Linking visceral fat accumulation to gut microbiota: key bacterial taxa and their roles in the glycogen synthesis pathway

Abstract Obesity, marked by visceral fat accumulation, has a complex relationship with the gut microbiome that impacts body weight and fat accumulation. However, previous studies did not account for fat distribution, reflecting only overall fat mass, leaving specifics of this relationship partially understood. Here we analyzed the mechanistic links between visceral fat and the microbiome in a large cohort of healthy Koreans. Using permutational multivariate analysis of variance and prediction modeling, we examined associations between microbial profiles and metabolic variables including insulin, triglycerides, waist circumference and visceral fat. The strongest correlations were noted with specific enterotypes. Shotgun sequencing revealed that visceral fat is linked to the glycogen synthesis pathway influenced by Dorea longicatena and Bifidobacterium adolescentis . This suggests that these specific microbial signatures and their associated functional potential play a role in visceral fat-related obesity. To validate these findings, we conducted an in vivo study using diet-induced obesity mouse model. Oral administration of D. longicatena or B. adolescentis significantly promoted body weight gain and fat mass expansion and induced hepatic lipogenic gene upregulation. The prevalence of these strains in Korean and American populations highlights their global relevance, contributing to the development of personalized treatments and advanced health strategies.

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Publication Details

Journal
Experimental & Molecular Medicine
Published
2026-09-10
DOI
https://doi.org/10.1038/s12276-026-01828-7
Primary Topic
Gut microbiota and health
Type
article
Field-Weighted Citation Impact
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article

Linking visceral fat accumulation to gut microbiota: key bacterial taxa and their roles in the glycogen synthesis pathway

김하언, Yosep Ji, Yunjae Kim, Ga-Eun Yie et al.
Experimental & Molecular Medicine
Gut microbiota and health
article

Linking visceral fat accumulation to gut microbiota: key bacterial taxa and their roles in the glycogen synthesis pathway

김하언, Yosep Ji, Yunjae Kim, Ga-Eun Yie, Seongbeom Cho, Jae Moon Yun, Nam-Eun Kim, Belong Cho, Je Kyung Seong, Jin‐Ho Park, Beomki Cho, Kyungchan Min, Hansoo Park, Gihyeon Kim, Sungho Won, Minji Lee, Eun Sung Jung, Hyun Kim, Yanghyun Joo, Sihyeon Park, Yeji Hong, Jaesung Park, Chanyoung Jeong, Sua Lim
article en

Abstract

Abstract Obesity, marked by visceral fat accumulation, has a complex relationship with the gut microbiome that impacts body weight and fat accumulation. However, previous studies did not account for fat distribution, reflecting only overall fat mass, leaving specifics of this relationship partially understood. Here we analyzed the mechanistic links between visceral fat and the microbiome in a large cohort of healthy Koreans. Using permutational multivariate analysis of variance and prediction modeling, we examined associations between microbial profiles and metabolic variables including insulin, triglycerides, waist circumference and visceral fat. The strongest correlations were noted with specific enterotypes. Shotgun sequencing revealed that visceral fat is linked to the glycogen synthesis pathway influenced by Dorea longicatena and Bifidobacterium adolescentis . This suggests that these specific microbial signatures and their associated functional potential play a role in visceral fat-related obesity. To validate these findings, we conducted an in vivo study using diet-induced obesity mouse model. Oral administration of D. longicatena or B. adolescentis significantly promoted body weight gain and fat mass expansion and induced hepatic lipogenic gene upregulation. The prevalence of these strains in Korean and American populations highlights their global relevance, contributing to the development of personalized treatments and advanced health strategies.

Experimental & Molecular Medicine
Seoul National University (KR), Seoul National University Hospital (KR), Gwangju Institute of Science and Technology (KR), Genome and Company (South Korea) (KR), Korea Pharma (South Korea) (KR), Jeonbuk National University (KR)
Good health and well-being
Openalex Percentile: Top 18%
Gut microbiota and health
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