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人工饲养的日本鹌鹑(Coturnix chinensis)的生长速率与体温调节

Growth rate and thermoregulation in reared king quails (Coturnix chinensis).

作者信息

Pis T, Luśnia D

机构信息

Institute of Environmental Sciences, Jagiellonian University, Gronostajowa 7, 30-387 Kraków, Poland.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2005 Jan;140(1):101-9. doi: 10.1016/j.cbpb.2004.11.008.

DOI:10.1016/j.cbpb.2004.11.008
PMID:15664318
Abstract

Growth rate was investigated in king quails between 1st and 60th day of life. Gompertz growth constants were 0.075 in males and 0.056 in females. Colonic temperature (Tb) was measured in quails divided into four age groups (1-3, 7-10, 16-19, and 44-59 days old) in ambient temperatures set separately for each group. Metabolic rate was measured only in 44-59-day-old birds. The mean value of the thermoneutral body temperature (Tb at TNZ) in the active phase in the youngest quails was 39.0 degrees C. In 44-59-day-old quails, the resting metabolic rate in the thermoneutral zone (RMR at TNZ) was on average 9.44 mW g(-1) (1.66 cm3 O2 g(-1)h(-1)), without sex-specific differences. No such differences were found in this age group neither in Tb at TNZ, nor in minimal thermal conductance (Cmin). However, differences were found in the rate of metabolic heat production below the thermoneutral zone, even when mass-independent units were used. The maximum metabolic rate (Mmax) in 2-month-old males was 34.08 mW g(-1) (5.98 cm3 O2 g(-1)h(-1)), while in females 29.73 mW g(-1) (5.21 cm3 O2 g(-1)h(-1)). Heat-stressed 44-59-day-old quails elevated their Tb to as much as an average 44.1 degrees C in Ta of about 45 degrees C. The obtained growth model and a gradual development of the body temperature regulation mechanism in king quails followed the known strategy of development, typical for precocial birds. The sexual size dimorphism in the studied quails did not result in differences in thermoregulation parameters between the sexes, except for the rate of metabolic rate below thermoneutral zone.

摘要

研究了栗树鹌鹑出生后第1天至60天的生长速率。雄性的冈珀茨生长常数为0.075,雌性为0.056。将鹌鹑分为四个年龄组(1 - 3日龄、7 - 10日龄、16 - 19日龄和44 - 59日龄),分别为每个组设置环境温度,测量结肠温度(Tb)。仅对44 - 59日龄的鸟类测量代谢率。最年幼鹌鹑活跃期的热中性体温(热中性区的Tb)平均值为39.0℃。在44 - 59日龄的鹌鹑中,热中性区的静息代谢率(热中性区的RMR)平均为9.44 mW g(-1)(1.66 cm3 O2 g(-1)h(-1)),无性别差异。在这个年龄组中,热中性区的Tb和最小热传导率(Cmin)均未发现此类差异。然而,即使使用与体重无关的单位,在热中性区以下的代谢产热速率也存在差异。2月龄雄性的最大代谢率(Mmax)为34.08 mW g(-1)(5.98 cm3 O2 g(-1)h(-1)),而雌性为29.73 mW g(-1)(5.21 cm3 O2 g(-1)h(-1))。在约45℃的环境温度下,受热应激的44 - 59日龄鹌鹑将其Tb升高至平均高达44.1℃。所获得的生长模型以及栗树鹌鹑体温调节机制的逐步发展遵循了早成鸟已知的典型发育策略。在所研究的鹌鹑中,除了热中性区以下的代谢率外,性别的体型二态性并未导致两性之间体温调节参数的差异。

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