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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Selenium (Se) Does Not Reduce Cadmium (Cd) Uptake and Translocation in Rice (Oryza sativa L.) in Naturally Occurred Se-Rich Paddy Fields with a High Geological Background of Cd
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Selenium (Se) Does Not Reduce Cadmium (Cd) Uptake and Translocation in Rice (Oryza sativa L.) in Naturally Occurred Se-Rich Paddy Fields with a High Geological Background of Cd

机译:硒(SE)不会减少镉(CD)摄取和蒸煮中的易位(Oryza Sativa L.),在天然存在的SE的稻田中,具有高地质背景的CD

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This study examined the selenium (Se) and cadmium (Cd) uptake by rice from soil and analyzed the relationship between Se and Cd in naturally occurred Se-rich paddy fields with a high geological background of Cd. Significant correlations were observed between soil Se and plant biomass Se, but not between soil Cd and plant biomass Cd. High concentrations of Cd were detected in rice plants and particularly in rice grains, suggesting potential health risks to human. Contrary to results from other previous studies, our results showed that high soil Se did not reduce Cd uptake by rice, although it decreased the availability of Cd in soil. Rather, soil Se and internal Se pool in rice were positively correlated to the transfer of Cd from root to straw. The effect of Se on the uptake and translocation of Cd in rice in field is therefore different from those in pot experiments.
机译:本研究研究了来自土壤的水稻的硒(SE)和镉(CD)摄取,并分析了天然存在的SE和CD之间的关系,具有高质量的CD地质背景。 在土壤和植物生物量SE之间观察到显着的相关性,但不在土壤CD和植物生物质CD之间观察到显着的相关性。 在水稻植物中检测到高浓度的Cd,特别是在水稻粒中,表明人类的潜在健康风险。 与其他先前研究的结果相反,我们的结果表明,高土壤SE没有减少米饭的CD吸收,尽管它降低了土壤中CD的可用性。 相反,水稻中的土壤和内部SE池与从根到秸秆的CD转移呈正相关。 因此,SE对稻米CD摄取和易位的影响与盆栽实验不同。

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