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From an imbalance to a new imbalance: Italian-style gluten-free diet alters the salivary microbiota and metabolome of African celiac children

机译:从失衡到新的失衡:意大利式的无麸质饮食改变了非洲腹腔儿童的唾液微生物和代谢组

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Fourteen Saharawi celiac children following an African-style gluten-free diet for at least two years were subjected to a change of diet to an Italian-style gluten-free diet for 60 days. Significant differences were identified in the salivary microbiota and metabolome when Saharawi celiac children switched from African- to Italian-style dietary habits. An Italian-style gluten-free diet caused increases in the abundance of Granulicatella , Porphyromonas and Neisseria and decreases in Clostridium, Prevotella and Veillonella , altering the ‘salivary type’ of the individuals. Furthermore, operational taxonomic unit co-occurrence/exclusion patterns indicated that the initial equilibrium of co-occurring microbial species was perturbed by a change in diet: the microbial diversity was reduced, with a few species out-competing the previously established microbiota and becoming dominant. Analysis of predicted metagenomes revealed a remarkable change in the metabolic potential of the microbiota following the diet change, with increased potential for amino acid, vitamin and co-factor metabolism. High concentrations of acetone and 2-butanone during treatment with the Italian-style gluten-free diet suggested metabolic dysfunction in the Saharawi celiac children. The findings of this study support the need for a translational medicine pipeline to examine interactions between food and microbiota when evaluating human development, nutritional needs and the impact and consequences of westernisation.
机译:接受非洲风格无麸质饮食至少两年的14位撒哈拉腹腔儿童接受了60天的意大利饮食风格的改变。当撒哈拉腹腔儿童从非洲饮食习惯转向意大利饮食习惯时,唾液微生物群和代谢组之间存在显着差异。意大利式的无麸质饮食会导致Granulicatella,Porphyromonas和Neisseria的丰度增加,梭状芽孢杆菌,Prevotella和Veillonella的丰度下降,从而改变了个体的“唾液类型”。此外,操作性生物分类单位的共现/排除模式表明,共生微生物物种的初始平衡因饮食变化而受到干扰:微生物多样性降低,少数物种超过了先前建立的微生物群,成为优势物种。对预测的基因组的分析显示,饮食改变后微生物群的代谢潜能发生了显着变化,氨基酸,维生素和辅因子代谢的潜能增加。在使用意大利式无麸质饮食的治疗期间,高浓度的丙酮和2-丁酮提示撒哈拉腹腔儿童的代谢功能异常。这项研究的结果表明,在评估人类发展,营养需求以及西化的影响和后果时,需要建立一条转化医学渠道来研究食品与微生物群之间的相互作用。

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