Kiba Takatoshi, Yamada Hisami, Sato Shusei, Kato Tomohiko, Tabata Satoshi, Yamashino Takafumi, Mizuno Takeshi
Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University, Chikusa-ku, Nagoya 464-8601, Japan.
Plant Cell Physiol. 2003 Aug;44(8):868-74. doi: 10.1093/pcp/pcg108.
The Arabidopsis thaliana AHK4 histidine kinase (also known as CRE1 or WOL) acts as a cytokinin signal transducer, presumably, in concert with downstream components, such as histidine-containing phosphotransfer factors (AHPs) and response regulators (ARRs), through the histidine-to-aspartate (His-->Asp) phosphorelay. Among 10 members of the type-A ARR family, the cytokinin-induced expression of ARR15 in roots is selectively impaired in the cre1-1 mutant, which carries a mutation in the AHK4 gene, suggesting a link between this type-A response regulator and the AHK4-mediated cytokinin signal transduction in roots. To address this issue further, we characterized a T-DNA insertion mutant of ARR15, and also constructed transgenic lines (referred to as ARR15-ox) that overexpress the ARR15 gene in a manner independent of cytokinin. While the T-DNA insertion mutant (arr15-1) showed no apparent phenotype, the cytokinin-independent overexpression of ARR15 in ARR15-ox plants resulted in a reduced sensitivity toward exogenously applied cytokinin, not only in elongation of roots in plants, but also in green callus formation (or shoot formation) in explants. Cytokinin-induced expressions of certain type-A ARRs were also down-regulated in ARR15-ox plants. These results support the view that ARR15 acts as a repressor that mediates a negative feedback loop in the cytokinin and AHK4-mediated His-->Asp phosphorelay.
拟南芥AHK4组氨酸激酶(也称为CRE1或WOL)作为细胞分裂素信号转导子,可能通过组氨酸到天冬氨酸(His→Asp)的磷酸化中继,与下游组分如含组氨酸的磷酸转移因子(AHPs)和响应调节因子(ARRs)协同作用。在A型ARR家族的10个成员中,细胞分裂素诱导的根中ARR15的表达在cre1-1突变体中选择性受损,该突变体的AHK4基因发生了突变,这表明这种A型响应调节因子与根中AHK4介导的细胞分裂素信号转导之间存在联系。为了进一步解决这个问题,我们对ARR15的一个T-DNA插入突变体进行了表征,并构建了以不依赖细胞分裂素的方式过表达ARR15基因的转基因株系(称为ARR15-ox)。虽然T-DNA插入突变体(arr15-1)没有表现出明显的表型,但ARR15-ox植株中不依赖细胞分裂素的ARR15过表达导致对外源施加的细胞分裂素敏感性降低,不仅在植株根的伸长方面,而且在外植体的绿色愈伤组织形成(或芽形成)方面。某些A型ARRs的细胞分裂素诱导表达在ARR15-ox植株中也下调。这些结果支持了ARR15作为一种阻遏物的观点,它在细胞分裂素和AHK4介导的His→Asp磷酸化中继中介导负反馈环。