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首页> 外文期刊>Journal of Avian Biology >Breeding season weather determines long-tailed tit reproductive success through impacts on recruitment
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Breeding season weather determines long-tailed tit reproductive success through impacts on recruitment

机译:繁殖季节的天气通过对招聘的影响决定长尾山雀的繁殖成功

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摘要

Productivity is a key demographic trait that can be influenced by climate change, but there are substantial gaps in our understanding of the impact of weather on productivity and recruitment in birds. Weather is known to influence reproductive success in numerous species, although such effects have not been reported in all studies, perhaps because they are masked by high nest predation rates or buffered by density dependence. Here, we use a 19-yr study of a population of individually marked long-tailed tits Aegithalos caudatus to quantify the impacts of weather on productivity in the nest (from eggs to fledging) and subsequent recruitment, while taking nest predation rates and density dependence into account. We find that weather has negligible effects on clutch size, hatching success, brood size, probability of fledging and number of fledglings. Annual variation in nest predation rates is a strong predictor of productivity, but we find no evidence that the magnitude of nest predation is determined by weather. Recruitment was strongly associated with breeding season weather, even when taking density dependence effects into account. This contrasts with the conventional view that first year survival of temperate passerines is primarily determined by winter weather. Recruitment was reduced when March temperatures were high, perhaps caused by earlier peaks in caterpillar abundance and thus reduced food availability at the time of fledging. Recruitment increased following high May temperatures, perhaps due to an improved thermo-regulatory environment for young fledglings. These opposing effects of warm March and May temperatures highlight the importance of considering asymmetrical rates of warming in different months when predicting climate change impacts.
机译:生产力是可能受到气候变化影响的一项重要人口统计特征,但是我们对天气对鸟类生产力和成鸟的影响的理解存在很大差距。众所周知,天气会影响许多物种的生殖成功,尽管尚未在所有研究中都报道过这种影响,也许是因为它们被高巢捕食率掩盖了,或者被密度依赖性所缓冲。在这里,我们对个体标记的长尾山雀Aegithalos caudatus进行了为期19年的研究,以量化天气对巢中生产力(从卵到出雏)和随后的繁殖的影响,同时考虑巢捕食率和密度依赖性考虑在内。我们发现天气对离合器尺寸,孵化成功率,育雏尺寸,成雏概率和成雏数量的影响可忽略不计。巢穴捕食率的年度变化是生产力的重要指标,但我们找不到证据表明巢穴捕食的程度是由天气决定的。即使考虑到密度依赖性影响,招聘也与繁殖季节的天气密切相关。这与传统观点相反,传统观点认为温带雀形目的第一年生存主要由冬季天气决定。当三月的气温很高时,招聘人数减少了,这可能是由于毛虫幼虫的早期高峰所致,因此出雏时的食物供应量减少了。五月份的高温后,招聘人数增加了,这可能是由于幼雏的温度调节环境得到了改善。三月和五月温暖的这些相反的影响凸显了在预测气候变化影响时考虑不同月份的不对称升温速率的重要性。

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