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The temporal scale of diet and dietary proxies

机译:饮食和饮食替代的时间尺度

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Abstract Diets estimated from different proxies such as stable isotopes, stomach contents, and dental microwear often disagree, leading to nominally well-supported but greatly differing estimates of diet for both extinct and extant species that complicate our understanding of ecology. We show that these perceived incongruences can be caused by proxies recording diet over vastly different timescales. Field observations reveal a diet averaged over minutes or hours, whereas dental morphology may reflect the diet of a lineage over millions of years of evolution. Failing to explicitly consider the scale of proxies and the potentially large temporal variability in diet can cause erroneous predictions in any downstream analyses such as conservation planning or paleohabitat reconstructions. We propose a cross-scale framework for conceptualizing diet suitable for both modern ecologists and paleontologists and provide recommendations for any studies involving dietary data. Treating diet in this temporally explicit framework and matching the scale of our questions with the scale of our data will lead to a much richer and clearer understanding of ecological and evolutionary processes.
机译:摘要来自不同代理人(例如稳定同位素,胃内容物和牙齿微磨损)的饮食估计经常会出现分歧,从而导致在灭绝物种和现存物种中名义上得到良好支持但饮食差异很大,这使我们对生态的理解更加复杂。我们表明,这些感知到的不一致可能是由代理记录的饮食在非常不同的时间范围内引起的。野外观察表明,平均饮食时间超过数分钟或数小时,而牙齿的形态可能反映了数百万年进化过程中的血统饮食。没有明确考虑代理的规模和饮食中可能存在的较大时间变化,可能会在任何下游分析(例如保护规划或古栖息地重建)中导致错误的预测。我们提出了一个跨尺度的概念化饮食框架,适合现代生态学家和古生物学者,并为涉及饮食数据的任何研究提供建议。在这个时间明确的框架内处理饮食并将问题的规模与数据的规模相匹配,将使人们对生态和进化过程的理解更加丰富和清晰。

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