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1 Selenium supply alters the subcellular distribution and chemical forms of cadmium and the expression of transporter genes involved in cadmium uptake and translocation in winter wheat ( Triticum aestivum )

机译:1硒供应改变了镉的亚细胞分布和化学形式,以及冬小麦中镉摄取和易位的转运基因的表达(Triticum aestivum)

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Cadmium (Cd) accumulation in crops affects the yield and quality of crops and harms human health. The application of selenium (Se) can reduce the absorption and transport of Cd in winter wheat. The results showed that increasing Se supply significantly decreased Cd concentration and accumulation in the shoot and root of winter wheat and the root-to-shoot translocation of Cd. Se application increased the root length, surface area and root volume but decreased the average root diameter. Increasing Se supply significantly decreased Cd concentration in the cell wall, soluble fraction and cell organelles in root and shoot. An increase in Se supply inhibited Cd distribution in the organelles of shoot and root but enhanced Cd distribution in the soluble fraction of shoot and the cell wall of root. The Se supply also decreased the proportion of active Cd (ethanol-extractable (FE) Cd and deionized water-extractable (FW) Cd) in root. In addition, the expression of TaNramp5-a, TaNramp5-b, TaHMA3-a, TaHMA3-b and TaHMA2 significantly increased with increasing Cd concentration in root, and the expression of TaNramp5-a, TaNramp5-b and TaHMA2 in root was downregulated by increasing Se supply, regardless of Se supply or Cd stress. The expression of TaHMA3-b in root was significantly downregulated by 10?μM Se at both the 5?μM and 25?μM Cd level but upregulated by 5?μM Se at the 25?μM Cd level. The expression of TaNramp5-a, TaNramp5-b, TaHMA3-a, TaHMA3-b and TaHMA2 in shoot was downregulated by increasing Se supply at 5?μM Cd level, and 5?μM Se upregulated the expression of those genes in shoot at 25?μM Cd level. The results confirm that Se application limits Cd accumulation in wheat by regulating the subcellular distribution and chemical forms of Cd in winter wheat tissues, as well as the expression of TaNramp5-a, TaNramp5-b and TaHMA2 in root.
机译:作物中镉(CD)积累影响了作物的产量和质量,危害人类健康。硒(SE)的应用可以减少冬小麦中的CD的吸收和运输。结果表明,冬小麦枝条和根部的枝条浓度和积累的增加和积聚的增加和CD的根部易分配。 SE应用增加了根长,表面积和根体积,但是降低了平均根直径。增加SE供应在细胞壁中显着降低了细胞壁中的CD浓度,可溶性级分和根部芽中的细胞细胞器。 SE供应的增加抑制芽细胞器中的CD分布,但增强CD分布的可溶性分数和根部的细胞壁。 SE供应还降低了根系中活性Cd(乙醇可萃取(Fe)Cd和去离子可降水(FW)Cd)的比例。另外,随着CD浓度的增加,Tanramp5-A,Tanramp5-B,TaHramp5-B,Tahma3-A,Tahma3-B和Tahma2的表达显着增加,并通过无论SE供应还是CD压力,如何增加SE供应。在5Ωμm和25μmCd水平下,在5Ωμm和25μm℃下显着下调Tahma3-B的表达明显下调。在25Ω·μm镉水平下通过5Ωμmse上调。通过增加5Ω·μmCD水平的SE供给,下调丹拉姆5-A,TANRAMP5-B,TAHMA3-A,TAHMA3-B和TAHMA2的表达,并将5μmSEE上调在25℃下拍摄的那些基因的表达?μmcd水平。结果证实,SE应用通过调节冬小麦组织中的亚细胞分布和化学品形式的CD,以及Tanramp5-A,Tanramp5-B和Tahma2的根本来限制小麦中的CD积聚。

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