首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Reinterpretation of gizzard sizes of red knots world-wide emphasises overriding importance of prey quality at migratory stopover sites
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Reinterpretation of gizzard sizes of red knots world-wide emphasises overriding importance of prey quality at migratory stopover sites

机译:重新解释世界范围内红结g的大小强调了移居中转站的猎物质量至为重要

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摘要

The size of digestive organs can be rapidly and reversibly adjusted to ecological circumstances, but such phenotypic flexibility comes at a cost. Here, we test how the gizzard mass of a long-distance migrant, the red knot (Calidris canutus), is adjusted to (i) local climate, (ii) prey quality and (iii) migratory fuelling demands. For eight sites around the world (both wintering and stopover sites), we assembled data on gizzard masses of free-living red knots, the quality of their prey and the local climate. Using an energetic cost–benefit approach, we predicted the gizzard size required for fastest fuelling (net rate-maximization, i.e. expected during migration) and the gizzard size required to balance daily energy budgets (satisficing, expected in wintering birds) at each site. The measured gizzards matched the net rate-maximizing predictions at stopover sites and the satisficing predictions at wintering sites. To our surprise, owing to the fact that red knots selected stopover sites with prey of particularly high quality, gizzard sizes at stopovers and at wintering sites were nevertheless similar. To quantify the benefit of minimizing size changes in the gizzard, we constructed a model incorporating the size-dependent energy costs of maintaining and carrying a gizzard. The model showed that by selecting stopovers containing high-quality prey, metabolic rates are kept at a minimum, potentially reducing the spring migratory period by a full week. By inference, red knots appear to time their stopovers so that they hit local peaks in prey quality, which occur during the reproductive seasons of the intertidal benthic invertebrates.
机译:消化器官的大小可以根据生态环境快速而可逆地进行调整,但是这种表型的灵活性是有代价的。在这里,我们测试了如何根据(i)当地气候,(ii)猎物质量和(iii)迁徙加油需求来调整长途移民的红色结(Calidris canutus)的mass质量。对于世界各地的八个站点(包括越冬站点和中途停留站点),我们收集了自由活动的红色结的g群,猎物的质量和当地气候的数据。我们使用精力充沛的成本效益方法,预测了每个站点最快加油所需的izz大小(净率最大化,即迁移期间的预期值)和平衡每日能量预算所需的g大小(满足感,对于越冬的鸟类预期)。测得的izz与中途停留地点的最大净率预测和越冬地点的令人满意的预测相匹配。令我们惊讶的是,由于红色结选择了质量特别高的猎物的中转站,因此中转站和越冬站点的g大小相似。为了量化最小化g尺寸变化的好处,我们构建了一个模型,该模型结合了维护和携带a尺寸依赖于能源的成本。该模型显示,通过选择包含优质猎物的中途停留地,新陈代谢率可保持在最低水平,从而有可能使春季迁徙期减少整整一周。通过推论,红色结似乎为它们的中途停留时间计时,使它们达到了猎物质量的局部高峰,这种高峰发生在潮间带底栖无脊椎动物的繁殖季节。

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