The hidden diversity of vascular patterns in flower heads

Author:

Owens Andrew1ORCID,Zhang Teng2ORCID,Gu Philmo1ORCID,Hart Jeremy1ORCID,Stobbs Jarvis3ORCID,Cieslak Mikolaj1ORCID,Elomaa Paula2ORCID,Prusinkiewicz Przemyslaw1ORCID

Affiliation:

1. Department of Computer Science University of Calgary Calgary AB T2N 1N4 Canada

2. Department of Agricultural Sciences, Viikki Plant Science Centre University of Helsinki PO Box 27 Helsinki 00014 Finland

3. Canadian Light Source Inc. 44 Innovation Blvd Saskatoon SK S7N 2V3 Canada

Abstract

Summary Vascular systems are intimately related to the shape and spatial arrangement of the plant organs they support. We investigate the largely unexplored association between spiral phyllotaxis and the vascular system in Asteraceae flower heads. We imaged heads of eight species using synchrotron‐based X‐ray micro‐computed tomography and applied original virtual reality and haptic software to explore head vasculature in three dimensions. We then constructed a computational model to infer a plausible patterning mechanism. The vascular system in the head of the model plant Gerbera hybrida is qualitatively different from those of Bellis perennis and Helianthus annuus, characterized previously. Cirsium vulgare, Craspedia globosa, Echinacea purpurea, Echinops bannaticus, and Tanacetum vulgare represent variants of the Bellis and Helianthus systems. In each species, the layout of the main strands is stereotypical, but details vary. The observed vascular patterns can be generated by a common computational model with different parameter values. In spite of the observed differences of vascular systems in heads, they may be produced by a conserved mechanism. The diversity and irregularities of vasculature stand in contrast with the relative uniformity and regularity of phyllotactic patterns, confirming that phyllotaxis in heads is not driven by the vasculature.

Funder

Natural Sciences and Engineering Research Council of Canada

Academy of Finland

Publisher

Wiley

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