DRACO-STEM: An Automatic Tool to Generate High-Quality 3D Meshes of Shoot Apical Meristem Tissue at Cell Resolution.

Front Plant Sci

Virtual Plants INRIA Team, UMR AGAP, CIRAD, INRIA, INRAMontpellier, France.

Published: March 2017

AI Article Synopsis

  • The shoot apical meristem (SAM) is a critical area in plants that controls the growth of aerial organs through complex interactions of genetics, hormones, and mechanics.
  • New techniques like 3D microscopy time-lapse imaging are emerging to study SAM development at the cellular level, and computational models need real data to validate their simulations.
  • The DRACO-STEM computational pipeline creates detailed 3D models of plant tissue from image data, optimizing them for various quality aspects, and is available as an open-source tool in the OpenAlea library for plant modeling.

Article Abstract

The shoot apical meristem (SAM), origin of all aerial organs of the plant, is a restricted niche of stem cells whose growth is regulated by a complex network of genetic, hormonal and mechanical interactions. Studying the development of this area at cell level using 3D microscopy time-lapse imaging is a newly emerging key to understand the processes controlling plant morphogenesis. Computational models have been proposed to simulate those mechanisms, however their validation on real-life data is an essential step that requires an adequate representation of the growing tissue to be carried out. The tool we introduce is a two-stage computational pipeline that generates a complete 3D triangular mesh of the tissue volume based on a segmented tissue image stack. DRACO (Dual Reconstruction by Adjacency Complex Optimization) is designed to retrieve the underlying 3D topological structure of the tissue and compute its dual geometry, while STEM (SAM Tissue Enhanced Mesh) returns a faithful triangular mesh optimized along several quality criteria (intrinsic quality, tissue reconstruction, visual adequacy). Quantitative evaluation tools measuring the performance of the method along those different dimensions are also provided. The resulting meshes can be used as input and validation for biomechanical simulations. DRACO-STEM is supplied as a package of the open-source multi-platform plant modeling library OpenAlea (http://openalea.github.io/) implemented in Python, and is freely distributed on GitHub (https://github.com/VirtualPlants/draco-stem) along with guidelines for installation and use.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5372818PMC
http://dx.doi.org/10.3389/fpls.2017.00353DOI Listing

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