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Animals· 2026Q1

Effects of Dietary Fibers with Different Physicochemical Properties on Intestinal Health and Growth Performance of Meat Rabbits

Yeqiu Zhang, Ying Wang, Shiting Xiao, Si Wang et al.

Short summary

Moringa oleifera leaf meal (MO) improved meat rabbit gut health and growth performance compared to mulberry leaf meal (ML), despite ML's higher in vitro fermentation. MO was linked to better gut microbiota, higher short-chain fatty acids (SCFAs), and less diarrhea, while ML was associated with inflammation, reduced growth, and increased diarrhea.

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Abstract

Dietary fiber raw materials for meat rabbits are diverse, yet the effects of their hydration properties and fermentation on growth performance and intestinal health remain insufficiently understood. In this study, we first systematically analyzed 12 commercial fiber raw materials for nutrient composition, hydration properties, and in vitro fermentation characteristics. Principal component analysis (PCA) was employed to reduce the dimensionality of the nutritional and physicochemical parameters, extracting two key dimensions: the first was predominantly defined by fiber fractions and viscosity, while the second was jointly driven by water binding capacity (WBC), water swelling capacity (WSC), gas production, and volatile fatty acid (VFA) generation. Subsequently, based on the similarity of fibers along the first principal component and their gradient distribution along the second, four representative fiber raw materials with graded hydration properties and fermentation were selected for in vivo validation: peanut vine meal (PV) < Pennisetum giganteum meal (PG) < Moringa oleifera leaf meal (MO) < mulberry leaf meal (ML). A total of 96 weaned New Zealand white rabbits were randomly assigned to four groups and fed diets containing PV, PG, MO, or ML, respectively, over a 35-day feeding trial. Growth performance, diarrhea incidence, intestinal morphology, cecal microbiota, and VFA profiles were evaluated. In vivo results showed that MO was associated with optimized cecal microbiota, increased short-chain fatty acids, and reduced diarrhea. In contrast, despite its high in vitro fermentation, ML was associated with intestinal inflammation, decreased short-chain fatty acids, reduced average daily gain and average daily feed intake, elevated branched-chain fatty acids and ammonia nitrogen, and increased diarrhea incidence. Correlation analysis further revealed that enriched Bacteroides was closely associated with reduced growth performance and impaired intestinal health. Collectively, these findings suggest that MO with moderate hydration properties and high fermentation may be more beneficial for optimizing growth performance and intestinal health in meat rabbits than ML with high fermentation alone. This study provides a reference for the rational selection of fiber resources in meat rabbit production.

The authors' abstract, as published at the source. Animals, 2026 · DOI ↗

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Animal Science and ZoologyAgricultural and Biological Sciences