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Low-Cd tomato cultivars ( Solanum lycopersicum L.) screened in non-saline soils also accumulated low Cd, Zn, and Cu in heavy metal-polluted saline soils

机译:低CD番茄品种(<重点型=“斜体”>茄蛋白>溶氮素 L.)筛选在非盐水土壤中也积累了低Cd,Zn和Cu的重金属污染的盐渍土

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摘要

Many reclaimed tidal flat soils feature high salinity and heavy metal (HM) accumulation. Consumption of vegetables cultivated in this type of cropland may cause health risks. Low-Cd tomato cultivars ( Solanum lycopersicum L.) were identified in non-saline soil in our previous studies (Tan et al. 2014). However, further research should determine whether these low-Cd cultivars will maintain in the repeatability and stability in saline soil and whether they have low accumulation abilities for accompanying metals (such as Zn and Cu). A soil-pot trial was implemented to measure Cd, Zn, and Cu concentrations in low- and high-Cd cultivars of both common and cherry-type tomatoes grown on HM-polluted reclaimed tidal flat saline soil. Then, cultivar differences in dissolution of Cd, Zn, and Cu in soil and their uptake and redistribution in plants were analyzed. Results showed that the cherry type accumulated more Cd, Zn, and Cu than the common type. Low-Cd cultivars of both types in saline soil accumulated low concentrations of Cd, Zn, and Cu in fruits. Low HM accumulation in fruits is partly attributed to a low root/shoot ( R / S ) biomass ratio. Low amounts of soil HMs were dissolved because of the low level of rhizosphere organic compounds, which possibly decreased HM uptake by the roots. Low-Cd cultivars of both tomato types had a higher ability to retain HMs in the roots than their high-Cd cultivars. These findings may provide a scientific guidance for the safe cultivation of HM-polluted saline soils.
机译:许多再生潮汐扁平土壤具有高盐度和重金属(HM)积累。这种农田培养的蔬菜消耗可能会导致健康风险。在我们以前的研究中,在非盐水土壤中鉴定了低CD番茄品种(Solanum Lycopersicum L.)(Tan等人2014)。然而,进一步的研究应确定这些低CD品种是否将在盐渍土中的可重复性和稳定性中保持,以及它们是否具有伴随金属的累积能力较低(例如Zn和Cu)。实施土壤盆栽试验以测量在HM污染的再生潮水土壤中生长的普通和樱桃型西红柿的低温和高CD品种中的CD,Zn和Cu浓度。然后,分析了土壤中Cd,Zn和Cu溶解的栽培品种差异及其摄取和再分分配。结果表明,樱桃型累积比普通型更多CD,Zn和Cu。盐水土壤两种类型的低CD品种累积了水果中的低浓度的Cd,Zn和Cu。水果中的低HM累积部分归因于低根/芽(R / S)生物质比。由于根际有机化合物的低水平水平较低,溶解少量的土壤HMS,这可能降低了根部的HM吸收。两种番茄类型的低CD品种具有更高的能力,其能够比其高CD品种保持根系中的HMS。这些发现可能为HM污染的盐渍土的安全培养提供科学指导。

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