Donald Danforth Plant Science Center, St Louis, MO 63132, USA.
Mol Plant. 2010 Mar;3(2):420-7. doi: 10.1093/mp/ssp121. Epub 2010 Feb 5.
Reactive oxygen species (ROS) play an important role in root responses to potassium deprivation by regulating the expression of the high-affinity K(+) transporter gene AtHAK5 and other genes. Activation-tagged lines of Arabidopsis plants containing the AtHAK5 promoter driving luciferase were screened for bioluminescence under potassium-sufficient conditions. A member of the type III peroxidase family, RCI3, was isolated and when it was overexpressed by the activation tag, this led to the enhanced expression of luciferase and the endogenous AtHAK5. RCI3 was found to be up-regulated upon potassium deprivation. Plants overexpressing RCI3 (RCI3-ox) showed more ROS production and AtHAK5 expression whereas the ROS production and AtHAK5 expression were reduced in rci3-1 under K(+)-deprived conditions. These results suggested that RCI3 is involved in the production of ROS under potassium deprivation and that RCI3-mediated ROS production affects the regulation of AtHAK5 expression. This peroxidase appears to be another component of the low-potassium signal transduction pathway in Arabidopsis roots.
活性氧(ROS)在根响应低钾胁迫中起重要作用,通过调节高亲和力 K+转运体基因 AtHAK5 和其他基因的表达来实现。通过筛选含有 AtHAK5 启动子驱动荧光素酶的拟南芥激活标签系,在钾充足条件下对生物发光进行筛选。分离到一个 III 型过氧化物酶家族成员 RCI3,当它被激活标签过表达时,会导致荧光素酶和内源性 AtHAK5 的表达增强。发现 RCI3 在低钾胁迫时会被上调。过表达 RCI3(RCI3-ox)的植物表现出更多的 ROS 产生和 AtHAK5 表达,而在 K+剥夺条件下 rci3-1 的 ROS 产生和 AtHAK5 表达减少。这些结果表明,RCI3 参与低钾胁迫下 ROS 的产生,并且 RCI3 介导的 ROS 产生影响 AtHAK5 表达的调控。这种过氧化物酶似乎是拟南芥根中低钾信号转导途径的另一个组成部分。