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The ribosomal protein RPS6A modulates auxin signalling and root development in Arabidopsis

Authors: Pan, K., Hou, K., Kong, M., Tan, S.

Date: 2025-02-28 · Version: 1
DOI: 10.1101/2025.02.26.640312

Category: Plant Biology

Model Organism: Arabidopsis thaliana

AI Summary

The study investigates the Arabidopsis ribosomal protein RPS6A and its role in auxin‑related root growth, revealing that rps6a mutants display shortened primary roots, fewer lateral roots, and defective vasculature that are not rescued by exogenous auxin. Cell biological observations and global transcriptome profiling show weakened auxin signaling and reduced levels of PIN auxin transporters in the mutant, indicating a non‑canonical function of the ribosomal subunit in auxin pathways.

RPS6A auxin signaling Arabidopsis thaliana root development PIN transporters

ABP1/ABL3-TMK1 cell-surface auxin signaling directly targets PIN2-mediated auxin fluxes for root gravitropism

Authors: Rodriguez, L., Fiedler, L., Zou, M., Giannini, C., Monzer, A., Vladimirtsev, D., Randuch, M., Yu, Y., Gelova, Z., Verstraeten, I., Hajny, J., Chen, M., Tan, S., Hoermayer, L., Li, L., Marques-Bueno, M. M., Quddoos, Z., Molnar, G., Xu, T., Kulich, I., Jaillais, Y., Friml, J.

Date: 2025-02-20 · Version: 2
DOI: 10.1101/2022.11.30.518503

Category: Plant Biology

Model Organism: Arabidopsis thaliana

AI Summary

The study reveals that auxin signaling via the cell‑surface ABP1‑TMK1 receptor complex directly phosphorylates and stabilizes the PIN2 auxin transporter, reinforcing asymmetric auxin flow during root gravitropism. Autophosphorylation of TMK1 after gravistimulation promotes its interaction with PIN2, and ABP1 functions redundantly with ABL3 upstream of TMK1, establishing a positive feedback loop essential for robust root bending.

auxin signaling PIN2 phosphorylation TMK1 kinase root gravitropism ABP1 receptor

Transcriptomic insights into the role of miR394 in the regulation of flowering time in Arabidopsis thaliana

Authors: Belen, F., Bernardi, Y., Reutemann, A., Vegetti, A., Dotto, M. C.

Date: 2025-02-20 · Version: 1
DOI: 10.1101/2025.02.15.638417

Category: Plant Biology

Model Organism: Arabidopsis thaliana

AI Summary

The study investigates how miR394 influences flowering time in Arabidopsis thaliana by combining transcriptomic profiling of mir394a mir394b double mutants with histological analysis of reporter lines. Bioinformatic analysis identified a novel lncRNA overlapping MIR394B (named MIRAST), and differential promoter activity of MIR394A and MIR394B suggests miR394 fine‑tunes flower development through transcription factor and chromatin remodeler regulation.

miR394 flowering time Arabidopsis thaliana transcriptomics lncRNA

An oomycete effector that induces shade avoidance like growth and suppresses plant defenses targets the AUX/IAA protein IAA11

Authors: Bogino, M. F., Lapegna Senz, J. M., Tamagnone, N., Kourdova, L. T., Romanowski, A., Wirthmueller, L., Fabro, G.

Date: 2025-02-08 · Version: 1
DOI: 10.1101/2025.02.06.636700

Category: Plant Biology

Model Organism: Arabidopsis thaliana

AI Summary

The study shows that the Hyaloperonospora arabidopsidis effector HaRxL106 interferes with the Arabidopsis AUX/IAA protein IAA11, weakening its repressive role and thereby enhancing auxin signaling, which triggers shade‑avoidance‑like growth and concomitantly dampens immune responses. These results reveal a mechanism by which a pathogen effector co‑opts hormonal pathways to promote infection.

HaRxL106 auxin signaling IAA11 shade avoidance syndrome plant immunity suppression
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