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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Timing of autumn bird migration under climate change: advances in long-distance migrants, delays in short-distance migrants
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Timing of autumn bird migration under climate change: advances in long-distance migrants, delays in short-distance migrants

机译:气候变化下秋季鸟类迁徙的时机:长途迁徙者的进步,短途迁徙者的延误

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摘要

As a response to increasing spring temperature in temperate regions in recent years, populations of many plant and animal species, including migratory birds, have advanced the seasonal start of their reproduction or growth. However, the effects of climate changes on subsequent events of the annual cycle remain poorly understood. We investigated long-term changes in the timing of autumn migration in birds, a key event in the annual cycle limiting the reproductive period. Using data spanning a 42-year period, we analysed long-term changes in the passage of 65 species of migratory birds through Western Europe. The autumn passage of migrants wintering south of the Sahara has advanced in recent years, presumably as a result of selection pressure to cross the Sahel before its seasonal dry period. In contrast, migrants wintering north of the Sahara have delayed autumn passage. In addition, species with a variable rather than a fixed number of broods per year have delayed passage, possibly because they are free to attempt more broods. Recent climate changes seem to have a simple unidirectional effect on the seasonal onset of reproduction, but complex and opposing effects on the timing of subsequent events in the annual cycle, depending on the ecology and life history of a species. This complicates predictions of overall effects of global warming on avian communities. [References: 28]
机译:近年来,由于对温带地区春季气温上升的反应,许多动植物物种(包括候鸟)的种群已加快了繁殖或生长的季节开始。但是,人们对气候变化对年周期后续事件的影响知之甚少。我们调查了鸟类秋季迁徙时间的长期变化,这是限制繁殖周期的年度周期中的关键事件。我们使用42年间的数据,分析了65种候鸟通过西欧的长期变化。近年来,在撒哈拉以南越冬的移民的秋季通道有所增加,这可能是由于在萨赫勒地区季节性干旱之前穿越萨赫勒地区的选择压力。相反,在撒哈拉沙漠以北越冬的移民推迟了秋天的到来。此外,每年育雏数量可变而不是固定的物种的繁殖延迟,这可能是因为它们可以自由尝试更多育雏。最近的气候变化似乎对繁殖的季节性发作具有简单的单向影响,但对年度循环中后续事件的发生时间却具有复杂而相反的影响,具体取决于物种的生态和生活史。这使对全球变暖对鸟类群落总体影响的预测变得复杂。 [参考:28]

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