Spatio-temporal analysis of strawberry architecture: insights into the control of branching and inflorescence complexity.

Marc Labadie, Karine Guy, Marie-Noëlle Demené, Yves Caraglio, Gaetan Heidsieck, Amelia Gaston, Christophe Rothan, Yann Guédon, Christophe Pradal, Béatrice Denoyes
Author Information
  1. Marc Labadie: Univ. Bordeaux, INRAE, Biologie du Fruit et Pathologie, UMR 1332, F-33140, France.
  2. Karine Guy: INVENIO, MIN de Brienne, 110 quai de Paludate, 33800 Bordeaux, France.
  3. Marie-Noëlle Demené: INVENIO, MIN de Brienne, 110 quai de Paludate, 33800 Bordeaux, France.
  4. Yves Caraglio: CIRAD, UMR AMAP and Université de Montpellier, 34398 Montpellier, France.
  5. Gaetan Heidsieck: Univ. Bordeaux, INRAE, Biologie du Fruit et Pathologie, UMR 1332, F-33140, France.
  6. Amelia Gaston: Univ. Bordeaux, INRAE, Biologie du Fruit et Pathologie, UMR 1332, F-33140, France.
  7. Christophe Rothan: Univ. Bordeaux, INRAE, Biologie du Fruit et Pathologie, UMR 1332, F-33140, France.
  8. Yann Guédon: CIRAD, UMR AGAP Institut, F-34398 Montpellier, France.
  9. Christophe Pradal: CIRAD, UMR AGAP Institut, F-34398 Montpellier, France. ORCID
  10. Béatrice Denoyes: Univ. Bordeaux, INRAE, Biologie du Fruit et Pathologie, UMR 1332, F-33140, France. ORCID

Abstract

Plant architecture plays a major role in flowering and therefore in crop yield. Attempts to visualize and analyse strawberry plant architecture have been few to date. Here, we developed open-source software combining two- and three-dimensional representations of plant development over time along with statistical methods to explore the variability in spatio-temporal development of plant architecture in cultivated strawberry. We applied this software to six seasonal strawberry varieties whose plants were exhaustively described monthly at the node scale. Results showed that the architectural pattern of the strawberry plant is characterized by a decrease of the module complexity between the zeroth-order module (primary crown) and higher-order modules (lateral branch crowns and extension crowns). Furthermore, for each variety, we could identify traits with a central role in determining yield, such as date of appearance and number of branches. By modeling the spatial organization of axillary meristem fate on the zeroth-order module using a hidden hybrid Markov/semi-Markov mathematical model, we further identified three zones with different probabilities of production of branch crowns, dormant buds, or stolons. This open-source software will be of value to the scientific community and breeders in studying the influence of environmental and genetic cues on strawberry architecture and yield.

Keywords

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MeSH Term

Inflorescence
Fragaria
Plant Development
Meristem
Spatio-Temporal Analysis

Word Cloud

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