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通过模拟人类肠道环境对双歧杆菌的eps-ome转录进行调控。

Modulation of the eps-ome transcription of bifidobacteria through simulation of human intestinal environment.

作者信息

Ferrario Chiara, Milani Christian, Mancabelli Leonardo, Lugli Gabriele Andrea, Duranti Sabrina, Mangifesta Marta, Viappiani Alice, Turroni Francesca, Margolles Abelardo, Ruas-Madiedo Patricia, van Sinderen Douwe, Ventura Marco

机构信息

Laboratory of Probiogenomics, Department of Life Sciences, University of Parma, I-43124 Parma, Italy.

GenProbio Ltd, 43124 Parma, Italy.

出版信息

FEMS Microbiol Ecol. 2016 Apr;92(4):fiw056. doi: 10.1093/femsec/fiw056. Epub 2016 Mar 8.

Abstract

Bacterial exopolysaccharides (EPSs) are mono- or oligo-saccharide units linked by glycosidic bonds, forming homo- or hetero-polymers. In gut commensals, these macromolecules are claimed to protect bacterial cells against gastrointestinal challenges and to be involved in modulating the cross talk between the producing bacterium and its gut environment. The predicted EPS arsenal of theBifidobacteriumgenus, which we designate here as theeps-ome, consists of 9epsgene clusters conserved among different bifidobacterial species and a further 44 uniqueepsloci, together representing a large proportion of the inter(sub)species variability identified among bifidobacterial genomes. Co-cultivations of bifidobacterial species in media simulating adult and infant human gut environments resulted in an increased transcription of key genes for EPS biosynthesis, including glycosyltransferase-encoding genes, as well as genes specifying EPS transporter and polymerase functions, and saccharide biosynthesis and modification enzymes.

摘要

细菌胞外多糖(EPSs)是通过糖苷键连接的单糖或寡糖单元,形成同聚物或杂聚物。在肠道共生菌中,这些大分子据称可保护细菌细胞免受胃肠道挑战,并参与调节产EPS细菌与其肠道环境之间的相互作用。双歧杆菌属预测的EPS库,我们在此将其指定为eps-ome,由9个在不同双歧杆菌物种中保守的eps基因簇和另外44个独特的eps位点组成,共同代表了双歧杆菌基因组中鉴定出的种(亚)间变异性的很大一部分。在模拟成人和婴儿人类肠道环境的培养基中对双歧杆菌进行共培养,导致EPS生物合成关键基因的转录增加,包括编码糖基转移酶的基因,以及指定EPS转运蛋白和聚合酶功能的基因,以及糖类生物合成和修饰酶。

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