Tartary Buckwheat ( Fagopyrum tataricum ) Ameliorates Lipid Metabolism Disorders and Gut Microbiota Dysbiosis in High-Fat Diet-Fed Mice.
Ang LiJin WangYuanyifei WangBowei ZhangZhenjia ChenJunling ZhuXiaowen WangShuo WangPublished in: Foods (Basel, Switzerland) (2022)
Jinqiao II, a newly cultivated variety of tartary buckwheat ( Fagopyrum tataricum ), has been reported to exhibit a higher yield and elevated levels of functional compounds compared to traditional native breeds. We aimed to investigate the potential of Jinqiao II tartary buckwheat to alleviate lipid metabolism disorders by detecting serum biochemistry, pathological symptoms, gene expression profiling, and gut microbial diversity. C57BL/6J mice were provided with either a normal diet; a high-fat diet (HFD); or HFD containing 5%, 10%, and 20% buckwheat for 8 weeks. Our results indicate that Jinqiao II tartary buckwheat attenuated HFD-induced hyperlipidemia, fat accumulation, hepatic damage, endotoxemia, inflammation, abnormal hormonal profiles, and differential lipid-metabolism-related gene expression at mRNA and protein levels in response to the dosages, and high-dose tartary buckwheat exerted optimal outcomes. Gut microbiota sequencing also revealed that the Jinqiao II tartary buckwheat elevated the level of microbial diversity and the abundance of advantageous microbes ( Alistipes and Alloprevotella ), lowered the abundance of opportunistic pathogens ( Ruminococcaceae , Blautia , Ruminiclostridium , Bilophila , and Oscillibacter ), and altered the intestinal microbiota structure in mice fed with HFD. These findings suggest that Jinqiao II tartary buckwheat might serve as a competitive candidate in the development of functional food to prevent lipid metabolic abnormalities.
Keyphrases
- high fat diet
- adipose tissue
- insulin resistance
- high fat diet induced
- gene expression
- high dose
- fatty acid
- oxidative stress
- microbial community
- genome wide
- single cell
- physical activity
- low dose
- metabolic syndrome
- dna methylation
- mouse model
- gram negative
- stem cell transplantation
- small molecule
- copy number
- climate change
- binding protein
- antimicrobial resistance
- antibiotic resistance genes
- multidrug resistant
- diabetic rats
- drug induced
- inflammatory response
- amino acid
- protein protein
- preterm birth
- genome wide identification