveals variations in gene syntenies related to C1 metabolism among the Moorella genus.

摘要

穆尔氏菌属是嗜热产乙酸菌,主要从包括一氧化碳(CO)、合成气(CO + H)、甲醇和甲酸在内的一碳(C1)化合物中产生乙酸盐。值得注意的是,嗜热栖热穆尔氏菌DSM 21394在CO上表现出产氢代谢,在甲醇上表现出产乙酸代谢。此外,嗜热栖热穆尔氏菌无法利用合成气,并且仅在存在产甲烷菌的情况下或添加硫代硫酸盐作为电子受体时才能在甲酸盐上生长。目前,穆尔氏菌属中所有关于C1代谢的理论框架均源自热醋穆尔氏菌的实验和基因组分析,该菌对所有C1底物均表现出产乙酸代谢。在本研究中,我们应用转录组学方法来阐明嗜热栖热穆尔氏菌在甲醇和CO上生长期间C1代谢的潜在机制。我们的结果表明,呼吸复合体I,一种质子转运(泛)醌氧化还原酶,是嗜热栖热穆尔氏菌在甲醇中生长的细胞中的主要呼吸酶。相反,在以CO为底物生长的细胞中,一种能量守恒氢化酶复合体(Ech)似乎是主要的呼吸复合体,与呼吸复合体I一起发挥作用。本研究深入了解了嗜热栖热穆尔氏菌的C1代谢,并揭示了穆尔氏菌属中与C1代谢相关的基因共线性变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3473/11996240/e7cbdfdf2a09/EMI-27-e70096-g003.jpg

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