首页> 外文期刊>Journal of Agricultural and Food Chemistry >Perchlorate, Nitrate, and Iodine Uptake and Distribution in Lettuce (Lactuca sativa L.) and Potential Impact on Background Levels in Humans
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Perchlorate, Nitrate, and Iodine Uptake and Distribution in Lettuce (Lactuca sativa L.) and Potential Impact on Background Levels in Humans

机译:生菜(Lactuca sativa L.)中高氯酸盐,硝酸盐和碘的吸收和分布以及对人体背景水平的潜在影响

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Much focus has been placed on the impact of exposure to perchlorate (ClO_4~-) from drinking water. Recently, it has become more apparent that a significant percentage of the total ClO_4~- exposure may be due to ingestion of food. Most studies have only evaluated the uptake and distribution of ClO_4~- by plants without considering the potential for uptake of iodine (I) by the plant and the subsequent impacts on ClO_4~- uptake and distribution on human health. The objectives of this research effort were to evaluate the relative uptake of ClO_4~- and I supplied as either KI or KIO3, the two major environmental forms of I in a standard hydroponic nutrient solution using butter head lettuce. No interaction of ClO_4~- uptake and distribution was found in the presence of r or IO_3~-relative to previous studies evaluating ClO_4~- alone. Bioconcentration factors for ClO_4~- and total 1 in butter head lettuce when coexposed to both anions were similar for outer (292 ± 17 and 294 ± 12 L kg~(-1) of dry weight, respectively) and inner (76 ± 18 and 60 ± 8 L kg~(-1) of dry weight, respectively) leaves but not for roots (23 ± 3.7 and 359 ± 1.7 L kg~(-1) of dry weight, respectively) when the iodine was supplied as r. The uptake of iodine was lower (BCF = 47 ± 3.8,19 ± 0.6, and 189 ± 16, L kg~(-1) of dry weight for the outer and inner leaves and roots, respectively) for all tissues when iodine was supplied as IO_3~-, with the greatest accumulation by the roots. These results suggest that if lettuce is grown using fertilizers containing both ClO_4~- and I~-, then the final ratio of I_T/ClO4 in the leaves will be essentially equal to the ratio in the fertilizer but lower if the I is supplied as IO_3~-. Therefore, the impact of the consumption of lettuce containing ClO_4~- may be mitigated if the lettuce is grown using fertilizer with an appropriate amount of I to maintain the existing ratio of serum I to total goitrogen load (TGL). Nevertheless, the TGL in lettuce appeared to be almost completely dominated by NO_3~-with only a minor contribution of ClO_4~-, even for the highest exposure to ClO_4~-.
机译:人们已经将许多重点放在饮用水接触高氯酸盐(ClO_4〜-)的影响上。近来,越来越明显的是,总的ClO_4〜-暴露的很大一部分可能是由于食物的摄入。大多数研究仅评估植物对ClO_4〜-的吸收和分布,而没有考虑植物对碘(I)的吸收潜力以及其对ClO_4〜-的吸收和分布对人体健康的影响。这项研究工作的目的是评估作为KI或KIO3提供的ClO_4〜-和I的相对摄取,这是使用黄油头生菜的标准水培营养液中I的两种主要环境形式。与以前评估单独ClO_4〜的研究相比,在r或IO_3〜的存在下没有发现ClO_4〜-摄取和分布的相互作用。当同时暴露于两种阴离子时,牛油莴苣中ClO_4〜-和总生物富集因子1的生物浓缩系数在外部(干重分别为292±17和294±12 L kg〜(-1))和内部(分别为76±18和干重)相似。当碘作为r供给时,叶的干重分别为60±8 L kg〜(-1),但根部则不为根(干重分别为23±3.7和359±1.7 L kg〜(-1))。当供应碘时,所有组织的碘摄取量均较低(BCF = 47±3.8、19±0.6和189±16,分别为内,外叶和根的干重L kg〜(-1)L)。与IO_3〜-一样,由根部累积最多。这些结果表明,如果使用同时含有ClO_4〜-和I〜-的肥料种植生菜,那么叶中I_T / ClO4的最终比例将基本上等于肥料中的比例,但是如果以IO_3的形式供应I 〜-。因此,如果使用含适量I的肥料来生长莴苣,以维持血清I与总Gog量(TGL)的比率,则可以减轻食用含ClO_4-的莴苣的影响。尽管如此,莴苣中的TGL似乎几乎完全被NO_3〜所支配-即使ClO_4〜-的暴露量最高,ClO_4〜-的贡献也很小。

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