首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Selection for increased mass-independent maximal metabolic rate suppresses innate but not adaptive immune function
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Selection for increased mass-independent maximal metabolic rate suppresses innate but not adaptive immune function

机译:选择不依赖于质量的最大最大代谢率可抑制先天性免疫功能但不能抑制

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摘要

Both appropriate metabolic rates and sufficient immune function are essential for survival. Consequently, eco-immunologists have hypothesized that animals may experience trade-offs between metabolic rates and immune function. Previous work has focused on how basal metabolic rate (BMR) may trade-off with immune function, but maximal metabolic rate (MMR), the upper limit to aerobic activity, might also trade-off with immune function. We used mice artificially selected for high mass-independent MMR to test for trade-offs with immune function. We assessed (i) innate immune function by quantifying cytokine production in response to injection with lipopolysaccharide and (ii) adaptive immune function by measuring antibody production in response to injection with keyhole limpet haemocyanin. Selection for high mass-independent MMR suppressed innate immune function, but not adaptive immune function. However, analyses at the individual level also indicate a negative correlation between MMR and adaptive immune function. By contrast BMR did not affect immune function. Evolutionarily, natural selection may favour increasing MMR to enhance aerobic performance and endurance, but the benefits of high MMR may be offset by impaired immune function. This result could be important in understanding the selective factors acting on the evolution of metabolic rates.
机译:适当的代谢率和足够的免疫功能对于生存至关重要。因此,生态免疫学家假设动物可能会在代谢率和免疫功能之间进行权衡。先前的工作集中在基础代谢率(BMR)如何与免疫功能之间进行权衡,但是最大代谢率(MMR)(有氧活动的上限)也可能与免疫功能之间进行权衡。我们使用了针对高质量独立MMR人工选择的小鼠来测试在免疫功能方面的取舍。我们评估(i)通过定量响应注射脂多糖而产生的细胞因子来评估先天免疫功能,以及(ii)通过测量响应注射钥孔戚血红蛋白而产生的抗体来评估适应性免疫功能。高质量独立MMR的选择会抑制先天免疫功能,但不能抑制适应性免疫功能。但是,在个体水平上的分析也表明MMR与适应性免疫功能之间呈负相关。相比之下,BMR不影响免疫功能。从进化上讲,自然选择可能有利于增加MMR以增强有氧运动和耐力,但高MMR的好处可能会因免疫功能受损而被抵消。该结果对于理解影响代谢率演变的选择性因素可能是重要的。

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