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February 20, 2026Food Science & Nutrition3 citationsOpen Access

Lycium barbarum Byproducts Modulate Rumen Fermentation, Enhance Digestive Enzyme Activity, and Improve Immune and Antioxidant Status in Grazing Sheep

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XZXiaoyun ZhangWDWuchen DuKXKaili Xie

Key Points

  • The aim was to evaluate the effects of Lycium barbarum byproducts on rumen fermentation and health in grazing sheep.
  • Assessed dietary impacts of Lycium barbarum byproducts on rumen fermentation parameters.
  • Evaluated digestive enzyme activity and microbial composition in grazing sheep.
  • Compared the control and treatment groups for various rumen health indicators.
  • Increased acetic and propionic acid levels in treatment groups compared to control.
  • Enhanced digestive enzyme activities, including pepsin and urease, observed in the treatment groups.
  • Altered microbial diversity and increased abundance of beneficial bacteria such as Prevotella.
  • Improved immune markers (total protein, immunoglobulin) and reduced malondialdehyde levels.

Abstract

ABSTRACT The incorporation of functional plants rich in bioactive components or secondary metabolites as alternatives to growth promoters, such as antibiotics, in ruminant production is gaining momentum. Diet composition and structure are principal determinants of rumen microbial community structure, function, and the health status of ruminants. This study aimed to assess the impact of dietary Lycium barbarum byproducts on rumen fermentation parameters, digestive enzyme activity, microbial composition and proportion, and rumen health status in grazing sheep on sown pastures. The findings revealed that, compared to the control group (CON), the Lycium barbarum seed (LBS) and residue (LBR) groups exhibited increased proportions of acetic acid and propionic acid, while the proportions of valeric acid and isovaleric acid decreased. Activity of rumen digestive enzymes, including pepsin, pyruvate dehydrogenase (PDH), urease, aminopeptidase (Aps), and cellobiase increased, and rumen microbial diversity was altered (increased richness but not diversity). The relative abundance of beneficial bacteria such as Prevotella and RuminococcaceaeNK4A214group increased, whereas that of Desulfovibrio decreased. Furthermore, levels of total protein (TP), albumin (ALB), immunoglobulin (GLB), superoxide dismutase (SOD), and glutathione peroxidase (GSH‐PX) increased, while uric acid (UA), blood urea nitrogen (BUN), and malondialdehyde (MDA) levels decreased. The active ingredients in the byproducts, including polysaccharides, polyphenols (flavonoids), and vegetable oils, exert beneficial effects by directly inhibiting pathogen proliferation, modulating intestinal microbiota composition, enhancing immune function, and mitigating oxidative stress.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6997fa5aad1d9b11b345383dhttps://doi.org/10.1002/fsn3.71509
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