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April 12, 2026Animals0 citationsOpen Access

Effects of Sheltering Conditions on Serum Biochemical and Stress Hormone Profiles of Lamb During Cold Exposure

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XLXintong LiZHZhipeng HanXJXiao Jin

Key Points

  • The research aims to understand how various sheltering conditions influence serum biochemical and stress hormone profiles in lambs exposed to cold environments.
  • Assess the effects of four sheltering conditions on two-month-old female lambs.
  • Analyze key biochemical and stress hormone levels after long-term cold exposure.
  • Compare average daily gain and feed-to-gain ratios across different conditions.
  • Lambs in outdoor pens exhibited significant stress and lower average daily gain compared to indoor pens.
  • Polytunnel pens provided a milder response to cold compared to outdoor conditions.
  • Various serum biochemical markers showed significant interactions based on feeding duration and sheltering conditions.

Abstract

Long-term cold exposure reduces livestock welfare and productivity in Inner Mongolia. This study assessed cold stress effects on 60 two-month-old female Dorper × Mongolia lambs allocated to four sheltering conditions (n = 15): indoor pens with enclosed housing (IP), outdoor pens (OP), house with playground pens (OPP), and polytunnel pens (PP). Compared with IP, OP exhibited significantly lower temperature, humidity, CO2 concentration, NH3 concentration, and WCI, and significantly higher wind speed and solar radiant heat (p < 0.001). Humidity, CO2 concentration, and NH3 concentration in PP was lower than in IP, but higher than in OP (p < 0.001); temperature, wind speed, and WCI did not differ significantly between PP and IP. ADG was significantly lower in OP and OPP than in IP (p < 0.001), whereas PP did not differ from IP. F:G was higher in OP than in IP and PP (p = 0.040). Feeding duration had significant effects on ACTH, leptin, T3, T4, TP, urea, TG, NEFA, LDL, and HDL concentrations. Rearing environment significantly affected GLU, ALB, LDH, and TG. Feeding duration × sheltering conditions interaction significantly influenced ACTH, TP, ALB, urea, LDH, TG, LDL, and HDL. OP induced cold stress and dysfunction, while IP and PP produced milder responses. PP raised indoor temperatures substantially, and is thus optimal for winter lamb production.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69db388e4fe01fead37c6ac1https://doi.org/10.3390/ani16081146
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