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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Expression response of duplicated metallothionein 3 gene to copper stress in Silene vulgaris ecotypes
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Expression response of duplicated metallothionein 3 gene to copper stress in Silene vulgaris ecotypes

机译:寻常型硅型金属硫蛋白3基因对铜胁迫的表达响应

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摘要

Metallothioneins (MTs) were identified as important players in metal metabolism. MT3 gene presents a key metallothionein controlling copper homeostasis in plants. We have selected one cupricolous and one non-cupricolous ecotype to isolate and analyse the MT3 gene in Silene vulgaris. For expression data comparison, we have also included other metal-tolerant ecotypes. Based on a S. vulgaris BAC library screening, we have identified and sequenced a genomic clone containing MT3 gene (SvMT3). We found that SvMT3 gene has been locally duplicated in a tandem arrangement. Expression analysis and complementation studies using yeast mutants showed that both copies of the SvMT3 gene were functional. Moreover, we examined the expression of MT3 gene(s) in selected ecotypes under different copper treatments to show the tissue-specific expression response to copper stress. We demonstrated that higher copper concentrations specifically affected MT3 expression among ecotypes. Our analysis shows that MT3a has similar expression pattern in cupricolous ecotypes while MT3b has common expression features shared by allmetallophyte S. vulgaris ecotypes. Our data indicate that down-regulation of MT3b root expression in higher copper concentrations is associated with copper stress. We propose that there might be a specific regulation of SvMT3s transcription depending on the type of heavy metal tolerance.
机译:金属硫蛋白(MTs)被确定为金属代谢的重要参与者。 MT3基因是控制植物体内铜稳态的关键金属硫蛋白。我们选择了一种铜型和一种非铜型生态型来分离和分析寻常型Silene的MT3基因。为了比较表达数据,我们还包括其他耐金属的生态型。基于寻常葡萄球菌BAC库筛选,我们已经鉴定并测序了含有MT3基因(SvMT3)的基因组克隆。我们发现SvMT3基因已被串联重复本地复制。使用酵母突变体的表达分析和互补研究表明,SvMT3基因的两个拷贝均具有功能。此外,我们检查了在不同铜处理下所选生态型中MT3基因的表达,以显示组织特异性表达对铜胁迫的响应。我们证明较高的铜浓度会特别影响生态型之间的MT3表达。我们的分析表明,MT3a在铜质生态型中具有相似的表达模式,而MT3b具有寻常金属链霉菌生态型共有的共同表达特征。我们的数据表明,较高的铜浓度下MT3b根表达的下调与铜胁迫有关。我们建议可能有一个特定的SvMT3s转录调控,具体取决于重金属耐受性的类型。

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