Williamson J D, Scandalios J G
Department of Genetics, North Carolina State University, Raleigh 27695-7614.
Plant Physiol. 1994 Dec;106(4):1373-80. doi: 10.1104/pp.106.4.1373.
We previously demonstrated that amounts of Cat1 RNA in developing immature maize (Zea mays L.) embryos change in parallel with endogenous abscisic acid (ABA) content. In excised immature embryos, addition of ABA leads to a large increase in Cat1 RNA accumulation. The Cat1 transcript, however, also accumulates to high amounts in scutella of germinating embryos, where ABA content is low and decreasing. Here we show that application of ABA to germinated embryos no longer results in the up-regulation of the Cat1 transcript accumulation that is seen during embryogenesis. This suggests that factors other than ABA control Cat1 expression at this developmental stage. Using band-shift and southwestern analyses, we show that the change in sensitivity to ABA is paralleled by changes in nuclear proteins binding to a 28-bp region of the Cat1 promoter in vitro. One protein (CAT1BP-20) shows increased accumulation in the absence of ABA, suggesting that a repressor-mediated mechanism accounts for at least a portion of the ABA regulation of Cat1.
我们先前证明,发育中的未成熟玉米(Zea mays L.)胚中Cat1 RNA的量与内源脱落酸(ABA)含量平行变化。在切除的未成熟胚中,添加ABA会导致Cat1 RNA积累大幅增加。然而,Cat1转录本在萌发胚的盾片中也大量积累,而盾片中ABA含量低且在下降。在这里我们表明,将ABA应用于萌发胚不再导致Cat1转录本积累上调,而这在胚胎发生过程中是可见的。这表明在这个发育阶段,除ABA外的其他因素控制着Cat1的表达。使用凝胶迁移和西南分析,我们表明对ABA敏感性的变化与体外结合到Cat1启动子28 bp区域的核蛋白变化平行。一种蛋白质(CAT1BP - 20)在没有ABA的情况下积累增加,这表明一种阻遏物介导的机制至少部分解释了ABA对Cat1的调控。