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Silicon mediated the detoxification of Cr on pakchoi (Brassica Chinensis L.) in cr-contaminated soil

机译:硅介导Cr污染土壤中Cr的解毒Cr在Pakchoi(芸苔属Chinensis L.)

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To test the hypothesis that exogenous silicon (Si) would mediate the detoxification of Chromium (Cr) on pakchoi (Brassica Chinensis L.) growing in Cr-contaminated soil, a pot experiment that 0, 50, 100 and 200 mg·kg~(-1) Cr (Na2Cr2O7·2H2O) were supplied to soil together with 0, 0.5, 1.0 and 1.5 g·kg~(-1) Si (Na2SiO3) for 48 days, was studied. Results showed that supplying Si improved the growth of pakchoi in low Cr level. However, the shoot dry weight decreased with the increasing Si supplied in high Cr level. Compared with under non-Cr stress, the application of Si significantly increased the activities of POD, SOD and CAT of pakchoi under excess Cr. However, antioxidant enzymes activities displayed no difference under three Cr levels supplied. Shoot Cr accumulation decreased, while root Cr concentration increased, which was ascribed to the formation of precipitation-bound, "organic matter bound" Cr and the reduction of exchangeable-bound Cr fractions in the soil. Furthermore, the rhizosphere soil pH increased with Si level under either Cr level, suggesting that exogenous Si would induce the alkalization in the rhizosphere mediated detoxification of Cr on pakchoi by promoting the formation of precipitation-bound, organic matter bound Cr in Cr-contaminated soil, thereby probably decreasing Cr uptake from Cr-contaminated soil. These results proved direct evidence that Si played a mediated role, which decreased Cr uptake and improved the stabilization of Cr in Cr-contaminated soil.
机译:为了测试外源硅(Si)将介于Cr污染的土壤中生长的铬(Cr)的解毒(Brassica Chinensis L.)介绍铬(Cr)的解毒,为0,50,100和200 mg·kg〜(研究了-1)Cr(Na2Cr2O7·2H2O)与0,0.5,1.0和1.5g·kg〜(-1)Si(Na 2 SiO 3)提供48天的土壤。结果表明,在低Cr水平中供应Si改善了Pakchoi的生长。然而,随着高CR水平供应的增加,芽干重降低。与非Cr应激相比,Si的应用显着提高了多余的Cr下POD,SOD和CAT的活动。然而,抗氧化酶活性在提供的三种CR水平下没有显示出差异。射击Cr积聚降低,而根Cr浓度增加,其归因于沉淀结合的“有机物质结合”Cr的形成和土壤中可交换结合的Cr级分。此外,在CR水平下,根际土壤pH随着SI水平的增加,表明外源性Si将通过促进Cr污染土壤中的沉淀有机物结合Cr的形成,促进沉淀有机质结合Cr的根际介导的Cr介导的Cr的碱化从而可能降低Cr受污染的土壤的Cr吸收。这些结果证明了SI发挥了介导的作用的直接证据,这减少了CR吸收并改善了Cr污染土壤中Cr的稳定性。

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