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Nitrogen recycling via gut symbionts increases in ground squirrels over the hibernation season.


ABSTRACT: Hibernation is a mammalian strategy that uses metabolic plasticity to reduce energy demands and enable long-term fasting. Fasting mitigates winter food scarcity but eliminates dietary nitrogen, jeopardizing body protein balance. Here, we reveal gut microbiome-mediated urea nitrogen recycling in hibernating thirteen-lined ground squirrels (Ictidomys tridecemlineatus). Ureolytic gut microbes incorporate urea nitrogen into metabolites that are absorbed by the host, with the nitrogen reincorporated into the squirrel's protein pool. Urea nitrogen recycling is greatest after prolonged fasting in late winter, when urea transporter abundance in gut tissue and urease gene abundance in the microbiome are highest. These results reveal a functional role for the gut microbiome during hibernation and suggest mechanisms by which urea nitrogen recycling may contribute to protein balance in other monogastric animals.

SUBMITTER: Regan MD 

PROVIDER: S-EPMC8936132 | biostudies-literature | 2022 Jan

REPOSITORIES: biostudies-literature

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Nitrogen recycling via gut symbionts increases in ground squirrels over the hibernation season.

Regan Matthew D MD   Chiang Edna E   Liu Yunxi Y   Tonelli Marco M   Verdoorn Kristen M KM   Gugel Sadie R SR   Suen Garret G   Carey Hannah V HV   Assadi-Porter Fariba M FM  

Science (New York, N.Y.) 20220127 6579


Hibernation is a mammalian strategy that uses metabolic plasticity to reduce energy demands and enable long-term fasting. Fasting mitigates winter food scarcity but eliminates dietary nitrogen, jeopardizing body protein balance. Here, we reveal gut microbiome-mediated urea nitrogen recycling in hibernating thirteen-lined ground squirrels (<i>Ictidomys tridecemlineatus</i>). Ureolytic gut microbes incorporate urea nitrogen into metabolites that are absorbed by the host, with the nitrogen reincorp  ...[more]

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