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June 5, 2026Animals0 citationsOpen Access

Proteomic Changes Associated with Wooden Breast and White Striping in the Pectoralis major of Hubbard × Ross 708 Broilers: A Pilot Study

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MKMadeline C. KarolakAYAhmet YamanIZIsain Zapata

Key Points

  • The study aims to characterize proteomic alterations linked to Wooden Breast and White Striping in the Pectoralis major of broilers.
  • Analyzed muscle samples categorized into four severity ranks based on macroscopic criteria (n=12).
  • Utilized LC-MS/MS-based shotgun proteomics for protein extraction and analysis.
  • Performed statistical comparisons using Generalized Linear Models.
  • Identified potential biomarkers including fibronectin 1 and glutathione S-transferase 2.
  • Demonstrated progressive alteration of the muscle proteome with increasing disease severity.
  • Highlighted pathways related to muscle structure, metabolism, and stress response.

Abstract

Wooden Breast (WB) and White Striping (WS) are prevalent myopathies affecting the Pectoralis major (PM) muscle of modern broiler chickens, with significant implications for animal welfare and meat quality. This pilot study aimed to characterize proteomic alterations associated with increasing severity of WB and WS in the PM of Hubbard × Ross 708 broilers. Muscle samples (n = 12) were previously categorized into four severity ranks based on established macroscopic criteria. Presently, proteins were extracted and analyzed using LC-MS/MS-based shotgun proteomics. Statistical comparisons between groups were performed using Generalized Linear Models. Fibronectin 1, fibrinogen alpha chain, musculoskeletal embryonic nuclear protein 1, glutathione S-transferase 2, calsequestrin-2, and endoplasmin emerged as potential biological markers and their prospective roles in the pathogenesis of these myopathies are discussed. Our findings suggest a progressive alteration of the muscle proteome with increasing disease severity, highlighting pathways related to muscle structure, metabolism, and stress response. These results aid in providing new insights into the molecular mechanisms underlying WB and WS and may inform future research on genetic and management strategies. As a pilot study, these findings warrant further investigation in larger cohorts and different commercial lines.

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Cite This Study

Karolak et al. (2026) studied this question.

synapsesocial.com/papers/6a22698b763171746d5481aahttps://doi.org/10.3390/ani16111708
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