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慢性社会应激对蛋鸡神经内分泌反应的调节存在差异:II. 三种不同社会条件下肾上腺反应的遗传基础。

Chronic social stress differentially regulates neuroendocrine responses in laying hens: II. Genetic basis of adrenal responses under three different social conditions.

作者信息

Cheng H W, Muir W M

机构信息

Livestock Behavior Research Unit, USDA-ARS, W. Lafayette, IN 47907, USA.

出版信息

Psychoneuroendocrinology. 2004 Aug;29(7):961-71. doi: 10.1016/j.psyneuen.2003.09.002.

Abstract

Chicken lines were divergently selected for both high (HGPS) or low (LGPS) group productivity and survivability resulting from cannibalism and flightiness in colony cages. Each line has unique characteristics in physical indexes, domestic behavior, and physiological responsiveness to stress. The differences between the selected lines could be reflected in differing regulation of the neuroendocrine system such as the hypothalamic-pituitary-adrenal axis. Change of the adrenal function is a key initial event in response to stress in animals, which differs for this trait. Comparisons between the selected lines showed that adrenal function was stable in HGPS hens but not in LGPS hens in response to chronic social stress. Social stress-induced adrenal hypertrophy and its positive correlation with plasma corticosterone concentrations were found in the LGPS hens but not in the HGPS hens. The data demonstrated that chickens selected for variations in productivity and survivability variously altered the adrenal system in response to social stressors. The results suggest that these chicken lines could be valuable animal models for biomedical investigation of the effect of genetic-environmental interactions on the neuroendocrine function in controlling stress responses.

摘要

鸡群根据群体笼养中因同类相残和易惊飞导致的高(HGPS)或低(LGPS)群体生产力及生存能力进行了反向选择。每个品系在身体指标、家禽行为以及对应激的生理反应方面都有独特的特征。所选品系之间的差异可能体现在神经内分泌系统(如下丘脑 - 垂体 - 肾上腺轴)的不同调节上。肾上腺功能的变化是动物对应激反应的关键初始事件,该性状存在差异。所选品系之间的比较表明,在慢性社会应激下,HGPS母鸡的肾上腺功能稳定,而LGPS母鸡则不然。在LGPS母鸡中发现了社会应激诱导的肾上腺肥大及其与血浆皮质酮浓度的正相关,而在HGPS母鸡中未发现。数据表明,因生产力和生存能力差异而选择的鸡对社会应激源的反应不同程度地改变了肾上腺系统。结果表明,这些鸡品系可能是用于生物医学研究遗传 - 环境相互作用对控制应激反应的神经内分泌功能影响的有价值动物模型。

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