Lara Alberto, Ródenas Reyes, Andrés Zaida, Martínez Vicente, Quintero Francisco J, Nieves-Cordones Manuel, Botella M Angeles, Rubio Francisco
Departamento de Nutrición Vegetal, Centro de Edafología y Biología Aplicada del Segura-CSIC, Campus de Espinardo, Murcia, Spain.
Department of Plant Developmental Biology, Centre for Organismal Studies, Heidelberg University, Heidelberg, Germany.
J Exp Bot. 2020 Aug 6;71(16):5053-5060. doi: 10.1093/jxb/eraa212.
The high-affinity K+ transporter HAK5 is the major contributor to root K+ uptake from dilute solutions in K+-starved Arabidopsis plants. Its functionality is tightly regulated and its activity is enhanced under K+ starvation by the transcriptional induction of the AtHAK5 gene, and by the activation of the transporter via the AtCBL1-AtCIPK23 complex. In the present study, the 26 members of the Arabidopsis CIPK protein kinase family were screened in yeast for their capacity to activate HAK5-mediated K+ uptake. Among them, AtCIPK1 was the most efficient activator of AtHAK5. In addition, AtCIPK9, previously reported to participate in K+ homeostasis, also activated the transporter. In roots, the genes encoding AtCIPK1 and AtCIPK9 were induced by K+ deprivation and atcipk1 and atcipk9 Arabidopsis KO mutants showed a reduced AtHAK5-mediated Rb+ uptake. Activation of AtHAK5 by AtCIPK1 did not occur under hyperosmotic stress conditions, where AtCIPK1 function has been shown to be required to maintain plant growth. Taken together, our data contribute to the identification of the complex regulatory networks that control the high-affinity K+ transporter AtHAK5 and root K+ uptake.
高亲和力钾离子转运体HAK5是缺钾拟南芥植株根系从稀溶液中吸收钾离子的主要贡献者。其功能受到严格调控,在钾饥饿条件下,AtHAK5基因的转录诱导以及通过AtCBL1-AtCIPK23复合体对转运体的激活可增强其活性。在本研究中,在酵母中筛选了拟南芥CIPK蛋白激酶家族的26个成员激活HAK5介导的钾离子吸收的能力。其中,AtCIPK1是AtHAK5最有效的激活剂。此外,先前报道参与钾离子稳态的AtCIPK9也能激活该转运体。在根系中,编码AtCIPK1和AtCIPK9的基因受钾离子剥夺诱导,atcipk1和atcipk9拟南芥敲除突变体中AtHAK5介导的铷离子吸收减少。在高渗胁迫条件下,AtCIPK1不能激活AtHAK5,而在该条件下已证明AtCIPK1的功能对维持植物生长是必需的。综上所述,我们的数据有助于识别控制高亲和力钾离子转运体AtHAK5和根系钾离子吸收的复杂调控网络。