Effects of Cetobacterium somerae fermentation product on glucose metabolism, gut and liver health of largemouth bass (Micropterus salmoides) fed with high carbohydrate diet

Cetobacterium somerae is an important commensal bacterium in fish with reported benefits on fish glucose metabolism and health. However, the beneficial effects of Cetobacterium somerae have never been investigated in economical fish fed high-carbohydrate diet. In this study, we investigated the effects of dietary supplementation with Cetobacterium somerae fermentation product (CFP) on glucose metabolism, gut and liver health in largemouth bass ( Micropterus salmoides ) fed a high-carbohydrate (HC) diet. Largemouth bass (7.70 ± 0.04 g) were fed with low-carbohydrate (LC) diet, HC diet, or HC diet supplemented with different doses of CFP (0.25%, 0.50%, 1.00%) for 8 weeks. Results showed that although CFP did not significantly affect weight gain or body indices, it markedly alleviated HC-induced metabolic disorders. CFP reduced postprandial blood glucose levels in fish fed HC diet. CFP also reduced hepatic steatosis, as indicated by liver triglyceride (TG) content and histological analysis. Furthermore, CFP reduced serum ALT and AST levels in fish fed HC diet to levels comparable to the LC group. Consistently, CFP supplementation in HC diet reduced the hepatic expression of pro-inflammatory genes ( il-1β , il-8 , tnf-α , nf-κb ) and improved the expression of anti-inflammatory genes ( il-10 , tgf-β ). CFP group improved the expression and activity of antioxidant enzymes and reduced MDA levels in the liver of HC-fed fish. In terms of gut health, CFP improved the expression of tight junction genes and reduced the expression of pro-inflammatory genes in the intestine of fish fed HC diet, and improved intestinal histology of HC-fed fish. Additionally, CFP modulated the gut microbiota, with an enrichment of Firmicutes and a reduction of Proteobacteria. Together, our results demonstrate that Cetobacterium somerae fermentation product improved glucose homeostasis, alleviated hepatic steatosis and injury, and improved intestinal health and intestinal microbiota of largemouth bass fed HC diet, showing promise as a sustainable functional feed additive for the HC formulation of largemouth bass.

Authors

Institutions

Publication Details

Journal
Aquaculture Reports
Published
2026-09-08
DOI
https://doi.org/10.1016/j.aqrep.2026.103825
Primary Topic
Aquaculture disease management and microbiota
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Effects of Cetobacterium somerae fermentation product on glucose metabolism, gut and liver health of largemouth bass (Micropterus salmoides) fed with high carbohydrate diet

Hui Liang, Yalin Yang, Zhigang Zhou, Chao Ran et al.
Aquaculture Reports
Aquaculture disease management and microbiota
article

Effects of Cetobacterium somerae fermentation product on glucose metabolism, gut and liver health of largemouth bass (Micropterus salmoides) fed with high carbohydrate diet

Hui Liang, Yalin Yang, Zhigang Zhou, Chao Ran, Delong Meng, Shichang Xu, Ting Liu, Xiaohan Li, Yuanyuan Yao, Wenhao Zhou, Yuanpei Zhang, He Zhu, Yi Wang, Zhen Zhang, Qianwen Ding
article en

Abstract

Cetobacterium somerae is an important commensal bacterium in fish with reported benefits on fish glucose metabolism and health. However, the beneficial effects of Cetobacterium somerae have never been investigated in economical fish fed high-carbohydrate diet. In this study, we investigated the effects of dietary supplementation with Cetobacterium somerae fermentation product (CFP) on glucose metabolism, gut and liver health in largemouth bass ( Micropterus salmoides ) fed a high-carbohydrate (HC) diet. Largemouth bass (7.70 ± 0.04 g) were fed with low-carbohydrate (LC) diet, HC diet, or HC diet supplemented with different doses of CFP (0.25%, 0.50%, 1.00%) for 8 weeks. Results showed that although CFP did not significantly affect weight gain or body indices, it markedly alleviated HC-induced metabolic disorders. CFP reduced postprandial blood glucose levels in fish fed HC diet. CFP also reduced hepatic steatosis, as indicated by liver triglyceride (TG) content and histological analysis. Furthermore, CFP reduced serum ALT and AST levels in fish fed HC diet to levels comparable to the LC group. Consistently, CFP supplementation in HC diet reduced the hepatic expression of pro-inflammatory genes ( il-1β , il-8 , tnf-α , nf-κb ) and improved the expression of anti-inflammatory genes ( il-10 , tgf-β ). CFP group improved the expression and activity of antioxidant enzymes and reduced MDA levels in the liver of HC-fed fish. In terms of gut health, CFP improved the expression of tight junction genes and reduced the expression of pro-inflammatory genes in the intestine of fish fed HC diet, and improved intestinal histology of HC-fed fish. Additionally, CFP modulated the gut microbiota, with an enrichment of Firmicutes and a reduction of Proteobacteria. Together, our results demonstrate that Cetobacterium somerae fermentation product improved glucose homeostasis, alleviated hepatic steatosis and injury, and improved intestinal health and intestinal microbiota of largemouth bass fed HC diet, showing promise as a sustainable functional feed additive for the HC formulation of largemouth bass.

Aquaculture ReportsVol. 51
Gansu Agricultural University (CN), Chinese Academy of Agricultural Sciences (CN), Feed Research Institute (CN), Ministry of Agriculture and Rural Affairs (CN)
Ministry of Science and Technology of the People's Republic of China
Life below water
Openalex Percentile: Top 18%
Aquaculture disease management and microbiota
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.