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Uptake, translocation, and accumulation of Cd and its interaction with mineral nutrients (Fe, Zn, Ni, Ca, Mg) in upland rice

机译:旱稻中Cd的吸收,转运和积累及其与矿质养分(Fe,Zn,Ni,Ca,Mg)的相互作用

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An analysis of the Cd and mineral nutrients accumulation of upland rice was performed in an experimental field with hard-ridged plots containing three soils with exogenous Cd addition at rates of 0, 0.25, 0.5, 1, 2,4, 8,16 mg kg(-1) five years prior to commence this experiment. Aims of this investigation were to study uptake, translocation, and accumulation of Cd by an upland rice (Huyou2) and effects of Cd addition on the accumulation of Fe, Zn, Ni, Ca, and Mg. The results demonstrate the mean Cd content in the plant parts, from highest to lowest, were as follows: root, stem, leaf, and brown rice. The Cd content in the brown rice of the upland rice was below the limit of Cd in rice (0.2 mg kg(-1)) from China (GB 2762-2017) when the amount of Cd added was = 1 mg kg(-1). This observation can be attributed to lower TFsoil-grain of Cd in upland rice. Significant differences were observed between Cd concentrations present in brown rice from the three soils which can be mainly attributed to the differences in DTPA-extractable soil Cd because of different soil pH. Addition of high concentrations of Cd to soil was found to reduce Fe, Zn, Mg, and increased Ni uptake by the roots and their accumulation in brown rice. Altogether, results of this study suggest that it may be possible to cultivate upland rice in slightly Cd-polluted soils and Cd toxicity and accumulation in upland rice can be minimized by optimizing the macro and micronutrient composition of the soil. (C) 2018 Published by Elsevier Ltd.
机译:在一个试验田中,对硬地块进行了分析,分析了陆稻中Cd和矿质养分的积累情况,该地块包含三种土壤,添加了0、0.25、0.5、1、2、4、8.16 kg / kg的外源Cd (-1)开始这项实验的五年。本研究的目的是研究旱稻(Huyou2)对Cd的吸收,转运和积累以及添加Cd对Fe,Zn,Ni,Ca和Mg积累的影响。结果表明,从最高到最低,植物部分中Cd的平均含量如下:根,茎,叶和糙米。当添加的Cd量<= 1 mg kg(-)时,陆稻糙米中Cd含量低于中国(GB 2762-2017)水稻(0.2 mg kg(-1))中Cd的限量。 1)。该观察结果可归因于陆地稻中Cd的TF土粒含量较低。三种土壤中糙米中Cd的含量之间存在显着差异,这主要归因于DTPA可提取的土壤Cd的差异,因为土壤的pH值不同。发现向土壤中添加高浓度的Cd可以减少铁,锌,镁的含量,并增加根部对氮的吸收以及它们在糙米中的积累。总而言之,这项研究结果表明,可能在镉污染较轻的土壤中种植旱稻,并且通过优化土壤的宏观和微量营养成分,可以最大程度地减少旱稻中Cd的毒性和积累。 (C)2018由Elsevier Ltd.发布

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