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Expression and RNA splicing of the maize glutathione S-transferase Bronze2 gene is regulated by cadmium and other stresses.

机译:玉米谷胱甘肽S-转移酶Bronze2基因的表达和RNA剪接受镉和其他胁迫的调控。

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摘要

The Bronze2 (Bz2) gene in maize (Zea mays) encodes a glutathione S-transferase that performs the last genetically defined step in anthocyanin biosynthesis--tagging anthocyanin precursors with glutathione, allowing for recognition and entry of anthocyanins into the vacuole. Here we show that Bz2 gene expression is highly induced by heavy metals such as cadmium. Treatment of maize seedlings with cadmium results in a 20-fold increase in Bz2 message accumulation and a 50-fold increase in the presence of the unspliced, intron-containing transcript. The increase in message levels during cadmium stress appears to result, at least in part, from activation of an alternative mRNA start site approximately 200 nucleotides upstream of the normal start site; this site is not used in unstressed or heat-stressed tissues. The effect of cadmium on the RNA splicing of Bz2 seems to be specific: splicing of other intron-containing maize genes, including a maize actin gene under the control of the cadmium-inducible Bz2 promoter, is unaffected by cadmium stress. Conversely, Bz2 intron splicing is not affected by other stress conditions that induce Bz2 gene expression, such as abscisic acid, auxin, or cold stress. Surprisingly, the increase in Bz2 mRNA during cadmium stress does not result in an increase in Bz2 glutathione S-transferase activity. We propose that an alternative protein may be encoded by Bz2 that has a role during responses to heavy metals.
机译:玉米(Zea mays)中的Bronze2(Bz2)基因编码一种谷胱甘肽S-转移酶,该酶在花青素生物合成中执行了最后一个遗传定义的步骤-用谷胱甘肽标记花青素前体,从而使花青素的识别和进入液泡中。在这里,我们显示Bz2基因表达被镉等重金属高度诱导。用镉处理玉米幼苗会导致Bz2信息积累增加20倍,而存在未剪接的含内含子转录本时,则增加50倍。镉胁迫期间信息水平的增加似乎至少部分是由于正常起始位点上游约200个核苷酸的替代性mRNA起始位点的激活引起的。此部位不适用于无压力或受热应力的组织。镉对Bz2的RNA剪接的作用似乎是特异性的:其他含内含子的玉米基因(包括受镉诱导的Bz2启动子控制的玉米肌动蛋白基因)的剪接不受镉胁迫的影响。相反,Bz2内含子剪接不受其他诱导Bz2基因表达的胁迫条件的影响,例如脱落酸,生长素或冷胁迫。令人惊讶地,镉胁迫期间Bz2 mRNA的增加并未导致Bz2谷胱甘肽S-转移酶活性的增加。我们建议,另一种蛋白质可能由Bz2编码,该蛋白质在对重金属的反应中具有一定作用。

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