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Structural modulation of gut microbiota in life-long calorie-restricted mice

机译:终生限制卡路里的小鼠肠道菌群的结构调节

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Calorie restriction has been regarded as the only experimental regimen that can effectively lengthen lifespan in various animal models, but the actual mechanism remains controversial. The gut microbiota has been shown to have a pivotal role in host health, and its structure is mostly shaped by diet. Here we show that life-long calorie restriction on both high-fat or low-fat diet, but not voluntary exercise, significantly changes the overall structure of the gut microbiota of C57BL/6 J mice. Calorie restriction enriches phylotypes positively correlated with lifespan, for example, the genus Lactobacillus on low-fat diet, and reduces phylotypes negatively correlated with lifespan. These calorie restriction-induced changes in the gut microbiota are concomitant with significantly reduced serum levels of lipopolysaccharide-binding protein, suggesting that animals under calorie restriction can establish a structurally balanced architecture of gut microbiota that may exert a health benefit to the host via reduction of antigen load from the gut.
机译:热量限制已被认为是可以有效延长各种动物模型寿命的唯一实验方案,但实际机制仍存在争议。肠道菌群在宿主健康中已显示出举足轻重的作用,其结构主要由饮食决定。在这里,我们显示了对高脂或低脂饮食(而非自愿运动)进行终身卡路里限制,会显着改变C57BL / 6 J小鼠肠道菌群的整体结构。热量限制会丰富与寿命呈正相关的系统型,例如低脂饮食中的乳杆菌属,并减少与寿命呈负相关的系统型。这些热量限制引起的肠道菌群变化与血清脂多糖结合蛋白的血清水平显着降低同时出现,这表明受卡路里限制的动物可以建立肠道菌群的结构平衡结构,该结构可能通过减少肠道菌群而对宿主产生健康益处。来自肠道的抗原负荷。

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