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Does the strength of an immune response reflect its energetic cost?

机译:免疫反应的强度是否反映出其能量消耗?

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The energetic cost of immune responses has been proposed to be an important basis for trade-offs between life-history traits, such as between survival and reproduction. A critical assumption of this hypothesis is that the magnitude of the energetic cost increases with the strength of an immune response, so that energy can be saved by partly suppressing a response. Here, we test this assumption experimentally. The immune system of great tits Parus major was experimentally activated by injecting different doses of phytohemagglutinin (PHA) in the wing web. We found the resting metabolic rate of immune challenged birds to increase by 5%. However, although great tits injected with a high dose had a stronger immune response, this was not paralleled by a higher metabolic rate. Thus, we found the energetic cost of the immune response to be relatively low and not dose-dependent. This suggests to us that the energetic cost of immune responses cannot form the basis for trade-offs between life-history traits.
机译:有人提出,免疫反应的高昂成本是在生命历史特征(例如生存与繁殖)之间进行权衡的重要基础。该假设的关键假设是,能量成本的大小会随着免疫反应强度的增加而增加,因此可以通过部分抑制反应来节省能量。在这里,我们通过实验测试此假设。通过在翼网中注射不同剂量的植物血凝素(PHA),实验性地激活了大山雀Parus major的免疫系统。我们发现免疫挑战的鸟类的静息代谢率增加了5%。但是,尽管注射高剂量的大山雀具有更强的免疫反应,但这并没有更高的代谢率。因此,我们发现免疫应答的能量消耗相对较低且不依赖剂量。这向我们表明,免疫反应的高昂成本不能构成生命历史特征之间权衡的基础。

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