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拟南芥响应调节因子ARR22,其异位表达导致的表型与wol细胞分裂素受体突变体相似。

Arabidopsis response regulator, ARR22, ectopic expression of which results in phenotypes similar to the wol cytokinin-receptor mutant.

作者信息

Kiba Takatoshi, Aoki Koh, Sakakibara Hitoshi, Mizuno Takeshi

机构信息

Laboratory of Molecular Microbiology, School of Agriculture, Nagoya University, Chikusa-ku, Nagoya, 464-8601 Japan.

出版信息

Plant Cell Physiol. 2004 Aug;45(8):1063-77. doi: 10.1093/pcp/pch128.

Abstract

Arabidopsis thaliana has a number of response regulators (ARRs) implicated in the histidine (His)-->aspartate (Asp) phosphorelay signal transduction. According to the current consistent model, both the type-A and type-B ARR family members play crucial roles in the cytokinin signaling circuitry. However, this higher plant has a few extra ARRs, on which no attention has been paid so far. Characterization of these extra ARRs might provide us with new insight into the His-->Asp phosphorelay signal transduction in plants. For this reason, in this study we extensively examined the natures of such a representative (named ARR22). Transcripts of ARR22 were expressed predominantly in reproductive organs, and a GFP::ARR22 fusion protein was localized in the cytoplasmic space in onion epidermal cells. The purified ARR22 protein had the ability to undergo phosphorylation in vitro, when incubated with phospho-AHP5, indicating that ARR22 has the fundamental ability to participate into a His-Asp phosphorelay pathway in its own right. In plants, transgenic lines overexpressing ARR22 were characterized (referred to as ARR22-ox), which showed the characteristic dwarf phenotypes with poorly developed root systems. The results of Northern blot hybridization with selected sets of hormone-responsive genes suggested that cytokinin responses are selectively attenuated in ARR22-ox, while other hormone responses (auxin, ABA and ethylene) occur normally. The results of microarray analyses with cytokinin-treated wild-type and ARR22-ox plants further supported the view that cytokinin responses are globally attenuated in ARR22-ox, at least, at the level of gene regulation. Finally, we demonstrated that the dwarf phenotypes of ARR22-ox are very similar to those of the wooden leg (wol) mutant, which has a severe lesion in the AHK4/CRE1 cytokinin-receptor of histidine protein kinase. These results suggested that ARR22 might also be implicated, directly or indirectly, in the cytokinin-responsive His-->Asp phophorelay signal transduction.

摘要

拟南芥有许多响应调节因子(ARRs)参与组氨酸(His)→天冬氨酸(Asp)的磷酸化信号转导。根据目前一致的模型,A型和B型ARR家族成员在细胞分裂素信号传导通路中都起着关键作用。然而,这种高等植物还有一些额外的ARRs,目前尚未受到关注。对这些额外的ARRs进行表征可能会为我们提供关于植物中His→Asp磷酸化信号转导的新见解。因此,在本研究中,我们广泛研究了这样一个代表性的因子(命名为ARR22)的性质。ARR22的转录本主要在生殖器官中表达,并且一个绿色荧光蛋白(GFP)::ARR22融合蛋白定位于洋葱表皮细胞的细胞质空间。纯化的ARR22蛋白在与磷酸化AHP5一起孵育时,具有在体外进行磷酸化的能力,这表明ARR22本身具有参与His-Asp磷酸化信号通路的基本能力。在植物中,对过表达ARR22的转基因株系(称为ARR22-ox)进行了表征,这些株系表现出特征性的矮化表型,根系发育不良。与选定的激素响应基因进行Northern印迹杂交的结果表明,ARR22-ox中细胞分裂素响应被选择性减弱,而其他激素响应(生长素、脱落酸和乙烯)正常发生。用细胞分裂素处理的野生型和ARR22-ox植物进行微阵列分析的结果进一步支持了这样的观点,即至少在基因调控水平上,ARR22-ox中细胞分裂素响应在整体上被减弱。最后,我们证明ARR22-ox的矮化表型与木腿(wol)突变体非常相似,该突变体在组氨酸蛋白激酶的AHK4/CRE1细胞分裂素受体中有严重损伤。这些结果表明,ARR22可能也直接或间接地参与细胞分裂素响应的His→Asp磷酸化信号转导。

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