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Adding the third dimension to studies of parallel evolution of morphology and function: An exploration based on parapatric lake‐stream stickleback

机译:添加第三个维度以研究形态学和功能的平行演变:基于Parapatric Lake-Stream Stickleback的探索

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摘要

Recent methodological advances have led to a rapid expansion of evolutionary studies employing three‐dimensional landmark‐based geometric morphometrics (GM). GM methods generally enable researchers to capture and compare complex shape phenotypes, and to quantify their relationship to environmental gradients. However, some recent studies have shown that the common, inexpensive, and relatively rapid two‐dimensional GM methods can distort important information and produce misleading results because they cannot capture variation in the depth (Z) dimension. We use micro‐CT scanned threespine stickleback (Gasterosteus aculeatus Linnaeus, 1758) from six parapatric lake‐stream populations on Vancouver Island, British Columbia, to test whether the loss of the depth dimension in 2D GM studies results in misleading interpretations of parallel evolution. Using joint locations described with 2D or 3D landmarks, we compare results from separate 2D and 3D shape spaces, from a combined 2D‐3D shape space, and from estimates of biomechanical function. We show that, although shape is distorted enough in 2D projections to strongly influence the interpretation of morphological parallelism, estimates of biomechanical function are relatively robust to the loss of the Z dimension.
机译:最近的方法进步导致采用基于三维地标的几何形态学测定肌(GM)的进化研究的快速扩张。 GM方法通常使研究人员能够捕获和比较复杂的形状表型,并量化其与环境梯度的关系。然而,一些最近的研究表明,共同,廉价和相对较快的二维转基因方法可以扭曲重要信息并产生误导性结果,因为它们不能捕获深度(Z)维度的变化。我们使用Micro-CT扫描的Threeshine Stickleback(Gasterosteus Aculeatus Linnaeus,1758)在不列颠哥伦比亚省温哥华岛上的六个帕劳府湖流人群中,测试2D转基因研究中深度尺寸的损失导致误导性地进化的解释。使用具有2D或3D地标描述的联合位置,我们从组合的2D-3D形状空间和生物力学功能的估计比较来自单独的2D和3D形状空间的结果。我们表明,尽管在2D突起中形成了足够扭曲以强烈影响形态平行性的解释,但生物力学功能的估计对Z尺寸的损失相对稳健。

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