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Not just fuel: energy stores are correlated with immune function and oxidative damage in a long-distance migrant

机译:不只是燃料:能量存储与长途移民的免疫功能和氧化损伤相关

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摘要

In many animals, catabolic and anabolic periods are temporally separated. Migratory birds alternate energy expenditure during flight with energy accumulation during stopover. The size of the energy stores at stopover affects the decision to resume migration and thus the temporal organization of migration. We now provide data suggesting that it is not only the size of the energy stores that may influence migration scheduling, but also the physiological consequences of flying. In two subspecies of the northern wheatear , a long-distance migrant, estimated energy stores at a stopover during autumn migration were positively related with both constitutive innate and acquired immune function, and negatively related with oxidative damage to lipids. In other words, migrants’ physiological condition was associated with their energetic condition. Although time spent at stopover before sampling may have contributed to this relationship, our results suggest that migrants have to trade-off the depletion of energy stores during flight with incurring physiological costs. This will affect migrants’ decisions when to start and when to terminate a migratory flight. The physiological costs associated with the depletion of energy stores may also help explaining why migrants often arrive at and depart from stopover sites with larger energy stores than expected. We propose that studies on the role of energy stores as drivers of the temporal organization of (avian) migration need to consider physiological condition, such as immunological and oxidative states.
机译:在许多动物中,分解代谢期和合成代谢期在时间上是分开的。候鸟在飞行过程中的能量消耗与中途停留时的能量积累交替发生。中途停留时能量存储的大小会影响恢复迁移的决策,进而影响迁移的时间安排。现在,我们提供的数据表明,不仅可能影响储能调度的能量存储的大小,而且还会影响飞行的生理后果。在北长麦的两个亚种中,一个长途迁徙者在秋季迁徙期间中途停留时估计的能量存储与本构先天性和获得性免疫功能均呈正相关,与脂质的氧化损伤呈负相关。换句话说,移民的生理状况与其精力充沛的状况有关。尽管在采样前停留在中途停留的时间可能有助于这种关系,但我们的结果表明,移民必须在飞行过程中权衡能量存储的消耗和生理成本。这将影响移民何时开始和何时终止迁移航班的决定。与能源存储枯竭相关的生理成本也可能有助于解释为什么移民经常以比预期更大的能源存储量到达和离开中途停留地点。我们建议有关能量存储作为(鸟类)迁徙的时间组织驱动因素的作用的研究需要考虑生理条件,例如免疫和氧化状态。

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