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Gene expression analysis of metallothionein and mineral elements uptake in tomato (Solanum lycopersicum) exposed to cadmium

机译:暴露于镉的番茄中金属硫蛋白和矿质元素吸收的基因表达分析

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Heavy metals such as Cd are considered to be the most important pollutants in soil contamination. Cd is a non-essential element adversely affecting plant growth and development, and it has caused some physiological and molecular changes. Metallothioneins (MTs) are low molecular weight, cysteine-rich, and metal binding proteins. In this study, we aimed to evaluate the MT gene expression levels and minerals uptake in the tissues of Solanum lycopersicum exposed to Cd. The transcriptional expression of the MT genes was determined by real-time quantitative PCR. The MT genes were regulated by the Cd and the mineral elements uptake changed tissue type and applied doses. The MT1 and MT2 transcript levels increased in the roots, the leaves and the fruits of the tomato. The MT3 and MT4 transcript pattern changed according to the tissue types. The Cd treatment on the growth medium increased the Mg, Ca, and Fe content in both the leaves and fruits of the tomato. However, the Cd affected the mineral levels in the roots depending on the mineral types and doses. Also, the Cd content increased in the roots, the leaves, and the fruits of the tomato, respectively. The results presented in this study show that Cd has synergistic and/or antagonistic effects on minerals depending on the tissue types. These results indicate that the MT1 and MT2 expression pattern increased together with the Mg, Ca, and Fe content in both the leaves and the fruits of the tomato.
机译:镉等重金属被认为是土壤污染中最重要的污染物。镉是对植物生长发育产生不利影响的非必需元素,它引起了一些生理和分子变化。金属硫蛋白(MTs)是低分子量,富含半胱氨酸的金属结合蛋白。在这项研究中,我们旨在评估暴露于Cd的茄属茄科植物MT基因表达水平和矿物质吸收。 MT基因的转录表达通过实时定量PCR确定。 MT基因受Cd调节,矿质元素的吸收改变了组织类型和施用剂量。番茄的根,叶和果实中的MT1和MT2转录水平增加。 MT3和MT4转录模式根据组织类型而变化。在生长培养基上进行镉处理可增加番茄叶片和果实中镁,钙和铁的含量。但是,镉会影响根部的矿物质含量,具体取决于矿物质的类型和剂量。另外,番茄根,叶和果实中的Cd含量分别增加。这项研究提出的结果表明,镉对矿物质的协同和/或拮抗作用取决于组织类型。这些结果表明,番茄的叶子和果实中的MT1和MT2表达模式均与Mg,Ca和Fe含量增加。

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