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蝙蝠的迁徙活动受屏障效应、性别差异时间安排以及对风的适应性利用的影响。

Migratory movements of bats are shaped by barrier effects, sex-biased timing and the adaptive use of winds.

作者信息

Lagerveld Sander, de Vries Pepijn, Harris Jane, Parsons Sue, Debusschere Elisabeth, Hüppop Ommo, Brust Vera, Schmaljohann Heiko

机构信息

Wageningen University & Research, Ankerpark 27, Den Helder, NL-1781 AG, The Netherlands.

Kepwick Ecological Services, Kepwick Cottage, Wymondham Road, East Carleton, Norfolk, NR14 8JB, UK.

出版信息

Mov Ecol. 2024 Dec 18;12(1):81. doi: 10.1186/s40462-024-00520-7.

Abstract

BACKGROUND

Migratory bats perform seasonal movements between their summer and winter areas. When crossing ecological barriers, like the open sea, they are exposed to an increased mortality risk due to energetically demanding long-distance flights and unexpected inclement weather events. How such barriers affect bat migratory movements is still poorly known.

METHODS

To study bat migration patterns in response to an ecological barrier, we tagged 44 Nathusius' pipistrelles Pipistrellus nathusii with radio-transmitters on the East coast of the United Kingdom (UK) in spring 2021 and 2022. Subsequently, we assessed their movements to continental Europe using the MOTUS Wildlife Tracking System. We investigated route selection, timing of migration, overall migration speed and the influence of wind on airspeed, groundspeed and flight altitude during migratory overseas flights.

RESULTS

Barrier effects cause migratory movements along the coast, and crossings over sea are shortened by deviating from the general migration direction. Males depart from the UK later in the season compared to females. The overall migration speed of females was 61 km/day and 88 km/day after their last detection in the UK. Our estimated airspeeds during oversea flights correspond well with airspeeds measured in a wind tunnel. Bats use wind adaptively to reduce airspeed when flying under tailwind and increase airspeed when flying under crosswind conditions. Departures over sea coincidence with tailwinds, enabling bats to more than double their airspeed, reaching ground speeds of up to 16.8 m/s (60.5 km/h). Our analysis suggests that bats select altitudes with favourable wind conditions and that they seek altitudes of several hundred meters, possibly extending up to 2,500 m. Low-altitude migration occurs when wind conditions are less favourable.

CONCLUSIONS

Our study demonstrates that bat migratory movements are highly influenced by barrier effects, sex-biased timing of migration and the adaptive use of winds. The results of our study contribute to a more comprehensive understanding of the decision-making process and adaptations bats employ during their migration. Elucidating bat migration patterns will enable us to develop effective conservation measures, for example in relation to the development and operation of coastal and offshore wind farms.

摘要

背景

迁徙蝙蝠在其夏季和冬季栖息地之间进行季节性移动。当穿越生态屏障,如公海时,由于长途飞行能量需求大以及意外恶劣天气事件,它们面临的死亡风险增加。此类屏障如何影响蝙蝠的迁徙移动仍鲜为人知。

方法

为研究蝙蝠对生态屏障的迁徙模式,我们于2021年和2022年春季在英国东海岸给44只纳氏伏翼蝙蝠(Pipistrellus nathusii)佩戴无线电发射器。随后,我们使用MOTUS野生动物追踪系统评估它们前往欧洲大陆的移动情况。我们调查了路线选择、迁徙时间、总体迁徙速度以及迁徙海外飞行期间风对空速、地速和飞行高度的影响。

结果

屏障效应导致蝙蝠沿海岸迁徙,偏离一般迁徙方向可缩短跨海距离。雄性蝙蝠在季节后期比雌性蝙蝠晚离开英国。雌性蝙蝠在最后一次在英国被探测到之后,总体迁徙速度分别为每天61公里和88公里。我们估计的海外飞行空速与风洞测量的空速非常吻合。蝙蝠在顺风飞行时会适应性地利用风来降低空速,在逆风条件下飞行时会增加空速。跨海出发与顺风同时出现,使蝙蝠的空速增加一倍多,地速可达16.8米/秒(60.5公里/小时)。我们的分析表明,蝙蝠会选择风况有利的高度,它们会寻找几百米的高度,可能延伸至2500米。当风况不太有利时会出现低空迁徙。

结论

我们的研究表明,蝙蝠的迁徙移动受到屏障效应、性别偏向的迁徙时间以及风的适应性利用的高度影响。我们的研究结果有助于更全面地理解蝙蝠在迁徙过程中所采用的决策过程和适应性。阐明蝙蝠的迁徙模式将使我们能够制定有效的保护措施,例如与沿海和海上风力发电场的开发和运营相关的措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c27/11657297/17012d2ef2ce/40462_2024_520_Fig1_HTML.jpg

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