Evidence map›Paper›PMID 42554901›Full record

ArticleFish physiology and biochemistry2026

Dietary mannitol improves salinity adaptation in Nile tilapia (Oreochromis niloticus) by enhancing ion regulation, energy metabolism and antioxidant defense.

Yuanyi Xin, Wei Liu, JiaQi He, Donghao Yuan, Erchao Li, Liqiao Chen, Xiaodan Wang

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Article in Fish physiology and biochemistry, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

7 authors.

Yuanyi XinSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
Wei LiuSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
JiaQi HeSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
Donghao YuanSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
Erchao LiSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
Liqiao ChenSchool of Life Sciences, East China Normal University, Shanghai, 200241, China.
Xiaodan WangSchool of Life Sciences, East China Normal University, Shanghai, 200241, China. xdwang@bio.ecnu.edu.cn.

Funding

the National Natural Science Foundation of China No. 32172946the Shanghai Rising-Star Program, the National Key Research and Development Program of China 2023YFD2401001
6 · The paper itself

Abstract

Aquaculture in saline environments is expanding worldwide, but elevated salinity can alter growth performance and physiological homeostasis in cultured fish. Nile tilapia (Oreochromis niloticus) is a euryhaline freshwater species widely used in salinity tolerance research and aquaculture production. Here, this study evaluated whether dietary mannitol improves salinity adaptation in tilapia. Fish (1.86 ± 0.04 g) were fed isonitrogenous and isoenergetic diets containing 0, 1, 2, 5 or 10% mannitol for 8 weeks under freshwater or 20‰ salinity conditions. The results revealed that salinity treatment significantly reduced weight gain (WG) and whole-body moisture content and increased the hepatosomatic index (HSI), feed conversion ratio (FCR), and whole-body crude protein and lipid contents. Under salinity treatment, supplementation with 1% or 2% mannitol significantly increased WG, whole-body moisture, and crude protein and significantly reduced FCR and whole-body lipid content. These treatments also alleviated gill lamellar hypertrophy and hepatic cytoplasmic vacuolization. In addition, 1% or 2% mannitol significantly increased the activities of enzymes involved in glycolysis and the TCA cycle, as well as the lactate content in the liver. It also increased the expression levels of genes related to myo-inositol metabolism. Moderate mannitol supplementation also reduced oxidative damage. Regression analysis indicated that a mannitol content of approximately 1.5% can achieve optimal weight gain. These findings suggest that an appropriate level of mannitol improves growth and salinity adaptation in Nile tilapia, possibly through multiple physiological adjustments under salinity treatment, although the underlying mechanisms require further verification.

Indexed as

CichlidsEnergy MetabolismMannitolSalinityAdaptation, PhysiologicalAnimal FeedAnimalsAntioxidantsDietDietary SupplementsAntioxidantsMannitolGrowth performanceMannitolOreochromis niloticusSalinity adaptation

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.