首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >XAS and microscopy studies of hte uptake and bio-transformation of copper in Larrea tridentata (creosote bush)
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XAS and microscopy studies of hte uptake and bio-transformation of copper in Larrea tridentata (creosote bush)

机译:XAS和显微技术研究Larrea tridentata(杂草丛)中铜的吸收和生物转化

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摘要

Herein we present work directed toward understanding the mechanisms employed by Larrea tridentata(Creosote bush)to uptake and simultaneously defend against the presence of excess copper in the plant have been studiedon several length scales:greater than 10 #mu#m(scanning electron microscopy),less than 10 #mu#m(transmission electron microscopy) and atomic level structure and speciation(EXAFS and SANES).Two interesting results are apparent:creosote takes up or adsorbs copper from the soil in hte Cu(II) oxidation state and transports it to the leaves where coper is found as Cu(I) and Cu(II).The transport agent appears to be a Cuphytochelatin.Additionally,creosote may be immobilizing and excreting copper via at least two additional mechanisms:storage of metals in vacuoles and excretion of copper into the sticky resinous substance found on the leaf surface.Creosote may also accumulate wind-blown particulates that can easily adhere to the resinous sticky surface of he plant.If,however,the particulates are <10 #mu#m they may enter the leaf by respiration through the plant 'stomata'that have openings between 5 #mu#m and 10 #mu#m .As such,cresote may be a natural bio-indicator for airborne particulates that are <10 #mu#m.
机译:在这里,我们目前的工作旨在了解Larrea tridentata(Creosote灌木丛)用于吸收并同时防御植物中过量铜的存在的机制,该研究已在多个长度尺度上进行了研究:大于10#mu#m(扫描电子显微镜)小于10#mu#m(透射电子显微镜)以及原子能级结构和形态(EXAFS和SANES)。两个有趣的结果是显而易见的:杂铜以铜(II)的氧化态吸收或吸附土壤中的铜并进行迁移。转运剂似乎是铜螯合铜。另外,杂酚油可能通过至少两种另外的机制固定和排泄铜:金属在液泡中的储存和铜可能排泄到叶片表面的粘性树脂物质中。creosote还会积聚风吹的微粒,这些微粒很容易粘附在植物的树脂粘性表面上。小于10#mu#m的细小颗粒可以通过植物气孔呼吸进入叶片,该植物的气孔在5#mu#m和10#mu#m之间。因此,cresote可能是空气传播的天然生物指示剂<10#mu#m的颗粒。

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