Xiang C, Miao Z H, Lam E
AgBiotech Center, Rutgers University, New Brunswick, NJ 08903-0231, USA.
Plant Mol Biol. 1996 Nov;32(3):415-26. doi: 10.1007/BF00019093.
The molecular mechanism of signal transduction pathways which mediate the action of phytohormones are poorly understood. Recently, we and others have shown that the as -1 type cis-acting elements can respond to auxin and salicylic acid, two well-characterized signaling molecules in plants. In the present work, we have examined a comprehensive set of physiological and abiotic agents and found that auxin, salicylic acid and methyl-jasmonate are three effective inducers of the as-1-type elements in transgenic tobacco. Using a cell suspension culture containing a synthetic promoter-GUS fusion, we demonstrated rapid and sensitive induction of the as-1-type element by these phytohormones. Furthermore, a tobacco glutathione S-transferase gene, GNT35, that contains an as-1-type binding site in its promoter is also inducible by auxin, salicylic acid and methyl-jasmonate with similar kinetics. As Ulmasov et al. have recently reported, we found that the as-1-type elements can also respond to weak/inactive analogues of auxin and salicylic acid. In addition, we show that hydrogen peroxide can also effectively activate the expression of GNT35 as well as the as-1-type element in a cell suspension culture, but not with whole seedlings. These results are discussed with respect to the possible mechanism(s) through which a single cis element may respond to a diverse array of molecules.
介导植物激素作用的信号转导途径的分子机制目前还知之甚少。最近,我们和其他研究人员发现,as-1型顺式作用元件能够对生长素和水杨酸这两种在植物中特性明确的信号分子作出反应。在本研究中,我们检测了一系列生理和非生物因子,发现生长素、水杨酸和茉莉酸甲酯是转基因烟草中as-1型元件的三种有效诱导剂。利用含有合成启动子-GUS融合体的细胞悬浮培养体系,我们证明了这些植物激素能快速且灵敏地诱导as-1型元件。此外,烟草谷胱甘肽S-转移酶基因GNT35在其启动子区域含有一个as-1型结合位点,它也能被生长素、水杨酸和茉莉酸甲酯以相似的动力学方式诱导。正如乌尔马索夫等人最近报道的那样,我们发现as-1型元件也能对生长素和水杨酸的弱/无活性类似物作出反应。此外,我们还表明,过氧化氢也能在细胞悬浮培养体系中有效激活GNT35的表达以及as-1型元件,但对完整幼苗则无此作用。我们将针对单个顺式元件可能对多种分子作出反应的潜在机制来讨论这些结果。