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Effect of soil characteristics on Cd uptake by the hyperaccumulator Thlaspi caerulescens

机译:土壤特性对高积累拟南芥吸收镉的影响

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The influence of soil characteristics on the phytoremediation potential of Thlaspi caerulescens is not well understood. We investigated the effect of soil pH and Cd concentration on plant Cd uptake on one soil type, and the variation in Cd uptake using a range of field contaminated soils. On soils with total Cd concentrations of 0.6-3.7 mg kg(-1), T. caerulescens (the Ganges ecotype) produced greater biomass in the pH range 5.1-7.6 than at pH 4.4. The highest plant Cd concentration (236 mg kg(-1)) and Cd uptake (228 mu g pot(-1)) were observed at pH 5.1. On soils with total Cd concentrations of 2.6-314.8 mg kg(-1), shoot Cd concentrations were 10.9-1196 mg kg(-1). Multiple regression analysis indicated that higher Cd in soil, low pH (within the range of > 5) and coarser texture were associated with higher Cd concentration and Cd uptake by T. caeridescens. (c) 2005 Elsevier Ltd. All rights reserved.
机译:土壤特性对拟南芥植物修复潜力的影响尚不清楚。我们调查了土壤pH和Cd浓度对一种土壤类型植物Cd吸收的影响,以及使用一系列田地污染土壤对Cd吸收的变化。在总Cd浓度为0.6-3.7 mg kg(-1)的土壤上,铜绿锥虫(恒河生态型)在pH范围5.1-7.6处比在pH 4.4处产生更大的生物量。在pH 5.1时观察到最高的植物Cd浓度(236 mg kg(-1))和Cd吸收(228μgpot(-1))。在总Cd浓度为2.6-314.8 mg kg(-1)的土壤上,芽Cd浓度为10.9-1196 mg kg(-1)。多元回归分析表明,土壤中的Cd较高,pH值较低(在> 5范围内)和质地较粗均与T. caeridescens的Cd浓度和Cd吸收量有关。 (c)2005 Elsevier Ltd.保留所有权利。

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