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体温和氧化应激的测量揭示了一种雀形目鸟类体液免疫功能的不同代价。

Measurements of body temperature and oxidative stress reveal differential costs associated with humoral immune function in a passerine bird.

作者信息

Bryla Amadeusz, Zagkle Elisavet, Sadowska Edyta T, Cichoń Mariusz, Bauchinger Ulf

机构信息

Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, 30-387 Krakow, Poland.

Nencki Institute of Experimental Biology, Polish Academy of Sciences, 02-093 Warsaw, Poland.

出版信息

J Exp Biol. 2022 Dec 1;225(23). doi: 10.1242/jeb.244897. Epub 2022 Nov 30.

Abstract

Eco-immunology considers resistance to antigens a costly trait for an organism, but actual quantification of such costs is not straightforward. Costs of the immune response are visible in impaired coloration and reduced growth or reproductive success. Activation of the humoral immune response is a slow, complex and long-lasting process, which makes the quantification of its energetic cost a potential losing game. We implemented near-continuous measurements of body temperature in zebra finches (Taeniopygia guttata) as a proxy for the energetic cost, with a particular focus during activation of the humoral immune response until the peak of antibody release several days later. At the peak of the antibody release we additionally measured oxygen consumption (open-flow respirometry) and markers of oxidative stress (dROMs, OXY). Birds with an activated immune response maintained a higher night-time body temperature during the first 4 nights after an immune challenge in comparison to controls, implying increased night-time energy use. At peak antibody production, we did not find differences in night-time body temperature and oxygen consumption but observed differentiated results for oxygen consumption during the day. Immune-challenged females had significantly higher oxygen consumption compared with other groups. Moreover, we found that activation of the humoral immune response increases oxidative damage, a potential cost of maintaining the higher night-time body temperature that is crucial at the early stage of the immune response. The costs generated by the immune system appear to consist of two components - energetic and non-energetic - and these appear to be separated in time.

摘要

生态免疫学认为,对生物体而言,抵抗抗原是一项代价高昂的特性,但实际量化这种代价并非易事。免疫反应的代价在色素沉着受损、生长减缓或繁殖成功率降低方面可见一斑。体液免疫反应的激活是一个缓慢、复杂且持久的过程,这使得量化其能量消耗成为一场可能会失败的尝试。我们对斑胸草雀(Taeniopygia guttata)的体温进行了近乎连续的测量,以此作为能量消耗的指标,特别关注体液免疫反应激活期间直至数天后抗体释放达到峰值的阶段。在抗体释放达到峰值时,我们还额外测量了耗氧量(开放式流动呼吸测定法)和氧化应激标志物(dROMs、OXY)。与对照组相比,免疫反应激活的鸟类在免疫挑战后的前4个夜晚维持着较高的夜间体温,这意味着夜间能量消耗增加。在抗体产生达到峰值时,我们没有发现夜间体温和耗氧量存在差异,但观察到白天耗氧量的结果有所不同。与其他组相比,免疫挑战的雌性鸟类耗氧量显著更高。此外,我们发现体液免疫反应的激活会增加氧化损伤,这是维持较高夜间体温的潜在代价,而这在免疫反应的早期阶段至关重要。免疫系统产生的代价似乎由两个部分组成——能量方面和非能量方面——而且这些代价似乎在时间上是分开的。

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