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上海安譜實(shí)驗(yàn)科技股份有限公司>>資料下載>>Uptake Pathway, Translocation, and Isomerization of Hexabromocyclododecane Diastereoisomers by Wheat

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  • 12.5*12.5*45mm(10mm光

  • 12.5*12.5*45mm(10mm光

  • 12.5*12.5*45mm(10mm光

  • 12.5*12.5*45mm(10mm光

  • 12.5*12.5*45mm(10mm光

  • 12.5*12.5*45mm(10mm光

Uptake Pathway, Translocation, and Isomerization of Hexabromocyclododecane Diastereoisomers by Wheat

閱讀:350        發(fā)布時(shí)間:2018-03-01
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    上海安譜實(shí)驗(yàn)科技股份有限公司

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 To study the uptake pathways of 3 main hexabromocyclododecane diastereoisomers (α-, β-, and γ- HBCDs) in wheat, four closed chambers were designed to expose wheat to HBCDs via air and/or soil for 4 weeks. The results showed that HBCDs could be absorbed by wheat both via root from soil and via leaf from air. The Rt values (ratio of HBCDs from root-to-leaf translocation to the total accumulation in leaves) ranging from 14.4 to 29.8% suggested that acropetal translocation within wheat was limited. A negative linear relationship was found between log Rt and log Kow of the HBCD diastereoisomers (p < 0.05). The bioconcentration factors (BCFs, (μg/g wheat tissues)/ (μg/g soil)) were in the order α- > β- > γ-HBCD in wheat roots and stems, being negatively related to their Kow values. No such correlation was found in leaves, where the HBCDs came mainly from air distribution. The results of enantiomeric fractions indicated that the (?)-enantiomer of α- and γ-HBCDs and the (+)-β-enantiomer were selectively accumulated. Furthermore, β- and γ-HBCDs were transformed to α-HBCD in the wheat, with 0.309?4.80% and 0.920?8.40% bioisomerization efficiencies at the end of the experiment, respectively, being the highest in leaves. Additionally, no isomerization product from α-HBCD was found.(研究小麥中3種對(duì)映體六溴環(huán)十二烷二體異構(gòu)物的吸收途徑,結(jié)果顯示HBCDs能通過(guò)根從土壤中和通過(guò)葉子從空氣中吸收。Rt值從14.4到29.8%說(shuō)明小麥的頂葉易位是有限的。在HBCDs的非對(duì)映體發(fā)現(xiàn)了logRt和logKow 的負(fù)線性關(guān)系。在葉子中沒(méi)有發(fā)現(xiàn)這種相關(guān)性,hbcd主要來(lái)自于空氣傳播。對(duì)映體的比例說(shuō)明對(duì)映體α-&γ-HBCDs和β-HBCDs是有選擇性積累的,而且小麥中β-and γ-HBCDs可以轉(zhuǎn)換成α-HBCDs)

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