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Archaea: Essential inhabitants of the human digestive microbiota

机译:古细菌:人类消化微生物群的重要居民

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Prokaryotes forming the domain of Archaea, named after their first discovery in extreme environments, are acknowledged but still neglected members of the human digestive tract microbiota. In this microbiota, cultured archaea comprise anaerobic methanogens: Methanobrevibacter smithii , Methanobrevibacter oralis , Methanobrevibacter massiliense , Methanosphaera stadtmanae , Methanobrevibacter arboriphilus , Methanobrevibacter millerae and Methanomassiliicoccus luminyensis ; along with the non-methanogen halophilic Archaea Halopherax massiliense . Metagenomic analyses detected DNA sequences indicative of the presence of additional methanogenic and non-methanogenic halophilic Archaea in the human intestinal tract and oral cavity. Methanogens specifically metabolize hydrogen produced by anaerobic fermentation of carbohydrates into methane; further transforming heavy metals and metalloids into methylated derivatives, such as trimethylbismuth which is toxic for both human and bacterial cells. However, the role of Archaea as pathogens remains to be established. Future researches will aim to increase the repertoire of the human digestive tract Archaea and to understand their possible association with intestinal and extra-intestinal infections and diseases including weight regulation abnormalities.
机译:形成古细菌领域的原核生物以其在极端环境中的首次发现而得名,是公认的人类消化道微生物群的成员,但仍被忽略。在该微生物群中,培养的古细菌包括厌氧产甲烷菌:产甲烷微杆菌,口头甲烷微杆菌,Massiliense玛氏甲烷菌,stadtmanphaphapha stadtmanae,嗜甲烷甲烷微杆菌,嗜甲烷甲烷微杆菌和发光甲烷杆菌。以及非甲烷源的嗜盐古细菌Halopherax massiliense。元基因组学分析检测到的DNA序列表明在人的肠道和口腔中存在其他产甲烷和非产甲烷的嗜盐古生菌。产甲烷菌将碳水化合物厌氧发酵产生的氢气代谢为甲烷。进一步将重金属和准金属转化为甲基化衍生物,例如对人和细菌细胞有毒的三甲基铋。然而,古细菌作为病原体的作用仍有待确定。未来的研究将致力于增加人类消化道古细菌的种类,并了解它们与肠道和肠道外感染以及疾病(包括体重调节异常)的可能联系。

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