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Dynamics of phenotypic change: wing length declines in a resident farmland passerine despite survival advantage of longer wings

机译:表型变化的动态:尽管长翅膀具有生存优势,但是在常驻农田雀形目中,翅膀长度下降

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摘要

In many taxa, environmental changes that alter resource availability and energetics, such as climate change and land use change, are associated with changes in body size. We use wing length as a proxy for overall structural body size to examine a paradoxical trend of declining wing length within a Yellowhammer Emberiza citrinella population sampled over 21 years, in which it has been previously shown that longer wings are associated with higher survival rates. Higher temperatures during the previous winter (prior to the moult determining current wing length) explained 23% of wing length decrease within our population, but changes may also be correlated with non-climatic environmental variation such as changes in farming mechanisms linked to food availability. We found no evidence for within-individual wing length shrinkage with age, but our data suggested a progressive decline in the sizes of immature birds recruiting to the population. This trend was weaker, although not significantly so, among adults, suggesting that the decline in the sizes of recruits was offset by higher subsequent survival of larger birds post-recruitment. These data suggest that ecological processes can contribute more than selection to observed phenotypic trends and highlight the importance of long-term studies for providing longitudinal insights into population processes.
机译:在许多生物分类中,改变资源可用性和能量的环境变化(例如气候变化和土地用途的变化)与身体大小的变化有关。我们使用机翼长度作为整体结构体尺寸的代表,以检验21年来采样的Yellowhammer Emberiza citrinella种群中机翼长度下降的反常趋势,其中先前已证明机翼较长与更高的存活率相关。前一个冬季的较高温度(在确定当前机翼长度的换羽期之前)解释了我们人口中机翼长度减少23%,但变化也可能与非气候环境变化相关,例如与粮食供应相关的耕作机制变化。我们没有发现随着年龄的增长个体翼长会缩小的证据,但是我们的数据表明,招募到该种群的未成熟鸟类的大小逐渐减少。这种趋势在成年动物中虽然没有那么明显,但没有那么明显,这表明新兵的规模下降被招募后更大的禽类随后的更高存活所抵消。这些数据表明,生态过程对观察到的表型趋势的贡献远不止于选择,并且突显了长期研究对于提供对种群过程的纵向洞察的重要性。

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    Dunn JC; Hamer KC; Benton TG;

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  • 年度 2017
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