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Erratum to: Morphometric analysis of Passiflora leaves: the relationship between landmarks of the vasculature and elliptical Fourier descriptors of the blade

机译:误斗:乘法叶片的形态学分析:叶片血管系统和椭圆形傅立叶描述符的地标与刀片的关系

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Background Leaf shape among Passiflora species is spectacularly diverse. Underlying this diversity in leaf shape are profound changes in the patterning of the primary vasculature and laminar outgrowth. Each of these aspects of leaf morphology—vasculature and blade—provides different insights into leaf patterning. Results Here, we morphometrically analyze 3300 leaves from 40 different Passiflora species collected sequentially across the vine. Each leaf is measured in two different ways: using 1) 15 homologous Procrustes-adjusted landmarks of the vasculature, sinuses, and lobes; and 2) Elliptical Fourier Descriptors (EFDs), which quantify the outline of the leaf. The ability of landmarks, EFDs, and both datasets together are compared to determine their relative ability to predict species and node position within the vine. Pairwise correlation of x and y landmark coordinates and EFD harmonic coefficients reveals close associations between traits and insights into the relationship between vasculature and blade patterning. Conclusions Landmarks, more reflective of the vasculature, and EFDs, more reflective of the blade contour, describe both similar and distinct features of leaf morphology. Landmarks and EFDs vary in ability to predict species identity and node position in the vine and exhibit a correlational structure (both within landmark or EFD traits and between the two data types) revealing constraints between vascular and blade patterning underlying natural variation in leaf morphology among Passiflora species.
机译:Passiflora种类中的背景叶子形状是壮观的多样化。叶形上的这种多样性是主要脉管系统和层流越来越多的叶子形状的深刻变化。叶片形态学和叶片的这些方面中的每一个都可以为叶子图案提供不同的见解。结果在此,我们的形态学地分析> 3300叶片从葡萄次依次收集的40种不同的西番莲种。每片叶子以两种不同的方式测量:使用1)15个同源促进脉管系统,鼻窦和裂片的地标。 2)椭圆形傅立叶描述符(EFD),其量化叶子的轮廓。将地标,EFD和两个数据集的能力进行了比较,以确定它们相对能力预测葡萄内内的物种和节点位置。 X和Y地标坐标和EFD谐波系数的成对相关性揭示了特征和洞察之间的密切关联,进入脉管系统和刀片图案化之间的关系。结论地标,更反光的脉管系统和eFDS,更反射叶片轮廓,描述了叶形形态的类似明确特征。地标和EFD能够在葡萄中预测物种标识和节点位置的能力,并表现出相关结构(在地标或EFD特征中以及两种数据类型之间)揭示血管和刀片图案化在杂志中叶片形态的基础自然变化之间的约束物种。

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