Hays Quentin, Ropitaux Marc, Gügi Bruno, Vallois Anthony, Baron Aurélie, Vauzeilles Boris, Lerouge Patrice, Anderson Charles T, Lehner Arnaud
Université de Rouen Normandie, GLYCOMEV UR 4358, SFR Normandie Végétal FED 4277, Innovation Chimie Carnot, IRIB, F-76000 Rouen, France.
Université Paris-Saclay, CNRS, Institut de Chimie des Substances Naturelles, UPR 2301, 91198, Gif-sur-Yvette, France.
J Exp Bot. 2024 Jul 26. doi: 10.1093/jxb/erae315.
Boron dimerizes RG-II in the plant cell wall and is crucial for plant cell elongation. However, studying RG-II dimerization in plants is challenging because of the severe phenotypes or lethality of RG-II mutants. Boron deprivation abrogates both RG-II dimerization and plant growth, but whether or how these phenotypes are functionally linked has remained unclear. Boric acid analogues can serve as experimental tools to interfere with RG-II cross-linking. Here, we investigated RG-II dimerization and developmental phenotypes in Arabidopsis thaliana seedlings treated with a boric acid analogue, phenylboronic acid (PBA), to test whether the observed developmental phenotypes are attributable to alteration of RG-II dimerization or to other putative functions of boron in plants. We found that PBA treatment altered root development in seedlings while RG-II dimerization and distribution were not affected. Surprisingly, under low boron conditions, PBA treatment i) had no effect on root size but still prevented lateral root development and ii) restored RG-II dimerization. PBA treatment also disrupted auxin levels, potentially explaining the absence of lateral roots in seedlings treated with this analogue. We conclude that PBA interacts both with RG-II and other cellular targets such as auxin signaling components, and that the phenotypes caused by PBA arise from interference with multiple functions of boron.
硼在植物细胞壁中使鼠李糖半乳糖醛酸聚糖-II(RG-II)二聚化,对植物细胞伸长至关重要。然而,由于RG-II突变体具有严重的表型或致死性,研究植物中RG-II的二聚化具有挑战性。缺硼会消除RG-II的二聚化以及植物生长,但这些表型是否在功能上相关或如何相关仍不清楚。硼酸类似物可作为干扰RG-II交联的实验工具。在此,我们研究了用硼酸类似物苯硼酸(PBA)处理的拟南芥幼苗中的RG-II二聚化和发育表型,以测试观察到的发育表型是归因于RG-II二聚化的改变还是硼在植物中的其他假定功能。我们发现PBA处理改变了幼苗的根系发育,而RG-II的二聚化和分布不受影响。令人惊讶的是,在低硼条件下,PBA处理:i)对根大小没有影响,但仍阻止侧根发育;ii)恢复了RG-II的二聚化。PBA处理还扰乱了生长素水平,这可能解释了用这种类似物处理的幼苗中没有侧根的原因。我们得出结论,PBA与RG-II以及其他细胞靶点(如生长素信号成分)相互作用,并且PBA引起的表型源于对硼多种功能的干扰。