Department of Food, Aroma and Cosmetic Chemistry, Faculty of Bioindustry, Tokyo University of Agriculture, 196 Yasaka, Abashiri, 099-2493 Hokkaido, Japan.
Université Paris-Saclay, INRAE, AgroParisTech, Micalis Institute, 78350, Jouy-en-Josas, France.
FEMS Microbiol Ecol. 2023 Apr 7;99(5). doi: 10.1093/femsec/fiad035.
Faecalibacterium prausnitzii is a promising biomarker of a healthy human microbiota. However, previous studies reported the heterogeneity of this species and found the presence of several distinct groups at the species level among F. prausnitzii strains. Our recent study revealed that methods previously developed for quantification of F. prausnitzii were not specific to the species level because of the heterogeneity within the F. prausnitzii species and the application of 16S rRNA gene, which is an invalid genetic marker for the species. Therefore, previously available data failed to provide information on different groups, which limits our understanding of the importance of this organism for host health. Here, we propose an alternative gene marker for quantification of F. prausnitzii-related taxa. A total of nine group-specific primer pairs were designed by targeting rpoA gene sequences. The newly developed rpoA-based qPCR successfully quantified targeted groups. Application of the developed qPCR assay in six healthy adults revealed marked differences in abundance and prevalence among the different targeted groups in stool samples. The developed assay will facilitate detailed understanding of the impact of Faecalibacterium populations at the group level on human health and to understand the links between depletion of specific groups in Faecalibacterium and different human disorders.
普拉梭菌(Faecalibacterium prausnitzii)是人类健康微生物群的有前途的生物标志物。然而,先前的研究报告了该物种的异质性,并在普拉梭菌菌株的种水平上发现了几个不同的群体。我们最近的研究表明,由于普拉梭菌种内的异质性以及 16S rRNA 基因的应用(该基因是物种的无效遗传标记),先前开发的用于定量普拉梭菌的方法不具有种特异性。因此,先前可用的数据未能提供有关不同群体的信息,这限制了我们对该生物体对宿主健康重要性的理解。在这里,我们提出了一种用于定量普拉梭菌相关分类群的替代基因标记。通过靶向 rpoA 基因序列设计了总共 9 对种特异性引物。新开发的基于 rpoA 的 qPCR 成功定量了靶向群体。在 6 名健康成年人中应用开发的 qPCR 检测法揭示了粪便样本中不同靶向群体在丰度和流行率方面的显著差异。开发的检测法将有助于详细了解 Faecalibacterium 群体在群组水平上对人类健康的影响,并了解 Faecalibacterium 中特定群体耗竭与不同人类疾病之间的联系。