Sakakibara H, Suzuki M, Takei K, Deji A, Taniguchi M, Sugiyama T
Department of Biological Mechanisms and Functions, Graduate School of Bioagricultural Sciences, Nagoya University, Japan.
Plant J. 1998 May;14(3):337-44. doi: 10.1046/j.1365-313x.1998.00134.x.
A cDNA clone, pZmCip1, encoding a maize (Zea mays) cytokinin-inducible protein 1 was isolated utilizing the differential display technique, and studied using the expression of ZmCip1 in nitrogen-starved maize plants. The cloned cDNA contained an open reading frame consisting of 157 amino acids with a predicted molecular mass of 16.7 kDa, which possesses similarity with the response-regulators of bacterial two-component signalling systems. In detached leaves, accumulation of ZmCip1 transcript by t-zeatin was dose-dependent in a range of 10(-9) M to 10(-7) M, and occurred within 30 min after treatment. The effect of t-zeatin was replaceable by isopentenyl-adenosine or isopentenyl-adenosine-5'-monophosphate. Pretreatment of detached leaves with cycloheximide did not inhibit the accumulation of the transcript. In whole plants, ZmCip1 transcript was transiently accumulated exclusively in leaves by supply of nitrate or ammonium ions to the roots, whereas the transcript was not accumulated in detached leaves by supply of the nitrogen nutrients. Both the cytokinin- and nitrate-responsive accumulations of ZmCip1 transcript were accompanied by an increase in the immunotitratable protein. Isopentenyladenosine and/or its phosphorylated form(s) accumulated in roots 2 h after supply of nitrate to plants. These results, taken together, suggest that ZmCip1 is a primary response gene to cytokinins, and that it involves, at least in part, the nitrogen-signal transduction mediated by cytokinin in maize.
利用差异显示技术分离出一个编码玉米(Zea mays)细胞分裂素诱导蛋白1的cDNA克隆pZmCip1,并通过ZmCip1在缺氮玉米植株中的表达进行了研究。克隆的cDNA包含一个由157个氨基酸组成的开放阅读框,预测分子量为16.7 kDa,与细菌双组分信号系统的响应调节因子具有相似性。在离体叶片中,t-玉米素在10^(-9) M至10^(-7) M范围内对ZmCip1转录本的积累呈剂量依赖性,且在处理后30分钟内发生。t-玉米素的作用可被异戊烯基腺苷或异戊烯基腺苷-5'-单磷酸替代。用环己酰亚胺预处理离体叶片并不抑制转录本的积累。在整株植物中,通过向根部供应硝酸盐或铵离子,ZmCip1转录本仅在叶片中短暂积累,而通过供应氮素营养,转录本在离体叶片中不积累。ZmCip1转录本对细胞分裂素和硝酸盐的响应积累都伴随着免疫可滴定蛋白的增加。向植物供应硝酸盐2小时后,异戊烯基腺苷和/或其磷酸化形式在根部积累。综合这些结果表明,ZmCip1是细胞分裂素的一个初级反应基因,并且它至少部分参与了玉米中由细胞分裂素介导的氮信号转导。