APC Microbiome Ireland, National University of Ireland, Cork, Western Road, Cork, Ireland.
School of Microbiology, National University of Ireland, Cork, Western Road, Cork, Ireland.
Sci Rep. 2018 Jul 13;8(1):10627. doi: 10.1038/s41598-018-29034-0.
The non-digestible oligosaccharide fraction of maternal milk represents an important of carbohydrate and energy source for saccharolytic bifidobacteria in the gastrointestinal tract during early life. However, not all neonatal bifidobacteria isolates can directly metabolise the complex sialylated, fucosylated, sulphated and/or N-acetylglucosamine-containing oligosaccharide structures present in mothers milk. For some bifidobacterial strains, efficient carbohydrate syntrophy or crossfeeding is key to their establishment in the gut. In this study, we have adopted advanced functional genomic approaches to create single and double in-frame deletions of the N-acetyl glucosamine 6-phosphate deacetylase encoding genes, nagA1 and nagA2, of B. breve UCC2003. In vitro phenotypic analysis followed by in vivo studies on co-colonisation, mother to infant transmission, and evaluation of the relative co-establishment of B. bifidum and B. breve UCC2003 or UCC2003ΔnagA1ΔnagA2 in dam-reared neonatal mice demonstrates the importance of crossfeeding on sialic acid, fucose and N-acetylglucosamine-containing oligosaccharides for the establishment of B. breve UCC2003 in the neonatal gut. Furthermore, transcriptomic analysis of in vivo gene expression shows upregulation of genes associated with the utilisation of lactose, sialic acid, GlcNAc-6-S and fucose in B. breve UCC2003, while for UCC2003ΔnagA1ΔnagA2 only genes for lactose metabolism were upregulated.
母乳中的不可消化低聚糖部分代表了生命早期胃肠道中糖解双歧杆菌的重要碳水化合物和能量来源。然而,并非所有新生儿双歧杆菌分离株都可以直接代谢母乳中存在的复杂的唾液酸化、岩藻糖化、硫酸化和/或 N-乙酰葡萄糖胺含有的低聚糖结构。对于一些双歧杆菌菌株来说,有效的碳水化合物共生或交叉喂养是其在肠道中建立的关键。在这项研究中,我们采用了先进的功能基因组方法,对短双歧杆菌 UCC2003 的 N-乙酰葡萄糖胺 6-磷酸去乙酰化酶编码基因 nagA1 和 nagA2 进行了单基因和双基因框内缺失。通过体外表型分析,然后对共定植、母婴传播进行体内研究,并评估双歧双歧杆菌和短双歧杆菌 UCC2003 或 UCC2003ΔnagA1ΔnagA2 在母鼠饲养的新生小鼠中的相对共定植情况,表明了交叉喂养对唾液酸、岩藻糖和 N-乙酰葡萄糖胺含有的低聚糖对短双歧杆菌 UCC2003 在新生儿肠道中建立的重要性。此外,体内基因表达的转录组分析表明,UCC2003 中与乳糖、唾液酸、GlcNAc-6-S 和岩藻糖利用相关的基因上调,而 UCC2003ΔnagA1ΔnagA2 中仅与乳糖代谢相关的基因上调。