加州海峡群岛上的松雀鸟(Melospiza melodia)喙的大小主要受体温调节的影响

Maybellene Gamboa, C. K. Ghalambor, T. Sillett, W. C. Funk, Ross A Furbush, Jerry F Husak, Raymond M. Danner
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引用次数: 0

摘要

推断表型变异的环境选择压力是适应研究中的一项挑战,因为性状通常具有多种功能,并由复杂的选择机制决定。我们提供的间接证据表明,在加利福尼亚海峡群岛的 Melospiza melodia(松雀)身上,多功能鸟类喙的形态主要受气候和体温调节能力的影响。我们的研究建立在对Melospiza melodia博物馆标本研究的基础上,该研究表明喙表面积与最高温度之间存在正相关,这表明在较热的干旱环境中,对干热散热的需求更大。我们对三个气候不同的岛屿上的当代麻雀种群进行了采样,以验证以下假设:喙的形态受栖息地差异的影响,对觅食效率具有功能性后果;喙的形态与最高温度有关,因此对体温调节非常重要。对超过 500 只活体个体的测量结果表明,在校正体型后,最高温度与喙表面积之间存在显著的正相关关系。相比之下,最大咬合力、种子提取时间和繁殖地植被(代表食物资源)与喙的尺寸没有显著关系。虽然我们不能排除觅食能力和食物对喙形态的影响,但我们的结果符合这样的假设,即海峡群岛北部梅洛迪亚对体温调节能力的需求差异选择了喙表面积的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Melospiza melodia (Song Sparrow) bill size is primarily shaped by thermoregulation on the California Channel Islands
Inferring the environmental selection pressures responsible for phenotypic variation is a challenge in adaptation studies as traits often have multiple functions and are shaped by complex selection regimes. We provide indirect evidence that morphology of the multifunctional avian bill is primarily shaped by climate and thermoregulatory ability in Melospiza melodia (Song Sparrow) on the California Channel Islands. Our research builds on a study in M. melodia museum specimens that demonstrated a positive correlation between bill surface area and maximum temperature, suggesting a greater demand for dry heat dissipation in hotter, xeric environments. We sampled contemporary sparrow populations across 3 climatically distinct islands to test the hypotheses that bill morphology is influenced by habitat differences with functional consequences for foraging efficiency and is related to maximum temperature and, consequently, important for thermoregulation. Measurements of >500 live individuals indicated a significant, positive relationship between maximum temperature and bill surface area when correcting for body size. In contrast, maximum bite force, seed extraction time, and vegetation on breeding territories (a proxy for food resources) were not significantly associated with bill dimensions. While we cannot exclude the influence of foraging ability and diet on bill morphology, our results are consistent with the hypothesis that variation in M. melodia need for thermoregulatory capacity across the northern Channel Islands selects for divergence in bill surface area.
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