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首页> 外文期刊>Environmental and experimental botany >Real-time PCR analysis of metallothionein-2b expression in metallicolous and non-metallicolous populations of Silene vulgaris (Moench) Garcke.
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Real-time PCR analysis of metallothionein-2b expression in metallicolous and non-metallicolous populations of Silene vulgaris (Moench) Garcke.

机译:实时荧光定量PCR分析寻常性Silene vulgaris(Moench)Garcke的金属和非金属种群中金属硫蛋白2b的表达。

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摘要

In this paper we aimed to assess the role of metallothionein-2b in Zn or Cd hypertolerance by analyzing the expression of SvMT2b in roots of metallicolous and non-metallicolous Silene vulgaris populations, as well as in interpopulation crosses segregating for tolerance to Zn or Cd. Plants were grown in hydroponic nutrient solution and Zn and Cd were supplied as sulphates after 1 week of preculture. After 14 d of growth, RNA samples were taken from roots of plants exposed to different concentrations of Zn or Cd (2, 20, 200 micro M Zn; 0, 2.5, 12.5 micro M Cd) for 72 h. SvMT2b transcript levels were analyzed by real-time qPCR and compared to an Actin II control. Populations from cupriferous and calamine soil had significantly higher expression than non-metallicolous populations (P<0.001). Although there was variation between the means of SvMT2b transcript levels among selection lines (P<0.001), there was no overall significant difference between the Zn-hypertolerant and non-Zn-hypertolerant lines (P>0.10) Metals did not significantly affect SvMT2b expression in any of the populations (P>0.10). No co-segregation of Zn and Cd tolerance was observed, nor was any co-segregation of SvMT2b expression and Zn or Cd tolerance seen. It is concluded that Zn and Cd tolerance are genetically independent traits. Further we conclude that enhanced SvMT2b expression is not a primary determinant of naturally selected Zn or Cd hypertolerance. The enhanced expression in populations from calamine soils without Cu enrichment could be related to Cu homeostasis or, alternatively, point to a role as a non-metal specific hypostatic enhancer in metal hypertolerance. The possible role for SvMT2b in heavy metal tolerance is discussed..
机译:本文旨在通过分析SvMT2b在金属和非金属硅类寻常种群的根中以及在针对Zn或Cd的耐受性的群体间杂交中的表达来评估金属硫蛋白2b在Zn或Cd超耐受中的作用。植物在水培营养液中生长,预培养1周后以硫酸盐形式提供Zn和Cd。生长14天后,从暴露于不同浓度的Zn或Cd(2、20、200 micro M Zn; 0、2.5、12.5 micro M Cd)的植物根部提取RNA样品72小时。通过实时qPCR分析SvMT2b转录水平,并与肌动蛋白II对照进行比较。铜肥和炉甘石土壤的种群表达明显高于非金属种群(P <0.001)。尽管选择系之间的SvMT2b转录水平的平均值之间存在差异(P <0.001),但Zn超耐性和非Zn超耐性系之间总体上没有显着差异(P> 0.10)金属不会显着影响SvMT2b的表达在任何人群中(P> 0.10)。没有观察到Zn和Cd耐受性的共分离,也没有观察到SvMT2b表达与Zn或Cd耐受性的任何共分离。结论是锌和镉的耐受性是遗传上独立的性状。进一步我们得出结论,增强的SvMT2b表达不是自然选择的Zn或Cd超耐受性的主要决定因素。在没有铜富集的情况下,来自炉甘石土壤的种群中表达的增强可能与铜的稳态有关,或者表明在金属超耐受性中作为非金属特异性的抑制性增强剂。讨论了SvMT2b在重金属耐受性中的可能作用。

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