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April 1, 2026Applications in Plant Sciences0 citationsOpen Access

Procrustean pseudo‐landmark methods in Python to measure massive quantities of leaf shape data

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AHAsia T. HightowerSHSvea HallRCRicardo Urquidi Camacho

Key Points

  • To develop a user-friendly method for analyzing and comparing leaf shapes using pseudo-landmarks and statistical techniques.
  • Utilized Jupyter Notebook and Python for analysis
  • Created a leaf shape repository from eight datasets
  • Applied generalized Procrustes analysis to measure leaf shapes
  • Implemented dimension reduction and predictive analysis techniques
  • Demonstrated effective comparison of leaf shapes within and between species
  • Mapped shape differences during leaf development
  • Showed relationship between leaf shape variation and genetic diversity

Abstract

Abstract Premise When examining leaf shapes that are different from one another, it can be difficult to compare both the overall leaf shape and points along the leaf margin in biologically and statistically meaningful ways. Methods To address this problem, we present a simple and user‐friendly leaf shape analysis method in Jupyter Notebook and Python that uses pseudo‐landmarks and generalized Procrustes analysis to measure and compare the shape of any leaf. To demonstrate our analysis, we created a repository of real leaves gathered from eight experimental datasets. Results Using our leaf repository, we explain how we can use pseudo‐landmarks to compare all leaf shapes, both within and between species, using dimension reduction techniques like principal component analysis and can predict leaf shapes using pseudo‐landmarks through linear discriminant analysis. Our leaf shape analysis also maps differences in shape as leaves grew around a rosette, showing the transition of shape across development (phyllotaxy). Finally, we showed how the relationship between leaf shape variation and genetic diversity can be investigated by combining shape with genetic data. Discussion Through the use of generalized Procrustes analysis and pseudo‐landmarks, our leaf shape analysis presents a powerful tool for examining the shape of any leaf across multiple biological, ecological, evolutionary, and developmental scales.

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Cite This Study

Hightower et al. (2026) studied this question.

synapsesocial.com/papers/69cd7af55652765b073a8910https://doi.org/10.1002/aps3.70051
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