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Gut Microbiota Orchestrates Energy Homeostasis during Cold

机译:肠道菌群在寒冷期间协调能量稳态

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摘要

Microbial functions in the host physiology are a result of the microbiota-host co-evolution. We show that cold exposure leads to marked shift of the microbiota composition, referred to as cold microbiota. Transplantation of the cold microbiota to germ-free mice is sufficient to increase insulin sensitivity of the host and enable tolerance to cold partly by promoting the white fat browning, leading to increased energy expenditure and fat loss. During prolonged cold, however, the body weight loss is attenuated, caused by adaptive mechanisms maximizing caloric uptake and increasing intestinal, villi, and microvilli lengths. This increased absorptive surface is transferable with the cold microbiota, leading to altered intestinal gene expression promoting tissue remodeling and suppression of apoptosis-the effect diminished by co-transplanting the most cold-downregulated strain Akkermansia muciniphila during the cold microbiota transfer. Our results demonstrate the microbiota as a key factor orchestrating the overall energy homeostasis during increased demand.
机译:宿主生理中的微生物功能是微生物群与宿主共同进化的结果。我们表明,冷暴露导致微生物群组成的明显变化,称为冷微生物群。将冷菌群移植到无菌小鼠中足以提高宿主的胰岛素敏感性,并通过促进白色脂肪褐变而部分耐受寒冷,从而导致能量消耗增加和脂肪减少。然而,在长时间的感冒期间,由于最大程度地吸收热量并增加肠,绒毛和微绒毛长度的适应性机制导致体重减轻减弱。这种增加的吸收表面可与冷菌群转移,导致肠道基因表达改变,从而促进组织重塑和细胞凋亡抑制-通过在冷菌群转移过程中共移植最冷下调的粘液阿克曼氏菌减弱了这种作用。我们的结果表明,微生物群是在需求增加期间协调总体能量稳态的关键因素。

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