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February 11, 2026Grasses0 citationsOpen Access

Frequency Distribution of Sward Heights and Forage Species Composition in Different Integrated Crop–Livestock Systems

RMRenata Franciéli MoraesDMDaniela Maria MartinAPArthur Pontes Prates

Key Points

  • The research aims to assess sward height and forage species composition across different integrated crop–livestock systems.
  • Data collection over two years in four systems: livestock, livestock–forestry, crop–livestock, and crop–livestock–forestry.
  • Assessment of sward heights categorized into low, optimal, and high based on seasonal thresholds.
  • Evaluation of species composition including black oat, Aries grass, and Italian ryegrass.
  • Application of four probability distributions (normal, log-normal, Gamma, Weibull) to fit sward-height frequencies.
  • Management based on target-height maintained 46% of observations in the optimal class.
  • The crop-livestock system showed higher species diversity compared to others, particularly with Italian ryegrass.
  • The Gamma distribution was the best fit for sward-height frequencies across all systems and seasons.

Abstract

Sward height is a practical indicator for defining management targets that reflect pasture structure. The complexity of integrated systems, including the coexistence of trees, crops, and livestock, can modify animal grazing distribution and microhabitat conditions, leading to different degrees of sward heterogeneity and botanical composition. This study investigated sward-height distribution and species composition in four systems: livestock (L), livestock–forestry (LF), crop–livestock (CL), and crop–livestock–forestry (CLF). Data were collected over two years in pastures of black oat (Avena strigosa Schreb.), Aries grass (Megathyrsus maximus cv. Aries), Italian ryegrass (Lolium multiflorum Lam.), and other tropical grasses during summer, transition, and winter. Sward heights were classified into three categories (low, optimal, high) according to seasonal thresholds (winter: 30 cm; summer: 25 cm) and fitted to four probability distributions (normal, log-normal, Gamma, Weibull). Management based on target-height maintained 46% of observations within the optimal class, a satisfactory proportion for continuous stocking systems where structural heterogeneity is inherent. The CL system presented greater species diversity due to a higher frequency of Italian ryegrass and other grasses. Across systems and seasons, the Gamma distribution provided the best fit for sward-height frequencies. These findings offer a practical statistical tool for evaluating grazing management efficiency.

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Cite This Study

Moraes et al. (2026) studied this question.

synapsesocial.com/papers/698c1bdc267fb587c655dd86https://doi.org/10.3390/grasses5010008
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Forage Production and Sward Structure Dynamics of Tall Fescue (Lolium arundinaceum) Pasture Grazed to Different Sward Heights2026
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  3. 3Annual and seasonal dry matter production, botanical species composition, and nutritive value of multispecies, permanent pasture, and perennial ryegrass swards managed under grazing2024 · 18 citations
  4. 4Sward patchiness induced by grazing horses is more important than region and management for vegetation diversity and forage nutritive value2026
  5. 5Rotation Length and Defoliation Intensity Effects on Dry Matter Production and Botanical Composition in Perennial ryegrass–White clover and Multispecies Pastures2025