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首页> 外文期刊>The Journal of Experimental Biology >Is there an energetic-based trade-off between thermoregulation and the acute phase response in zebra finches?
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Is there an energetic-based trade-off between thermoregulation and the acute phase response in zebra finches?

机译:斑马雀在温度调节和急性期反应之间是否存在基于能量的折衷?

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There has been recent interest in understanding trade-offs between immune function and other fitness-related traits. At proximate levels, such trade-offs are presumed to result from the differential allocation of limited energy resources. Whether the costs of immunity are sufficient to necessitate such energy reallocation remains unclear. We tested the metabolic and behavioural response of male zebra finches (Taeniopygia guttata) to the combined effects of thermoregulation and generation of an acute phase response (APR). The APR is the first line of defence against pathogens, and is considered energetically costly. We predicted that at cold temperatures zebra finches would exhibit an attenuated APR when compared with individuals at thermoneutrality. We challenged individuals with bacterial lipopolysaccharide (LPS), an immunogenic compound that stimulates an APR. Following LPS injection, we measured changes in food intake, body mass, activity, and resting and total energy expenditure. When challenged with LPS under ad libitum food, individuals at both temperatures decreased food intake and activity, resulting in similar mass loss. In contrast to predicted energetic trade-offs, cold-exposed individuals injected with LPS increased their nocturnal resting energy expenditure more than did individuals held at thermoneutrality, yet paradoxically lost less mass overnight. Although responding to LPS was energetically costly, resulting in a 10% increase in resting expenditure and 16% increase in total expenditure, there were few obvious energetic trade-offs. Our data support recent suggestions that the energetic cost of an immune response may not be the primary mechanism driving trade-offs between immune system function and other fitness-related traits.
机译:最近人们对理解免疫功能和其他与健身有关的性状之间的权衡取舍。在近似的水平上,这种折衷被认为是由于有限能源资源的不同分配而产生的。免疫成本是否足以使这种能量重新分配尚不清楚。我们测试了雄性斑马雀(Taeniopygia guttata)对体温调节和急性期反应(APR)的综合作用的代谢和行为反应。 APR是抵御病原体的第一道防线,并且在能源上被认为是昂贵的。我们预测,与处于热中性状态的个体相比,斑马雀在寒冷的温度下会表现出衰减的APR。我们用细菌脂多糖(LPS)(一种刺激APR的免疫原性化合物)挑战了个体。注射LPS后,我们测量了食物摄入量,体重,活动,休息和总能量消耗的变化。当在任意温度下用LPS挑战时,两个温度下的个体都会减少食物摄入和活动,从而导致相似的质量损失。与预计的能量取舍相反,注射LPS的冷暴露个体的夜间静息能量消耗比保持热中性的个体增加更多,而自相矛盾的是,过夜的质量损失较少。尽管对LPS的响应在能量上是昂贵的,导致休息支出增加了10%,总支出增加了16%,但几乎没有明显的权衡取舍。我们的数据支持最近的建议,即免疫应答的能量消耗可能不是驱动免疫系统功能与其他适应性相关性状之间取舍的主要机制。

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