首页> 外文OA文献 >Identification of high levels of phytochelatins, glutathione and cadmium in the phloem sap of Brassica napus. A role for thiol-peptides in the long-distance transport of cadmium and the effect of cadmium on iron translocation
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Identification of high levels of phytochelatins, glutathione and cadmium in the phloem sap of Brassica napus. A role for thiol-peptides in the long-distance transport of cadmium and the effect of cadmium on iron translocation

机译:在甘蓝型油菜的韧皮部汁液中鉴定出高水平的植物螯合素,谷胱甘肽和镉。硫醇肽在镉长距离运输中的作用以及镉对铁转运的影响

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摘要

Phytochelatins (PCs) are glutathione-derived peptides that function in heavy metal detoxification in plants and certain fungi. Recent research in Arabidopsis has shown that PCs undergo long-distance transport between roots and shoots. However, it remains unknown which tissues or vascular systems, xylem or phloem, mediate PC translocation and whether PC transport contributes to physiologically relevant long-distance transport of cadmium (Cd) between shoots and roots. To address these questions, xylem and phloem sap were obtained from Brassica napus to quantitatively analyze which thiol species are present in response to Cd exposure. High levels of PCs were identified in the phloem sap within 24 h of Cd exposure using combined mass spectrometry and fluorescence HPLC analyses. Unexpectedly, the concentration of Cd was more than four-fold higher in phloem sap compared to xylem sap. Cadmium exposure dramatically decreased iron levels in xylem and phloem sap whereas other essential heavy metals such as zinc and manganese remained unchanged. Data suggest that Cd inhibits vascular loading of iron but not nicotianamine. The high ratios [PCs]/[Cd] and [glutathione]/[Cd] in the phloem sap suggest that PCs and glutathione (GSH) can function as long-distance carriers of Cd. In contrast, only traces of PCs were detected in xylem sap. Our results suggest that, in addition to directional xylem Cd transport, the phloem is a major vascular system for long-distance source to sink transport of Cd as PC–Cd and glutathione–Cd complexes.
机译:植物螯合素(PCs)是谷胱甘肽衍生的肽,可在植物和某些真菌中对重金属进行解毒。拟南芥的最新研究表明,PC在根与芽之间经历长距离运输。然而,尚不清楚哪些组织或血管系统,木质部或韧皮部介导PC的易位以及PC的运输是否有助于茎与根之间的镉(Cd)的生理相关的长距离运输。为了解决这些问题,从甘蓝型油菜获得了木质部和韧皮部汁液,以定量分析响应镉暴露而存在的硫醇种类。使用结合的质谱和荧光HPLC分析,在镉暴露后24小时内,韧皮部汁液中鉴定出高水平的PC。出乎意料的是,韧皮部汁液中的镉含量比木质部汁液高四倍以上。镉暴露显着降低了木质部和韧皮部汁液中的铁含量,而其他必需的重金属如锌和锰保持不变。数据表明镉可抑制铁的血管负荷,但不能抑制烟碱胺。韧皮部汁液中高比例的[PCs] / [Cd]和[谷胱甘肽] / [Cd]表明PC和谷胱甘肽(GSH)可以作为Cd的长距离携带者。相反,在木质部树液中仅检测到痕量的PC。我们的研究结果表明,韧皮部除了定向木质部的Cd转运外,还是长距离来源作为PC–Cd和谷胱甘肽–Cd复合物沉陷Cd转运的主要血管系统。

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