Department of Biosciences, Durham University, Durham DH1 3LE, UK.
Plant Physiol. 2021 Apr 2;185(3):1198-1215. doi: 10.1093/plphys/kiaa093.
The potassium ion (K+) is vital for plant growth and development, and K+-deprivation leads to reduced crop yields. Here we describe phenotypic, transcriptomic, and mutant analyses to investigate the signaling mechanisms mediating root architectural changes in Arabidopsis (Arabidopsis thaliana) Columbia. We showed effects on root architecture are mediated through a reduction in cell division in the lateral root (LR) meristems, the rate of LR initiation is reduced but LR density is unaffected, and primary root growth is reduced only slightly. This was primarily regulated through gibberellic acid (GA) signaling, which leads to the accumulation of growth-inhibitory DELLA proteins. The short LR phenotype was rescued by exogenous application of GA but not of auxin or by the inhibition of ethylene signaling. RNA-seq analysis showed upregulation by K+-deprivation of the transcription factors JUNGBRUNNEN1 (JUB1) and the C-repeat-binding factor (CBF)/dehydration-responsive element-binding factor 1 regulon, which are known to regulate GA signaling and levels that regulate DELLAs. Transgenic overexpression of JUB1 and CBF1 enhanced responses to K+ stress. Attenuation of the reduced LR growth response occurred in mutants of the CBF1 target gene SFR6, implicating a role for JUB1, CBF1, and SFR6 in the regulation of LR growth in response to K+-deprivation via DELLAs. We propose this represents a mechanism to limit horizontal root growth in conditions where K+ is available deeper in the soil.
钾离子(K+)对植物的生长和发育至关重要,而 K+剥夺会导致作物产量降低。在这里,我们通过表型、转录组和突变体分析来描述参与拟南芥(Arabidopsis thaliana)哥伦比亚根构型变化的信号转导机制。我们发现,根构型的变化是通过侧根(LR)分生组织中细胞分裂减少来介导的,LR 起始率降低,但 LR 密度不受影响,主根生长仅略有减少。这主要是通过赤霉素(GA)信号转导来调节的,赤霉素信号转导导致生长抑制性 DELLA 蛋白的积累。通过外源施用 GA 而不是生长素或抑制乙烯信号转导,可以挽救短 LR 表型。RNA-seq 分析表明,K+剥夺上调了转录因子 JUNGBRUNNEN1(JUB1)和 C-重复结合因子(CBF)/脱水响应元件结合因子 1 调控因子的表达,这两个因子已知调节 GA 信号转导和 DELLA 调节水平。JUB1 和 CBF1 的转基因过表达增强了对 K+胁迫的响应。CBF1 靶基因 SFR6 的突变体中,LR 生长的减少反应减弱,这表明 JUB1、CBF1 和 SFR6 在通过 DELLA 调节 K+剥夺时对 LR 生长的响应中起作用。我们提出,这代表了一种在 K+在土壤深处可用的情况下限制水平根生长的机制。