Sato Yasushi, Demura Taku, Yamawaki Ken, Inoue Yukina, Sato Seiichi, Sugiyama Munetaka, Fukuda Hiroo
Department of Biology, Faculty of Science, Ehime University, Matsuyama, 790-8577 Japan.
Plant Cell Physiol. 2006 Apr;47(4):493-503. doi: 10.1093/pcp/pcj016. Epub 2006 Jan 30.
In an attempt to elucidate the regulatory mechanism of vessel lignification, we isolated ZPO-C, a novel peroxidase gene of Zinnia elegans that is expressed specifically in differentiating tracheary elements (TEs). The ZPO-C transcript was shown to accumulate transiently at the time of secondary wall thickening of TEs in xylogenic culture of Zinnia cells. In situ hybridization indicated specific accumulation of the ZPO-C transcript in immature vessels in Zinnia seedlings. Immunohistochemical analysis using anti-ZPO-C antibody showed that the ZPO-C protein is abundant in TEs, especially at their secondary walls. For enzymatic characterization of ZPO-C, 6 x His-tagged ZPO-C was produced in tobacco cultured cells and purified. The ZPO-C:6 x His protein had a peroxidase activity preferring sinapyl alcohol as well as coniferyl alcohol as a substrate, with a narrow pH optimum around 5.25. The peroxidase activity required calcium ion and was elevated by increasing Ca2+ concentration in the range of 0-10 mM. An Arabidopsis homolog of ZPO-C, At5g51890, was examined for expression patterns with transgenic plants carrying a yellow fluorescent protein (YFP) gene under the control of the At5g51890 promoter. The YFP fluorescence localization demonstrated vessel-specific expression of At5g51890 in the Arabidopsis roots. Taken collectively, our results strongly suggest that ZPO-C and its homologs play an important role in lignification of secondary cell walls in differentiating TEs.
为了阐明血管木质化的调控机制,我们分离出了ZPO-C,这是一种来自百日草的新型过氧化物酶基因,它在分化中的管状分子(TEs)中特异性表达。在百日草细胞的木质化培养中,ZPO-C转录本在TEs次生壁增厚时短暂积累。原位杂交表明ZPO-C转录本在百日草幼苗的未成熟血管中特异性积累。使用抗ZPO-C抗体的免疫组织化学分析表明,ZPO-C蛋白在TEs中含量丰富,尤其是在其次生壁处。为了对ZPO-C进行酶学特性分析,在烟草培养细胞中产生并纯化了6×His标签的ZPO-C。ZPO-C:6×His蛋白具有过氧化物酶活性,优先选择芥子醇和松柏醇作为底物,最适pH值在5.25左右,范围较窄。过氧化物酶活性需要钙离子,并且在0-10 mM范围内增加Ca2+浓度可提高该活性。利用携带在At5g51890启动子控制下的黄色荧光蛋白(YFP)基因的转基因植物,检测了ZPO-C的拟南芥同源物At5g51890的表达模式。YFP荧光定位表明At5g51890在拟南芥根中具有血管特异性表达。综上所述,我们的结果强烈表明ZPO-C及其同源物在分化中的TEs次生细胞壁木质化过程中起重要作用。