首页> 美国卫生研究院文献>Plant Physiology >Enhanced Copper Tolerance in Silene vulgaris (Moench) Garcke Populations from Copper Mines Is Associated with Increased Transcript Levels of a 2b-Type Metallothionein Gene
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Enhanced Copper Tolerance in Silene vulgaris (Moench) Garcke Populations from Copper Mines Is Associated with Increased Transcript Levels of a 2b-Type Metallothionein Gene

机译:来自铜矿的寻常型(Moench)Garcke种群的铜耐受性增强与2b型金属硫蛋白基因的转录水平增加相关。

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摘要

Silene vulgaris (Moench) Garcke has evolved populations with extremely high levels of copper tolerance. To evaluate the role of metallothioneins (MTs) in copper tolerance in S. vulgaris, we screened a cDNA library derived from a highly copper-tolerant population using Arabidopsis-based MT probes and identified an MT2b-like gene. When expressed in yeast, this gene, SvMT2b, restored cadmium and copper tolerance in different hypersensitive strains. Northern-blot analysis and quantitative reverse transcriptase-PCR showed that plants from the copper-tolerant S. vulgaris populations had significantly higher transcript levels of SvMT2b than plants from the copper-sensitive populations, both in roots and shoots and with and without copper exposure. Southern-blot analysis suggested that the higher expression of the latter allele was caused by gene amplification. Segregating families of crosses between copper-sensitive and copper-tolerant plants exhibited a 1 to 3 segregation for SvMT2b expression. Allele-specific PCR showed that low-expression F3 plants were homozygous for the allele inherited from the copper-sensitive parent, whereas high-expression plants possessed at least one allele from the tolerant parent. SvMT2b expression did not cosegregate with copper tolerance in crosses between sensitive and tolerant plants. However, a significant cosegregation with copper tolerance did occur in families derived from crosses between moderately tolerant F3 plants with different SvMT2b genotypes. Thus, overexpression of SvMT2b conferred copper tolerance although only within the genetic background of a copper tolerant plant.
机译:普通硅(Moench)Garcke进化出的种群对铜的耐受性极高。为了评估金属硫蛋白(MTs)在寻常型链球菌中对铜的耐受性中的作用,我们使用基于拟南芥的MT探针筛选了高度耐铜种群的cDNA文库,并鉴定了MT2b样基因。当在酵母中表达时,该基因SvMT2b在不同的超敏菌株中恢复了镉和铜的耐受性。 Northern印迹分析和定量逆转录酶-PCR显示,在铜和铜暴露与不暴露的情况下,耐铜铜绿假单胞菌种群的植物SvMT2b的转录水平显着高于铜敏感种群的植物。 Southern印迹分析表明,后者等位基因的较高表达是由基因扩增引起的。铜敏感植物和耐铜植物之间杂交的分离家族显示出SvMT2b表达的1-3分离。等位基因特异性PCR显示,低表达的F3植物对于从铜敏感亲本遗传的等位基因是纯合的,而高表达的植物至少具有耐性亲本的一个等位基因。在敏感植物和耐性植物之间的杂交中,SvMT2b的表达与铜的耐性没有共隔离。但是,在具有不同SvMT2b基因型的中等耐性F3植物之间的杂交后代中,确实发生了具有铜耐受性的显着共偏析。因此,尽管仅在耐铜植物的遗传背景内,SvMT2b的过表达才赋予了铜耐性。

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