: Precise organization of growing structures is a fundamental process in developmental biology. In plants, radial growth is mediated by the cambium, a stem cell niche continuously producing wood (xylem) and bast (phloem) in a strictly bidirectional manner. While this process contributes large parts to terrestrial biomass, cambium dynamics eludes direct experimental access due to obstacles in live cell imaging. Here, we present a cell-based computational model visualizing cambium activity and integrating the function of central cambium regulators. Performing iterative comparisons of plant and model anatomies, we conclude that the receptor-like kinase PXY and its ligand CLE41 are part of a minimal framework sufficient for instructing tissue organization. By integrating tissue-specific cell wall stiffness values, we moreover probe the influence of physical constraints on tissue geometry. Our model highlights the role of intercellular communication within the cambium and shows that a limited number of factors is sufficient to create radial growth by bidirectional tissue production.

Computational modelling of cambium activity provides a regulatory framework for simulating radial plant growth / Lebovka, Ivan; Hay Mele, Bruno; Liu, Xiaomin; Zakieva, Alexandra; Schlamp, Theresa; Gursanscky, Nial Rau; Merks, Roeland M H; Großeholz, Ruth; Greb, Thomas. - In: ELIFE. - ISSN 2050-084X. - 12:(2023). [10.7554/eLife.66627]

Computational modelling of cambium activity provides a regulatory framework for simulating radial plant growth

Hay Mele, Bruno
Secondo
;
2023

Abstract

: Precise organization of growing structures is a fundamental process in developmental biology. In plants, radial growth is mediated by the cambium, a stem cell niche continuously producing wood (xylem) and bast (phloem) in a strictly bidirectional manner. While this process contributes large parts to terrestrial biomass, cambium dynamics eludes direct experimental access due to obstacles in live cell imaging. Here, we present a cell-based computational model visualizing cambium activity and integrating the function of central cambium regulators. Performing iterative comparisons of plant and model anatomies, we conclude that the receptor-like kinase PXY and its ligand CLE41 are part of a minimal framework sufficient for instructing tissue organization. By integrating tissue-specific cell wall stiffness values, we moreover probe the influence of physical constraints on tissue geometry. Our model highlights the role of intercellular communication within the cambium and shows that a limited number of factors is sufficient to create radial growth by bidirectional tissue production.
2023
Computational modelling of cambium activity provides a regulatory framework for simulating radial plant growth / Lebovka, Ivan; Hay Mele, Bruno; Liu, Xiaomin; Zakieva, Alexandra; Schlamp, Theresa; Gursanscky, Nial Rau; Merks, Roeland M H; Großeholz, Ruth; Greb, Thomas. - In: ELIFE. - ISSN 2050-084X. - 12:(2023). [10.7554/eLife.66627]
File in questo prodotto:
File Dimensione Formato  
elife-66627-v1.pdf

accesso aperto

Tipologia: Versione Editoriale (PDF)
Licenza: Creative commons
Dimensione 52.55 MB
Formato Adobe PDF
52.55 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/914301
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 10
  • ???jsp.display-item.citation.isi??? 8
social impact