Laboratory of Biochemistry, Wageningen University, Stippeneng 4, Wageningen, the Netherlands.
Department of Experimental Plant Biology, Charles University, Prague, Czech Republic.
Cell. 2024 Jan 4;187(1):130-148.e17. doi: 10.1016/j.cell.2023.11.021. Epub 2023 Dec 20.
The plant-signaling molecule auxin triggers fast and slow cellular responses across land plants and algae. The nuclear auxin pathway mediates gene expression and controls growth and development in land plants, but this pathway is absent from algal sister groups. Several components of rapid responses have been identified in Arabidopsis, but it is unknown if these are part of a conserved mechanism. We recently identified a fast, proteome-wide phosphorylation response to auxin. Here, we show that this response occurs across 5 land plant and algal species and converges on a core group of shared targets. We found conserved rapid physiological responses to auxin in the same species and identified rapidly accelerated fibrosarcoma (RAF)-like protein kinases as central mediators of auxin-triggered phosphorylation across species. Genetic analysis connects this kinase to both auxin-triggered protein phosphorylation and rapid cellular response, thus identifying an ancient mechanism for fast auxin responses in the green lineage.
植物信号分子生长素在陆地植物和藻类中引发快速和慢速的细胞反应。核生长素途径介导基因表达,并控制陆地植物的生长和发育,但该途径在藻类姐妹群中缺失。在拟南芥中已经鉴定出快速反应的几个组成部分,但尚不清楚这些是否是保守机制的一部分。我们最近鉴定出了生长素诱导的快速全蛋白质组磷酸化反应。在这里,我们表明这种反应发生在 5 种陆地植物和藻类物种中,并集中在一组共享的核心目标上。我们发现同一物种对生长素有保守的快速生理反应,并鉴定出快速加速纤维肉瘤(RAF)样蛋白激酶作为跨物种生长素触发磷酸化的中心介质。遗传分析将这种激酶与生长素触发的蛋白磷酸化和快速细胞反应联系起来,从而鉴定出绿色谱系中快速生长素反应的古老机制。