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人乳寡糖岩藻糖基乳糖的主要代谢物由婴儿肠道共生菌产生。

Metabolism of the predominant human milk oligosaccharide fucosyllactose by an infant gut commensal.

机构信息

APC Microbiome Ireland, University College Cork, Western Road, Cork, Ireland.

School of Microbiology, University College Cork, Western Road, Cork, Ireland.

出版信息

Sci Rep. 2019 Oct 28;9(1):15427. doi: 10.1038/s41598-019-51901-7.

Abstract

A number of bifidobacterial species are found at a particularly high prevalence and abundance in faecal samples of healthy breastfed infants, a phenomenon that is believed to be, at least partially, due to the ability of bifidobacteria to metabolize Human Milk Oligosaccharides (HMOs). In the current study, we isolated a novel strain of Bifidobacterium kashiwanohense, named APCKJ1, from the faeces of a four-week old breastfed infant, based on the ability of the strain to utilise the HMO component fucosyllactose. We then determined the full genome sequence of this strain, and employed the generated data to analyze fucosyllactose metabolism in B. kashiwanohense APCKJ1. Transcriptomic and growth analyses, combined with metabolite analysis, in vitro hydrolysis assays and heterologous expression, allowed us to elucidate the pathway for fucosyllactose metabolism in B. kashiwanohense APCKJ1. Homologs of the key genes for this metabolic pathway were identified in particular in infant-derived members of the Bifdobacterium genus, revealing the apparent niche-specific nature of this pathway, and allowing a broad perspective on bifidobacterial fucosyllactose and L-fucose metabolism.

摘要

许多双歧杆菌物种在健康母乳喂养婴儿的粪便样本中特别高的流行率和丰度,这一现象被认为至少部分是由于双歧杆菌能够代谢人乳寡糖(HMOs)。在本研究中,我们基于该菌株利用 HMO 成分岩藻糖乳糖的能力,从一名四周大的母乳喂养婴儿的粪便中分离出一株新型双歧杆菌 Kashiwanohense 菌株,命名为 APCKJ1。然后,我们确定了该菌株的全基因组序列,并利用生成的数据来分析 B. kashiwanohense APCKJ1 中的岩藻糖乳糖代谢。转录组和生长分析,结合代谢物分析、体外水解测定和异源表达,使我们能够阐明 B. kashiwanohense APCKJ1 中岩藻糖乳糖代谢的途径。该代谢途径的关键基因的同源物,特别是在双歧杆菌属的婴儿衍生成员中被鉴定出来,揭示了该途径的明显的生态位特异性,并且为双歧杆菌的岩藻糖乳糖和 L-岩藻糖代谢提供了广泛的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/016c/6817895/6bec56bf51d7/41598_2019_51901_Fig1_HTML.jpg

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