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Scientific Reports· 2026Q1

Risk factors associated with negative energy balance in dairy cows during the transition period

Wubante Desyibelew, Zewdu Wondifraw, Abraham A. Gebre, Shigdaf Mekuriaw et al.

Short summary

Milk fat-to-protein ratio (FPR), an indicator of negative energy balance (NEB) in dairy cows, was reduced by intensive feeding, optimal dry matter intake (DMI), formulated rations, by-products, and mineral supplements, according to a study of 316 smallholder farmers.

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Key points

  • Milk fat-to-protein ratio (FPR) is a reliable indicator of negative energy balance (NEB) in dairy cows.
  • Intensive feeding, optimal DMI, formulated rations, by-products, and mineral supplements reduce milk FPR.
  • Midland agro-ecology and absence of mineral supplements increase milk FPR.
  • A multiple linear regression model explained 87% of the variation in milk FPR.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Negative energy balance (NEB) is commonly observed in dairy cows during the transition period and is considered a major metabolic challenge. It is associated with reduced milk production, decreased body condition score (BCS), and an increased risk of reproductive disorder. There is insufficient evidence linking agro-ecological conditions and dairy cow management practices to NEB through the analysis of milk fat-to-protein ratio (FPR), especially in smallholder dairy systems. The milk FPR is widely recognized as an indirect indicator of the energy balance status of dairy cows, as elevated FPR values reflect increased mobilization of body fat reserves and are commonly associated with NEB during the transition period. The research was conducted on 316 smallholder dairy farmers through cross-sectional study design. A multiple linear regression analysis was used to find factors that were independently linked to the milk FPR level during the early stages of lactation, the model elucidated 87% of the variation in the milk FPR (adjusted R² = 0.87; P < 0.001). Intensive feeding systems, optimum dry matter intake (DMI), supplementing of formulated dairy cow rations, agro-industrial by-products, and mineral supplement were linked to a lower FPR. On the other hand, midland agro-ecology and no minerals supplement were both strongly linked to higher FPR. Improving management strategies to fit the local agro-ecological conditions may help reduce metabolic disorders, especially during the transition period.

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

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Field: Agronomy and Crop Science

Agronomy and Crop ScienceAgricultural and Biological Sciences