bioRxiv · 10.1101/2024.04.22.590590
Molecular and physiological characterization of brassinosteroid receptor BRI1 mutants in Sorghum bicolor
Abstract
SUMMARYO_LIThe high sequence and structural similarities between BRI1 brassinosteroid receptors of Arabidopsis (AtBRI1) and sorghum (SbBRI1) prompted us to study the functionally conserved roles of BRI in both organisms. C_LIO_LIIntroducing sorghum SbBRI1 in Arabidopsis bri1 mutants restores defective growth and developmental phenotypes to WT levels. C_LIO_LISorghum mutants for SbBRI1 receptors show defective BR sensitivity and impaired growth and development throughout the entire sorghum life cycle. Embryonic analysis of sorghum primary roots permit to trace back root growth and development to early stages, revealing the functionally conserved roles of SbBRI1 receptor in BR perception during meristem development. RNA-seq analysis uncovers the downstream regulation of the SbBRI1 pathway in cell wall biogenesis during cell growth. C_LIO_LITogether, these results uncover that sorghum SbBRI1 receptor protein play functionally conserved roles in plant growth and development, while encourage the study of BR pathways in sorghum and its implications for improving resilience in cereal crops. C_LI
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Rico-Medina, A., Blasco-Escamez, D., Fontanet-Manzaneque, J. B., Laibach, N., Lozano-Elena, F., Martignago, D., Cano-Delgado, A.. 2024-04-26. Molecular and physiological characterization of brassinosteroid receptor BRI1 mutants in Sorghum bicolor. https://doi.org/10.1101/2024.04.22.590590
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