Rogers J C, Rogers S W
Division of Hematology-Oncology, Washington University School of Medicine, St. Louis, Missouri 63110.
Plant Cell. 1992 Nov;4(11):1443-51. doi: 10.1105/tpc.4.11.1443.
The mechanisms by which cis-acting hormone response elements affect transcription is unclear. In this study, we demonstrated that a second "coupling element," identified as O2S, must be present to allow a single copy of either the gibberellin response element (GARE) or the abscisic acid response element (ABRE) to mediate their hormonal effects in the barley Amy32b alpha-amylase gene promoter. The interactive effects of the O2S and the GARE are constrained positionally and spatially; thus, together they form a gibberellin response complex (GARC). The absolute requirement of the O2S for function of the ABRE demonstrates that these together form an abscisic acid response complex (ABRC). A second copy of the GARE can substitute for the O2S in the GARC, but only in one orientation. By expressing the GARC-containing and ABRC-containing promoters in developing aleurone tissue, we showed that hormonal effects prevent alpha-amylase gene expression during the second half of grain development, but other mechanisms suppress expression earlier. Our results suggest that the specific sequence serving as a coupling element in a given gene promoter will greatly affect where and when the GARE or ABRE will be able to regulate transcription.
顺式作用激素反应元件影响转录的机制尚不清楚。在本研究中,我们证明了第二个“偶联元件”,即O2S,必须存在才能使赤霉素反应元件(GARE)或脱落酸反应元件(ABRE)的单拷贝在大麦Amy32b α-淀粉酶基因启动子中介导其激素效应。O2S和GARE的相互作用在位置和空间上受到限制;因此,它们共同形成了一个赤霉素反应复合体(GARC)。O2S对ABRE功能的绝对需求表明,它们共同形成了一个脱落酸反应复合体(ABRC)。GARE的第二个拷贝可以在GARC中替代O2S,但只能在一个方向上。通过在发育中的糊粉层组织中表达含有GARC和ABRC的启动子,我们表明激素效应在谷物发育的后半期阻止了α-淀粉酶基因的表达,但其他机制在更早的时候抑制了表达。我们的结果表明,在给定基因启动子中作为偶联元件的特定序列将极大地影响GARE或ABRE能够调节转录的位置和时间。