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Behavior of Decabromodiphenyl Ether (BDE-209) in the Soil-Plant System: Uptake, Translocation, and Metabolism in Plants and Dissipation in Soil

机译:十溴二苯醚(BDE-209)在土壤-植物系统中的行为:植物的吸收,转运和代谢以及土壤中的耗散

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摘要

Deca-bromodiphenyl ether (BDE-209) is the major component of the commercial deca-BDE flame retardant. There is increasing concern over BDE-209 due to its increasing occurrence in the environment and in humans. In this study the behavior of BDE-209 in the soil-plant system was investigated. Accumulation of BDE-209 was observed in the roots and shoots of all the six plant species examined, namely ryegrass, alfalfa, pumpkin, summer squash, maize, and radish. Root uptake of BDE-209 was positively correlated with root lipid content (P < 0.001, R(2) = 0.81). The translocation factor (TF, C(shoot)/C(root)) of BDE-209 was inversely related to its concentration in roots. Nineteen lower brominated (di- to nor a-) PBDEs were detected in the soil and plant samples and five hydroxylated congeners were detected in the plant samples, indicating debromination and hydroxylation of BDE-209 in the soil-plant system. Evidence of a relatively higher proportion of penta- through di-BDE congeners in plant tissues than in the soil indicates that there is further debromination of PBDEs within plants or low brominated PBDEs are more! readily taken up by plants. A significant negative correlation between the residual BDE-209 concentration in soil and the soil microbial biomass measured as the total phospholipid fatty, acids (PLFAs) (P < 0.05, R(2) = 0.74) suggests that microbial metabolism and degradation contribute to BDE-209 dissipation in soil. These results provide important information about the behavior of BDE-209 in the soil-plant system.
机译:十溴二苯醚(BDE-209)是商用十溴二苯醚阻燃剂的主要成分。由于BDE-209在环境和人类中的发生率越来越高,因此越来越引起人们的关注。在这项研究中,研究了BDE-209在土壤-植物系统中的行为。在所研究的全部六种植物中,黑麦草,苜蓿,南瓜,西葫芦,玉米和萝卜的根和芽中均观察到BDE-209的积累。 BDE-209的根吸收与根脂质含量呈正相关(P <0.001,R(2)= 0.81)。 BDE-209的易位因子(TF,C(拍摄)/ C(根))与其在根中的浓度成反比。在土壤和植物样品中检测到19种较低的溴化(二-或α-)PBDEs,在植物样品中检测到5种羟基化的同类物,表明BDE-209在土壤-植物系统中脱溴和羟基化。有证据表明,植物组织中五溴二苯醚和二溴二苯醚同系物的比例要比土壤中高,这表明植物中多溴二苯醚的脱溴作用进一步增强,而低溴化多溴二苯醚的溴化物含量更高!容易被植物吸收。土壤中残留的BDE-209浓度与土壤微生物生物量之间的显着负相关(以总磷脂脂肪酸(PLFAs)测得)(P <0.05,R(2)= 0.74)表明微生物代谢和降解有助于BDE -209在土壤中的耗散。这些结果提供了有关BDE-209在土壤-植物系统中行为的重要信息。

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