Hérouart D, Van Montagu M, Inzé D
Laboratorium voor Genetica, Universiteit Gent, Belgium.
Plant Physiol. 1994 Mar;104(3):873-80. doi: 10.1104/pp.104.3.873.
Superoxide dismutases (SODs) play a key role in the cellular defense against reactive oxygen species. To study the transcriptional regulation at the cellular level, the promoter of the Nicotiana plumbaginifolia cytosolic gene encoding Cu/ZnSOD (SODCc) was fused to the beta-glucuronidase (GUS) reporter gene (gusA) and analyzed in transgenic tobacco plants. The promoter was highly active in vascular bundles of leaves and stems, where it is confined to phloem cells. In flowers, GUS activity was detected in ovules and pollen grains, in pigmented tissues of petals, and in vascular tissue of ovaries and anthers. In response to treatment with the superoxide-generating herbicide paraquat, very strong GUS staining was observed in photosynthetically active cells of leaves and in some epidermal root cells of seedlings. The expression of the SODCc-gusA was also induced in seedlings after heat shock and chilling and after treatment with sulfhydryl antioxidants such as reduced glutathione and cysteine. It is postulated that SODCc expression is directly linked to a cell-specific production of excess superoxide radicals in the cytosol.
超氧化物歧化酶(SODs)在细胞抵御活性氧的过程中发挥关键作用。为了在细胞水平上研究转录调控,将编码烟草(Nicotiana plumbaginifolia)胞质Cu/ZnSOD(SODCc)的基因启动子与β-葡萄糖醛酸酶(GUS)报告基因(gusA)融合,并在转基因烟草植株中进行分析。该启动子在叶片和茎的维管束中高度活跃,且局限于韧皮部细胞。在花中,在胚珠和花粉粒、花瓣的色素组织以及子房和花药的维管组织中检测到GUS活性。在用产生超氧化物的除草剂百草枯处理后,在叶片的光合活性细胞和幼苗的一些表皮根细胞中观察到非常强烈的GUS染色。热激、冷处理以及用巯基抗氧化剂如还原型谷胱甘肽和半胱氨酸处理后,幼苗中SODCc-gusA的表达也被诱导。据推测,SODCc的表达与胞质中细胞特异性产生过量超氧自由基直接相关。