Energy metabolism and thermoregulation in hand-reared chukars (Alectoris chukar)

T Pis1

  • 1Institute of Environmental Sciences, Jagiellonian University, Ingardena 6, 30-060, Kraków, Poland. pis@eko.uj.edu.pl

Insights

Chukar chicks develop thermoregulation within the first week of life, showing constant body temperature and reduced metabolic rate. Their metabolic scope is high, exceeding other gallinaceous species.

Area of Science:

  • Avian physiology
  • Thermoregulation
  • Developmental biology

Background:

  • Galliformes species exhibit distinct thermoregulatory development patterns.
  • Understanding avian thermoregulation is crucial for species survival and management.
  • Chukar partridges (Alectoris chukar) serve as a model for precocial bird development.

Purpose of the Study:

  • To investigate the ontogeny of metabolic rate and thermoregulation in chukar chicks.
  • To determine the critical developmental window for thermoregulatory capacity in chukars.
  • To compare chukar thermoregulation with other gallinaceous species and allometric predictions.

Main Methods:

  • Measurements of metabolic rate and colonic temperature in chukars across six age groups (1 day to 3.5 months).
  • Exposure to a wide range of ambient temperatures (-12°C to 41°C).
  • Analysis of Gompertz growth constant, thermoneutral zone (TNZ) body temperature, resting metabolic rate (RMR), metabolic scope, and thermal conductance.

Main Results:

  • Chukar chicks exhibited a lower thermoneutral zone (TNZ) body temperature (39.5°C) at hatching, increasing to 41.3°C by 4 weeks.
  • Resting metabolic rate (RMR) followed a biphasic pattern, strongly correlating with body mass in the second phase.
  • Youngest chukars displayed a high metabolic scope (3.2), exceeding other gallinaceous species; thermal conductance was approximately 40% higher than predicted.

Conclusions:

  • Chukars demonstrate significant development of thermoregulatory capacities after the first week of life.
  • Key developmental milestones include stable body temperature, reduced RMR at TNZ, and minimal thermal conductance.
  • The observed developmental pattern aligns with that of typical precocial birds.