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June 3, 2026Acta Hydrobiologica Sinica0 citations

Citrus Aurantium Extract Alleviates Growth Reduction, Oxidative Damage, and Intestinal Inflammation in Chinese Soft-Shelled Turtle (Peodiscus Sinensis) Fed Low Fishmeal Diet

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SHShang-Feng HOUMCMing-Lang CAIYYYu-Hua YUE

Key Points

  • This research aims to evaluate the effects of Citrus aurantium extract on growth, immunity, and intestinal health in Chinese soft-shelled turtles fed a low-fishmeal diet.
  • Four diets were formulated: control, low-fishmeal, and two low-fishmeal diets supplemented with 0.05% or 0.10% CAE.
  • Growth performance, serum biochemistry, antioxidant indices, and gene expression related to inflammation and tight junctions were assessed.
  • Statistical significance was determined at P<0.05.
  • Both CAE1 and CAE2 significantly improved weight gain and feed conversion ratio compared to the low-fishmeal control.
  • Antioxidant indices increased, with significant upregulation of nrf2, sod, cat, and gpx in CAE-supplemented groups (P<0.05).
  • Pro-inflammatory cytokines were downregulated, indicating reduced intestinal inflammation in the CAE groups.

Abstract

The present study investigated the effects of dietary Citrus aurantium extract (CAE) on growth, immunity, antioxidant capacity, and intestinal health of Chinese soft-shelled turtles (Pelodiscus sinensis) fed low-fishmeal diets. Four experimental diets were formulated: a fishmeal-based control (CON), a low-fishmeal diet (NCON), and NCON supplemented with 0.05% (CAE1) or 0.10% (CAE2) CAE. Compared with NCON, both CAE1 and CAE2 increased weight gain, reduced feed conversion ratio, and improved intestinal villus height and epithelial integrity (PPPnrf2, sod, cat, and gpx were upregulated in CAE groups, with gpx higher in CAE1 and sod, cat, gpx higher in CAE2 (Pnf-κb, mapk, tnf-α, il-1β, il-6, il-8, tlr2) were downregulated, while anti-inflammatory genes (il-10, tgf-β, ppar-α) and tight junction proteins (zo-1, claudin-1, occludin) were upregulated (PCitrus aurantium extract improved growth, antioxidant status, and intestinal health in turtles under low-fishmeal diets.

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HOU et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc3c1dee9eb8c0dce535chttps://doi.org/10.3724/1000-3207.2025.2025.0402
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