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免疫功能和血液寄生虫感染影响雀形目鸟类的中途停留生态。

Immune function and blood parasite infections impact stopover ecology in passerine birds.

作者信息

Hegemann Arne, Alcalde Abril Pablo, Muheim Rachel, Sjöberg Sissel, Alerstam Thomas, Nilsson Jan-Åke, Hasselquist Dennis

机构信息

Department of Biology, Lund University, Ecology Building, 223 62, Lund, Sweden.

Center for Macroecology, Evolution and Climate, Natural History Museum of Denmark, University of Copenhagen, Universitetsparken 15, 2100, Copenhagen, Denmark.

出版信息

Oecologia. 2018 Dec;188(4):1011-1024. doi: 10.1007/s00442-018-4291-3. Epub 2018 Nov 1.

Abstract

Stopovers play a crucial role for the success of migrating animals and are key to optimal migration theory. Variation in refuelling rates, stopover duration and departure decisions among individuals has been related to several external factors. The physiological mechanisms shaping stopover ecology are, however, less well understood. Here, we explore how immune function and blood parasite infections relate to several aspects of stopover behaviour in autumn migrating short- and long-distance migrating songbirds. We blood sampled individuals of six species and used an automated radio-telemetry system in the stopover area to subsequently quantify stopover duration, 'bush-level' activity patterns (~ 0.1-30 m), landscape movements (~ 30-6000 m), departure direction and departure time. We show that complement activity, the acute phase protein haptoglobin and blood parasite infections were related to prolonged stopover duration. Complement activity (i.e., lysis) and total immunoglobulins were negatively correlated with bush-level activity patterns. The differences partly depended on whether birds were long-distance or short-distance migrants. Birds infected with avian malaria-like parasites showed longer landscape movements during the stopover than uninfected individuals, and birds with double blood parasite infections departed more than 2.5 h later after sunset/sunrise suggesting shorter flight bouts. We conclude that variation in baseline immune function and blood parasite infection status affects stopover ecology and helps explain individual variation in stopover behaviour. These differences affect overall migration speed, and thus can have significant impact on migration success and induce carry-over effects on other annual-cycle stages. Immune function and blood parasites should, therefore, be considered as important factors when applying optimal migration theory.

摘要

中途停留对于迁徙动物的成功至关重要,是最优迁徙理论的关键。个体间在补充能量速率、中途停留持续时间和出发决策方面的差异与多个外部因素有关。然而,塑造中途停留生态学的生理机制却鲜为人知。在此,我们探究免疫功能和血液寄生虫感染如何与秋季迁徙的短距离和长距离迁徙鸣禽中途停留行为的几个方面相关。我们对六个物种的个体进行了采血,并在中途停留区域使用自动无线电遥测系统,随后量化中途停留持续时间、“灌木丛层级”活动模式(约0.1 - 30米)、景观移动(约30 - 6000米)、出发方向和出发时间。我们发现补体活性、急性期蛋白触珠蛋白和血液寄生虫感染与延长的中途停留持续时间有关。补体活性(即裂解)和总免疫球蛋白与灌木丛层级活动模式呈负相关。这些差异部分取决于鸟类是长距离还是短距离迁徙者。感染类疟原虫的鸟类在中途停留期间的景观移动比未感染个体更长,而感染两种血液寄生虫的鸟类在日落后/日出后超过2.5小时才出发,这表明飞行时段较短。我们得出结论,基础免疫功能和血液寄生虫感染状况的差异会影响中途停留生态学,并有助于解释中途停留行为的个体差异。这些差异会影响整体迁徙速度,因此可能对迁徙成功产生重大影响,并对其他年度周期阶段产生遗留效应。因此,在应用最优迁徙理论时,应将免疫功能和血液寄生虫视为重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f518/6244813/852f6d2d02fc/442_2018_4291_Fig1_HTML.jpg

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