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Seasonal modulation of flight speed among nocturnal passerine migrants: differences between short- and long-distance migrants

机译:夜行性er游者之间的飞行速度季节性调整:短途和长途移民之间的差异

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Migrating birds are expected to fly at higher airspeeds when minimizing time rather than energy costs of their migratory journeys. Spring migration has often been suggested to be more time selected than autumn migration, because of the advantage of early arrival at breeding sites. We have earlier demonstrated that nocturnal passerine migrants fly at higher airspeeds during spring compared to autumn, supporting time-selected spring migration. In this study, we test the hypothesis that seasonal airspeeds are modulated differently between short- and long-distance migrants, because of a stronger element of time selection for autumn migration over long distances. In support of this hypothesis, we demonstrate that the seasonal difference in airspeed is significantly larger (spring airspeed exceeding autumn airspeed by a factor of 1.16 after correcting for the influence of altitude, wind and climb/descent on airspeed) among short-distance compared to long-distance (factor 1.12) migrants. This result is based on a large sample of tracking radar data from 3 years at Falsterbo, South Sweden. Short-distance migrants also tend to fly with more favourable winds during autumn, indicating relaxed time constraints (being able to afford to wait for favourable winds) compared to long-distance migrants. These results indicate surprisingly fine-tuned seasonal modulation of airspeed and responses to wind, associated with behavioural strategies adapted to different levels of time selection pressures during spring and autumn migration.
机译:在尽量减少时间而不是迁移旅程的能源成本的同时,预计候鸟会以更高的空速飞行。经常建议春季迁徙比秋季迁徙选择更多的时间,因为这样可以提前到达繁殖地点。我们早先已经证明,夜行性雀形目候鸟春季与秋季相比以更高的空速飞行,从而支持了按时间选择的春季迁徙。在这项研究中,我们检验了以下假设:短距离和长距离移民之间季节性空速的调制方式有所不同,这是因为长距离秋季移民的时间选择要素更强。为支持该假设,我们证明了短距离飞行速度的季节性差异(校正高度,风和爬升/下降对空气速度的影响后,春季空速明显大于秋季空速的1.16倍)。长途(因子1.12)移民。该结果基于南瑞典Falsterbo三年来的大量跟踪雷达数据样本。短途移民在秋季也倾向于乘风顺风,这表明与长途移民相比,放宽了时间限制(有能力等待顺风)。这些结果表明,对空速和对风的响应进行了季节性的微调,这与在春季和秋季迁徙期间适应不同时间选择压力水平的行为策略有关。

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