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Influence of selenite on selenium uptake, differential antioxidant performance and gene expression of sulfate transporters in wheat genotypes

机译:亚硒酸钠对小麦基因型硒吸收,抗氧化性能和硫酸盐转运蛋白基因表达的影响

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摘要

The effect of high selenite supply on Se uptake, antioxidant performance and gene expression of two sulfate transporters in three wheat genotypes was investigated. Puelche, Tinto and Kumpa wheat genotypes were grown hidroponically at 0, 30 or 60 mu M selenite. Shoots and roots were harvested during 7days to evaluate Se uptake, lipid peroxidation, SOD activity and radical scavenging activity. Measurements of ROS, chloroplasts morphological changes and sulfate transporters expression (Taesultr1.1a and Taesultr4.1) were also made. Tinto and Kumpa taken up lower Se amounts than Puelche and total biomass of all wheat genotypes decreased at 7days as a consequence of Se supply. Nevertheless, Puelche exhibited the lowest reduction of shoot yield without changes in root DW, which was concomitant with both the decrease of about 30 % of lipid peroxidation and the maintenance of SOD activity. Differential changes in ROS production, chloroplast morphology and gene expression of sulfate transporters were found among the three genotypes during the experiment. Puelche appear to be the most Se-tolerant wheat genotype because of its lowest oxidative damage due to preserved SOD activity and its greatest Se accumulation. This behaviour was associated with the strongest transcript level of Taesultr4.1 sulfate transporter in roots.
机译:研究了高硒含量对三种基因型小麦中硒吸收,抗氧化性能和两种硫酸盐转运蛋白基因表达的影响。 Puelche,Tinto和Kumpa小麦的基因型在0、30或60μM亚硒酸盐水平生长。在7天内收获芽和根,以评估硒的吸收,脂质过氧化,SOD活性和自由基清除活性。还测量了ROS,叶绿体的形态变化和硫酸盐转运蛋白的表达(Taesultr1.1a和Taesultr4.1)。 Tin和Kumpa的Se含量低于Puelche,并且由于Se的供应,所有基因型的小麦总生物量在7天时都下降了。然而,Puelche表现出最低的枝条产量降低,而根DW不变,这与脂质过氧化作用降低约30%和维持SOD活性同时发生。在实验过程中,发现了三种基因型之间ROS产量,叶绿体形态和硫酸盐转运蛋白基因表达的差异性变化。由于保留的SOD活性和最大的Se积累,Puelche似乎是最耐Se的小麦基因型,因为其氧化损伤最低。此行为与根中Taesultr4.1硫酸盐转运蛋白最强的转录水平有关。

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