Bill shape reflects divergent prey consumption for island compared to mainland American kestrels (Falco sparverius)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Landon R Jones, Chelsea M Berns, Mark C Belk, Robert M Bogardus
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Abstract

Feeding morphology permits animals to adapt to changing environments and is often under strong selection. We evaluated if bill shape varies according to differences in dietary prey taken across geographical ranges (North America, Central America, South America, and Caribbean islands) in a ubiquitous, New World raptor species, the American kestrel (Falco sparverius). Specifically, we predicted that bills in geographies where kestrels consumed a larger proportion of vertebrates would be shorter and wider, with a larger tomial tooth. We reviewed the literature on kestrel diets across their range and quantified potential differences in bill shape using geometric morphometric methods for 245 museum specimens. The literature review revealed that most prey consumed by kestrels in North, South, and Central America were invertebrates (51.6–69.1%), whereas Caribbean kestrels consumed mostly vertebrates (61.4%), most of which were reptiles (77.3%). Morphometric analyses agreed with these findings; bill shape differed for island versus mainland kestrels but not among mainland regions. Bill shape on islands reflected a more robust bill with a larger tomial tooth, but had a longer hook, which we suggest is adaptive for consumption of lizard prey, more available on islands due to reduced competition with other raptors compared to mainland regions.
喙的形状反映了岛屿红隼与大陆红隼捕食猎物的差异
进食形态使动物能够适应不断变化的环境,而且往往受到强烈的选择。我们评估了美洲隼(Falco sparverius)这一无处不在的新大陆猛禽物种的喙部形状是否会因不同地域(北美、中美、南美和加勒比海岛屿)捕食猎物的差异而变化。具体来说,我们预测在红隼食用脊椎动物比例较高的地区,红隼的喙会更短更宽,嗵齿也会更大。我们查阅了红隼在其分布区内的食谱文献,并使用几何形态计量学方法对 245 个博物馆标本的喙形状的潜在差异进行了量化。文献综述显示,北美洲、南美洲和中美洲的红隼捕食的大部分猎物是无脊椎动物(51.6-69.1%),而加勒比海红隼捕食的大部分猎物是脊椎动物(61.4%),其中大部分是爬行动物(77.3%)。形态分析结果与上述发现一致;岛屿红隼与大陆红隼的喙形存在差异,但大陆地区红隼的喙形没有差异。岛屿红隼的喙形更粗壮,喙臼齿更大,但喙钩更长,我们认为这是为了适应捕食蜥蜴猎物的需要,与大陆地区相比,岛屿红隼捕食蜥蜴猎物的机会更多,因为与其他猛禽的竞争减少了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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