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雄性颜色和羽毛换羽程度之间的进化权衡也间接决定了雌性的换羽。

Evolutionary trade-off between male colouration and feather moult extent also indirectly determines female moult.

机构信息

Animal Flight Laboratory, Department of Evolutionary and Environmental Biology, Institute of Evolution, University of Haifa, Haifa, 3498838, Israel.

出版信息

J Evol Biol. 2022 Feb;35(2):278-287. doi: 10.1111/jeb.13977. Epub 2021 Dec 29.

Abstract

Males and females are often influenced by different selective forces, frequently resulting in diverging phenotypes, for example in colouration. Since an animal's colouration may strongly influence its fitness, causes and consequences of sexual dichromatism in birds could aid in understanding important factors affecting sexual and natural selection. Variation in plumage ornamentation may affect mate attraction or intraspecific antagonistic behaviour. In most passerines, body plumage colouration of juveniles is obtained through the process of feather moult. The number of moulted wing and tail feathers, which also influences the bird's appearance, may affect its fitness. Here, we show that body plumage colouration of male, but not female, passerines is correlated with the number of moulted wing and tail feathers in the early stage of the bird's life for both sexes. Thus, the extent of wing and tail moult in females is not modulated by the female's colouration and can prevent females from reaching their sex-specific optima. This result could be explained by high intersexual genetic correlations, which might make it impossible for the sexes to reach their own trait fitness optima. Our findings may indicate that species-specific, rather than sex-specific, internal correlations shaped bird moult strategy, an important avian life-history trait.

摘要

雌雄动物通常受到不同选择压力的影响,这常常导致表型的差异,例如在颜色上。由于动物的颜色可能会强烈影响其适应性,因此鸟类中性别二色性的原因和后果可以帮助我们理解影响性选择和自然选择的重要因素。羽毛装饰物的变化可能会影响配偶吸引力或种内对抗行为。在大多数雀形目鸟类中,幼鸟的体羽颜色是通过羽毛换羽过程获得的。换羽的翅膀和尾巴羽毛的数量也会影响鸟类的外观,从而影响其适应性。在这里,我们表明,雄性雀形目鸟类的体羽颜色与两性早期的翅膀和尾巴羽毛的换羽数量有关,但雌性雀形目鸟类的体羽颜色则没有这种相关性。因此,雌性的翅膀和尾巴换羽程度不受雌性颜色的调节,并且可以防止雌性达到其特有的最佳状态。这一结果可以用高的雌雄间遗传相关性来解释,这可能使雌雄双方无法达到各自的特征适应性最佳状态。我们的发现表明,鸟类换羽策略是由种间特异性的内部相关性而不是性别特异性的内部相关性决定的,这是一个重要的鸟类生活史特征。

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