The annotation and analysis of complex 3D plant organs using 3DCoordX

Author:

Vijayan Athul1ORCID,Strauss Soeren2ORCID,Tofanelli Rachele1ORCID,Mody Tejasvinee Atul1ORCID,Lee Karen3ORCID,Tsiantis Miltos2ORCID,Smith Richard S23ORCID,Schneitz Kay1ORCID

Affiliation:

1. Plant Developmental Biology, TUM School of Life Sciences, Technical University of Munich , Freising, Germany

2. Department of Comparative Developmental and Genetics, Max Planck Institute for Plant Breeding Research , Cologne, Germany

3. The John Innes Centre , Norwich, UK

Abstract

Abstract A fundamental question in biology concerns how molecular and cellular processes become integrated during morphogenesis. In plants, characterization of 3D digital representations of organs at single-cell resolution represents a promising approach to addressing this problem. A major challenge is to provide organ-centric spatial context to cells of an organ. We developed several general rules for the annotation of cell position and embodied them in 3DCoordX, a user-interactive computer toolbox implemented in the open-source software MorphoGraphX. 3DCoordX enables rapid spatial annotation of cells even in highly curved biological shapes. Using 3DCoordX, we analyzed cellular growth patterns in organs of several species. For example, the data indicated the presence of a basal cell proliferation zone in the ovule primordium of Arabidopsis (Arabidopsis thaliana). Proof-of-concept analyses suggested a preferential increase in cell length associated with neck elongation in the archegonium of Marchantia (Marchantia polymorpha) and variations in cell volume linked to central morphogenetic features of a trap of the carnivorous plant Utricularia (Utricularia gibba). Our work demonstrates the broad applicability of the developed strategies as they provide organ-centric spatial context to cellular features in plant organs of diverse shape complexity.

Funder

German Research Council through grants FOR2581

Max Planck Society core

Biotechnology and Biological Sciences Council through

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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