Buehler Deborah M, Piersma Theunis, Matson Kevin, Tieleman B Irene
Animal Ecology Group, Centre for Ecological and Evolutionary Studies, University of Groningen, P.O. Box 14, 9750 AA, Haren, The Netherlands.
Am Nat. 2008 Dec;172(6):783-96. doi: 10.1086/592865.
Throughout the annual cycle, demands on competing physiological systems change, and animals must allocate resources to maximize fitness. Immune function is one such system and is important for survival. Yet detailed empirical data tracking immune function over the entire annual cycle are lacking for most wild animals. We measured constitutive immune indices once a month for a year on captive red knots (Calidris canutus). We also examined temperature as an environmental contributor to immune variation by manipulating ambient temperature to vary energy expenditure. To identify relationships among immune indices, we performed principal-component analysis. We found significant repeatability in immune indices over the annual cycle and covariation of immune indices within and among individuals. This covariation suggests immune strategies as individual traits among individuals and the use of different immune strategies during different annual-cycle stages within individuals. Over the annual cycle, both higher-cost phagocyte-based immunity and lower-cost lymphocyte-based immunity were high during mass change, but there was a clear shift toward lower-cost lymphocyte-based immunity during peak molt. Experimental manipulation of temperature had little effect on annual variation in immune function. This suggests that other environmental factors, such as food availability and disease, should also be examined in the future.
在整个年度周期中,对相互竞争的生理系统的需求会发生变化,动物必须分配资源以实现适应性最大化。免疫功能就是这样一个系统,对生存至关重要。然而,大多数野生动物缺乏在整个年度周期中跟踪免疫功能的详细实证数据。我们对圈养的红腹滨鹬(Calidris canutus)进行了为期一年的每月一次的组成性免疫指标测量。我们还通过控制环境温度以改变能量消耗,研究温度作为免疫变化的环境因素。为了确定免疫指标之间的关系,我们进行了主成分分析。我们发现免疫指标在年度周期内具有显著的重复性,并且个体内部和个体之间的免疫指标存在协变。这种协变表明免疫策略是个体间的个体特征,并且个体在不同的年度周期阶段使用不同的免疫策略。在年度周期中,基于吞噬细胞的高成本免疫和基于淋巴细胞的低成本免疫在体重变化期间都很高,但在换羽高峰期明显转向基于淋巴细胞的低成本免疫。温度的实验性操纵对免疫功能的年度变化影响很小。这表明未来还应研究其他环境因素,如食物供应和疾病。