首页> 外文期刊>Acta Physiologiae Plantarum >Effects of exogenous NO on the growth, mineral nutrient content, antioxidant system, and ATPase activities of Trifolium repens L. plants under cadmium stress
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Effects of exogenous NO on the growth, mineral nutrient content, antioxidant system, and ATPase activities of Trifolium repens L. plants under cadmium stress

机译:外源NO对镉胁迫下白三叶植物生长,矿质营养含量,抗氧化系统和ATP酶活性的影响。

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This work investigated the effects of SNP (sodium nitroprusside; an NO donor) on 100 mu M cadmium (Cd) toxicity in 2-week-old Trifolium repens L. plants. Cd accumulated to a greater degree in roots than in shoots and resulted in oxidative stress, as evidenced by increased concentrations of hydrogen peroxide and malondialdehyde. In addition, Cd exposure markedly hindered root and shoot elongation and biomass production, reduced the activities of H+-ATPase in the plasma membranes (PMs) and tonoplasts (V), and inhibited the absorption of mineral nutrition. However, the addition of various SNP doses alleviated the inhibitory effects on plant growth caused by Cd, elevated the activity of the PM H+-ATPase in both shoots and roots, enhanced the activity of V-H+-ATPase in roots, and partially enhanced the uptake of minerals (shoots: Mg and Cu; roots: Ca, Mg, and Fe) in Cd-treated plants. Shoot and root Cd accumulation significantly diminished when plants were subjected to Cd plus SNP treatments, though the level of root Cd accumulation was not dependent on the SNP dosage level. Moreover, the addition of SNP considerably upregulated ascorbate peroxidases (APX), catalases and superoxide dismutase (SOD) activity in shoots under Cd stress, but downregulated APX and SOD activity in roots. The addition of SNP did not influence glutathione reductase (GR) activity in roots, but markedly increased its activity in shoots. Similar to root GR levels, shoot ascorbate content experienced no significant change between Cd plus SNP treatment and Cd treatment alone; however, root ascorbate and glutathione levels decreased in plant tissues in the treatments with Cd and SNP. The results obtained in this work indicate that SNP applied exogenously, particularly at lower doses, can effectively deplete the detrimental effects on white clover growth, likely by reducing oxidative damage, modulating mineral absorption, and re-establishing the levels of ATPases.
机译:这项工作研究了SNP(硝普钠; NO供体)对两周龄白三叶植物100μM镉(Cd)毒性的影响。 Cd在根部比在芽中积累的程度更大,并导致氧化胁迫,这由过氧化氢和丙二醛的浓度增加所证明。此外,镉暴露显着阻碍了根和茎的伸长和生物量的产生,降低了质膜(PMs)和液泡膜(V)中H + -ATPase的活性,并抑制了矿物质营养的吸收。然而,添加不同的SNP剂量减轻了Cd对植物生长的抑制作用,提高了芽和根中PM H + -ATPase的活性,增强了根中V-H + -ATPase的活性,并部分增强了Cd的活性。镉处理过的植物中矿物质(地上部:镁和铜;根部:钙,镁和铁)的吸收。当植物接受Cd加SNP处理时,枝条和根部Cd的积累显着减少,尽管根部Cd的积累水平并不取决于SNP剂量水平。此外,SNP的添加显着上调了镉胁迫下芽中抗坏血酸过氧化物酶(APX),过氧化氢酶和超氧化物歧化酶(SOD)的活性,但下调了根中APX和SOD的活性。 SNP的添加不会影响根中的谷胱甘肽还原酶(GR)活性,但会显着增加其在芽中的活性。与根部GR水平相似,Cd加SNP处理与单独Cd处理之间的抗坏血酸含量无明显变化。然而,在镉和单核苷酸多态性处理中,植物组织中的根系抗坏血酸和谷胱甘肽水平降低。在这项工作中获得的结果表明,外源施用SNP,特别是在较低剂量下,可以有效减少对白三叶草生长的有害影响,这可能是通过减少氧化损伤,调节矿物质吸收并重新建立ATPase的水平来实现的。

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