Effects of low oxygen during chorioallantoic membrane development on post-hatch growing performance of broiler

S Druyan1, M Ruzal1, D Shinder1

  • 1Institute of Animal Science, Agricultural Research Organization (ARO), the Volcani Center, 68 HaMakkabbim Road, Rishon Le Ziyyon P.O.Box 15159, Israel.

Poultry Science
|March 13, 2018
PubMed

Insights

Prenatal hypoxia exposure during broiler development improves feed efficiency and heat stress resilience. This incubation strategy enhances broiler growth, organ development, and survival rates, offering a promising approach for sustainable poultry farming.

Area of Science:

  • Animal Science
  • Poultry Physiology
  • Developmental Biology

Background:

  • The prenatal circulatory system is adaptable, with angiogenesis occurring under hypoxic stress.
  • Hypoxic conditions during chorioallantoic membrane (CAM) development can increase blood oxygen-carrying capacity.

Purpose of the Study:

  • To evaluate the effects of prenatal hypoxia on post-hatch broiler performance.
  • To determine if prenatal hypoxia enhances broiler tolerance to acute heat stress.

Main Methods:

  • Male broilers were incubated under optimal conditions or intermittent hypoxia (15-17% O2, 12h/day) during CAM development (E5-E12).
  • Two trials assessed post-hatch performance (body weight, feed intake, FCR), organ weights, and heat stress response (body temperature, mortality).
  • Heat stress involved exposure to 35°C for 5 hours after a 72-hour acclimatization period at 23°C.

Main Results:

  • Hypoxia-treated broilers showed improved feed conversion ratio (FCR) and enhanced growth until 35 days.
  • Increased relative weights of breast muscle, heart, and liver were observed in hypoxia-exposed groups.
  • Hypoxia-treated chickens exhibited lower body temperatures and reduced mortality during heat stress.

Conclusions:

  • Intermittent prenatal hypoxia during CAM development benefits broilers by improving feed utilization and heat stress coping mechanisms.
  • This incubation strategy can be a mitigating step to optimize broiler growth potential and resilience.

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