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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Rainy springs linked to poor nestling growth in a declining avian aerial insectivore (Tachycineta bicolor)
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Rainy springs linked to poor nestling growth in a declining avian aerial insectivore (Tachycineta bicolor)

机译:雨季春天与堕落的禽空中飞虫(Tachycineta双色)有关的雏鸟鹅口疮增长

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As species shift their ranges and phenology to cope with climate change, many are left without a ready supply of their preferred food source during critical life stages. Food shortages are often assumed to be driven by reduced total food abundance, but here we propose that climate change may cause short-term food shortages for foraging specialists without affecting overall food availability. We frame this hypothesis around the special case of birds that forage on flying insects for whom effects mediated by their shared food resource have been proposed to cause avian aerial insectivores' decline worldwide. Flying insects are inactive during cold, wet or windy conditions, effectively reducing food availability to zero even if insect abundance remains otherwise unchanged. Using long-term monitoring data from a declining population of tree swallows (Tachycineta bicolor), we show that nestlings' body mass declined substantially from 1977 to 2017. In 2017, nestlings had lower body mass if it rained during the preceding 3 days, though females increased provisioning rates, potentially in an attempt to compensate. Adult body mass, particularly that of the males, has also declined over the long-term study. Mean rainfall during the nestling period has increased by 9.3 +/- 0.3 mm decade(-1), potentially explaining declining nestling body mass and population declines. Therefore, we suggest that reduced food availability, distinct from food abundance, may be an important and previously overlooked consequence of climate change, which could be affecting populations of species that specialize on foraging on flying insects.
机译:随着物种改变他们的范围和候选,以应对气候变化,许多人在临界生命阶段没有准备好供应他们的首选食物来源。通常假设粮食短缺是通过减少总食品丰富的推动,但在这里,我们提出了气候变化可能导致短期粮食短缺来觅食专家,而不会影响整体食品可用性。我们围绕着鸟类的特殊情况框架这一假设,这些鸟类在飞行昆虫上觅食,为他们的共同食品资源介导的效果介绍,以引起全世界的禽空中食虫动物。在寒冷,潮湿或刮风的条件下,飞行昆虫是无效的,即使昆虫丰富仍然不变,也有效降低食物可用性至零。使用从树燕子的人口下降的长期监测数据(Tachycineta双色),我们表明雏鸟的体重大幅下降到2017年。2017年,如果在前面的3天下下雨,雏鸟的身体质量较低,但女性增加供应率,可能是为了弥补。成年体重,特别是男性的体重,在长期研究中也有所下降。平均降雨在雏鸟期间增加了9.3 +/- 0.3毫米十年(-1),潜在地解释雏区瘫痪,人口下降。因此,我们建议将食物可用性降低,不同于粮食丰富,可能是气候变化的重要性和先前被忽视的后果,这可能影响专门觅食飞行昆虫的物种的种群。

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