Thomas J C, Smigocki A C, Bohnert H J
Department of Biochemistry, University of Arizona, Tucson 85721.
Plant Mol Biol. 1995 Jan;27(2):225-35. doi: 10.1007/BF00020179.
Cytokinins are plant growth regulators that induce shoot formation, inhibit senescence and root growth. Experiments with hydroponically grown tobacco plants, however, indicated that exogenously applied cytokinin led to the accumulation of proline and osmotin. These responses were also associated with environmental stress reactions, such as salt stress, in many plant species. To test whether increased endogenous cytokinin accumulation led to NaCl stress symptoms, the gene ipt from Agrobacterium tumefaciens, encoding isopentenyl transferase, was transformed into Nicotiana tabacum cv. SR-1 under the control of the light-inducible rbcS-3A promoter from pea. In high light (300 mumol PPFD m-2 s-1), ipt mRNA was detected and zeatin/zeatin glucoside levels were 10-fold higher than in control plants or when transformants were grown in low light (30 mumol PPFD m-2 s-1). High light treatment was accompanied by increased levels of proline and osmotin when compared to low light grown transformed and untransformed control plants. Elevated in planta cytokinin levels induced responses also stimulated by salt stress, suggesting either common or overlapping signaling pathways are initiated independently by cytokinin and NaCl, setting in motion gene expression normally elicited by developmental processes such as flowering or environmental stress.
细胞分裂素是一类植物生长调节剂,可诱导芽的形成、抑制衰老和根系生长。然而,对水培烟草植株进行的实验表明,外源施加细胞分裂素会导致脯氨酸和渗透素的积累。在许多植物物种中,这些反应也与环境胁迫反应相关,如盐胁迫。为了测试内源性细胞分裂素积累增加是否会导致NaCl胁迫症状,将来自根癌农杆菌的编码异戊烯基转移酶的ipt基因,在豌豆光诱导的rbcS - 3A启动子的控制下转化到烟草品种SR - 1中。在高光(300 μmol光子通量密度m-2 s-1)条件下,检测到ipt mRNA,并且玉米素/玉米素葡萄糖苷水平比对照植株或转化体在低光(30 μmol光子通量密度m-2 s-1)下生长时高10倍。与在低光下生长的转化和未转化对照植株相比,高光处理伴随着脯氨酸和渗透素水平的增加。植物体内细胞分裂素水平升高诱导的反应也受到盐胁迫的刺激,这表明细胞分裂素和NaCl独立启动了共同或重叠的信号通路,从而启动了通常由开花等发育过程或环境胁迫引发的基因表达。