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首页> 外文期刊>Plant Molecular Biology >A negative regulator encoded by a rice WRKY gene represses both abscisic acid and gibberellins signaling in aleurone cells
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A negative regulator encoded by a rice WRKY gene represses both abscisic acid and gibberellins signaling in aleurone cells

机译:水稻WRKY基因编码的负调控因子抑制糊粉细胞中脱落酸和赤霉素的信号转导

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摘要

Abscisic acid (ABA) and gibberellins (GAs) control several developmental processes including seed maturation, dormancy, and germination. The antagonism of these two hormones is well-documented. However, recent data from transcription profiling studies indicate that they can function as agonists in regulating the expression of many genes although the underlying mechanism is unclear. Here we report a rice WRKY gene, OsWRKY24, which encodes a protein that functions as a negative regulator of both GA and ABA signaling. Overexpression of OsWRKY24 via particle bombardment-mediated transient expression in aleurone cells represses the expression of two reporter constructs: the beta-glucuronidase gene driven by the GA-inducible Amy32b alpha-amylase promoter (Amy32b-GUS) and the ABA-inducible HVA22 promoter (HVA22-GUS). OsWRKY24 is unlikely a general repressor because it has little effect on the expression of the luciferase reporter gene driven by a constitutive ubiquitin promoter (UBI-Luciferase). As to the GA signaling, OsWRKY24 differs from OsWRKY51 and -71, two negative regulators specifically function in the GA signaling pathway, in several ways. First, OsWRKY24 contains two WRKY domains while OsWRKY51 and -71 have only one; both WRKY domains are essential for the full repressing activity of OsWRKY24. Second, binding of OsWRKY24 to the Amy32b promoter appears to involve sequences in addition to the TGAC cores of the W-boxes. Third, unlike OsWRKY71, OsWRKY24 is stable upon GA treatment. Together, these data demonstrate that OsWRKY24 is a novel type of transcriptional repressor that inhibits both GA and ABA signaling.
机译:脱落酸(ABA)和赤霉素(GAs)控制着几个发育过程,包括种子成熟,休眠和发芽。这两种激素的拮抗作用已得到充分证明。但是,来自转录谱研究的最新数据表明,尽管其潜在机制尚不清楚,但它们可以在调节许多基因的表达中起激动剂的作用。在这里,我们报告了水稻WRKY基因OsWRKY24,该基因编码一种蛋白质,该蛋白质可同时充当GA和ABA信号的负调节剂。通过糊粉虫细胞中的粒子轰击介导的瞬时表达来过度表达OsWRKY24抑制了两个报告基因构建体的表达:由GA诱导的Amy32bα-淀粉酶启动子(Amy32b-GUS)和ABA诱导的HVA22启动子驱动的β-葡萄糖醛酸酶基因( HVA22-GUS)。 OsWRKY24不太可能是一般的阻遏物,因为它对由组成型泛素启动子(UBI-荧光素酶)驱动的荧光素酶报道基因的表达影响很小。关于GA信号转导,OsWRKY24与OsWRKY51和-71不同,两个负调控因子以多种方式在GA信号转导通路中发挥特定作用。首先,OsWRKY24包含两个WRKY域,而OsWRKY51和-71只有一个;这两个WRKY域对于OsWRKY24的全面抑制活动都是必不可少的。其次,OsWRKY24与Amy32b启动子的结合似乎涉及W盒的TGAC核心以外的序列。第三,与OsWRKY71不同,OsWRKY24在GA处理后稳定。总之,这些数据表明,OsWRKY24是一种新型的转录阻遏物,可抑制GA和ABA信号传导。

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