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May 20, 2026Animals0 citationsOpen Access

Effects of Replacing Whole-Crop Maize Silage with Pennisetum giganteum Silage on the Rumen Microbial Community in Beef Cattle

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SFShuai FangJZJunyu ZhangXHXi Han

Key Points

  • This study investigates how replacing maize silage with Pennisetum giganteum silage affects rumen fermentation and microbial populations in beef cattle.
  • Single-factor completely randomized design with 50 crossbred Simmental cattle aged 11-12 months.
  • Cattle assigned to five dietary groups varying in Pennisetum giganteum silage proportions over 67 days.
  • Rumen fluid samples collected for analysis of microbial diversity and fermentation characteristics.
  • Higher proportions of Pennisetum giganteum silage led to increased volatile fatty acids and ammonia nitrogen levels (p < 0.05).
  • Group C (50% Pennisetum giganteum) showed significantly higher abundance of Verrucomicrobiota (p < 0.05).
  • Proteobacteria increased linearly while Treponema decreased linearly across groups; no differences in α- or β-diversity were found (p > 0.05).

Abstract

This study evaluated the effects of replacing whole-crop maize silage with varying proportions of Pennisetum giganteum silage on rumen fermentation, microbial composition, and metabolic function in beef cattle. A single-factor completely randomized design was employed using 50 healthy crossbred Simmental cattle aged 11–12 months (average body weight: 251. 08 ± 51. 54 kg). Animals were randomly assigned to five groups, with 10 replicates per group and one animal per replicate. Diets contained 0% (Group A), 25% (Group B), 50% (Group C), 75% (Group D), or 100% (Group E) Pennisetum giganteum silage replacing whole-crop maize silage over a 67-day feeding period, including a 7-day adaptation phase. Rumen fluid samples were collected via rumen catheter at the end of the trial to assess bacterial diversity and functional characteristics. Increasing the proportion of Pennisetum giganteum silage resulted in quadratic changes in volatile fatty acids (VFAs) and propionate (PA) concentrations (p 0. 05). Group C exhibited significantly higher relative abundances of Verrucomicrobiota and PrevotellaceaeUCG₀03 compared with the other groups (p < 0. 05). At the phylum level, Proteobacteria increased linearly, whereas Spirochaetota decreased linearly; at the genus level, Treponema decreased linearly (p < 0. 05). LEfSe analysis indicated enrichment of g_PrevotellaceaeUCG₀03 and o_WCHB1₄1 in Group C, while the relative abundances of f_Enterobacteriaceae and g_Citrobacter were elevated in Group E. Under the conditions of this study, replacing 50% of whole-crop maize silage with Pennisetum giganteum silage enhanced rumen fermentation efficiency and modulated key microbial populations in beef cattle.

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Cite This Study

Fang et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5025f03e14405aa9bc1ahttps://doi.org/10.3390/ani16101535
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