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Metagenomic sequencing reveals altered metabolic pathways in the oral microbiota of sailors during a long sea voyage

机译:元基因组测序揭示了在远洋航行中水手口腔微生物区系中代谢途径的改变

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摘要

Seafaring is a difficult occupation, and sailors face higher health risks than individuals on land. Commensal microbiota participates in the host immune system and metabolism, reflecting the host's health condition. However, the interaction mechanisms between the microbiota and the host's health condition remain unclear. This study reports the influence of long sea voyages on human health by utilising a metagenomic analysis of variation in the microbiota of the buccal mucosa. Paired samples collected before and after a sea-voyage were analysed. After more than 120 days of ocean sailing, the oral microbial diversity of sailors was reduced by approximately 5 fold, and the levels of several pathogens (e.g., Streptococcus pneumonia) increased. Moreover, 69.46% of the identified microbial sequences were unclassified microbiota. Notably, several metabolic pathways were dramatically decreased, including folate biosynthesis, carbohydrate, lipid and amino acid pathways. Clinical examination of the hosts confirmed the identified metabolic changes, as demonstrated by decreased serum levels of haemoglobin and folic acid, a decreased neutrophil-to-lymphocyte ratio, and increased levels of triglycerides, cholesterol and homocysteine, which are consistent with the observed microbial variation. Our study suggests that oral mucosal bacteria may reflect host health conditions and could provide approaches for improving the health of sailors.
机译:航海是一项艰巨的职业,水手比陆上个人面临更高的健康风险。共生菌群参与宿主的免疫系统和新陈代谢,反映宿主的健康状况。然而,微生物群与宿主健康状况之间的相互作用机制仍不清楚。这项研究利用颊黏膜微生物群变化的宏基因组分析,报道了远洋航行对人类健康的影响。分析在海上航行之前和之后收集的配对样本。在航行超过120天后,水手的口腔微生物多样性降低了约5倍,几种病原体(例如肺炎链球菌)的水平增加了。此外,69.46%的已鉴定微生物序列为未分类微生物群。值得注意的是,一些代谢途径急剧减少,包括叶酸生物合成,碳水化合物,脂质和氨基酸途径。宿主的临床检查证实了已确定的代谢变化,如血红蛋白和叶酸的血清水平降低,中性粒细胞与淋巴细胞的比例降低以及甘油三酯,胆固醇和同型半胱氨酸水平升高所证明的,这与观察到的微生物变异相符。我们的研究表明,口腔粘膜细菌可能反映宿主的健康状况,并可能提供改善水手健康的方法。

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