Plants (Nov 2022)

The Genetic Control of SEEDSTICK and LEUNIG-HOMOLOG in Seed and Fruit Development: New Insights into Cell Wall Control

  • Maurizio Di Marzo,
  • Nicola Babolin,
  • Vívian Ebeling Viana,
  • Antonio Costa de Oliveira,
  • Bruno Gugi,
  • Elisabetta Caporali,
  • Humberto Herrera-Ubaldo,
  • Eduardo Martínez-Estrada,
  • Azeddine Driouich,
  • Stefan de Folter,
  • Lucia Colombo,
  • Ignacio Ezquer

DOI
https://doi.org/10.3390/plants11223146
Journal volume & issue
Vol. 11, no. 22
p. 3146

Abstract

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Although much is known about seed and fruit development at the molecular level, many gaps remain in our understanding of how cell wall modifications can impact developmental processes in plants, as well as how biomechanical alterations influence seed and fruit growth. Mutants of Arabidopsis thaliana constitute an excellent tool to study the function of gene families devoted to cell wall biogenesis. We have characterized a collection of lines carrying mutations in representative cell wall-related genes for seed and fruit size developmental defects, as well as altered germination rates. We have linked these studies to cell wall composition and structure. Interestingly, we have found that disruption of genes involved in pectin maturation and hemicellulose deposition strongly influence germination dynamics. Finally, we focused on two transcriptional regulators, SEEDSTICK (STK) and LEUNIG-HOMOLOG (LUH), which positively regulate seed growth. Herein, we demonstrate that these factors regulate specific aspects of cell wall properties such as pectin distribution. We propose a model wherein changes in seed coat structure due to alterations in the xyloglucan-cellulose matrix deposition and pectin maturation are critical for organ growth and germination. The results demonstrate the importance of cell wall properties and remodeling of polysaccharides as major factors responsible for seed development.

Keywords