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Deletion of Phytochelatin Synthase Modulates the Metal Accumulation Pattern of Cadmium Exposed C. elegans

机译:植螯素合酶的删除调节镉暴露线虫的金属积累模式。

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摘要

Environmental metal pollution is a growing health risk to flora and fauna. It is therefore important to fully elucidate metal detoxification pathways. Phytochelatin synthase (PCS), an enzyme involved in the biosynthesis of phytochelatins (PCs), plays an important role in cadmium detoxification. The PCS and PCs are however not restricted to plants, but are also present in some lower metazoans. The model nematode Caenorhabditis elegans, for example, contains a fully functional phytochelatin synthase and phytochelatin pathway. By means of a transgenic nematode strain expressing a pcs-1 promoter-tagged GFP (pcs-1::GFP) and a pcs-1 specific qPCR assay, further evidence is presented that the expression of the C. elegans phytochelatin synthase gene (pcs-1) is transcriptionally non-responsive to a chronic (48 h) insult of high levels of zinc (500 μM) or acute (3 h) exposures to high levels of cadmium (300 μM). However, the accumulation of cadmium, but not zinc, is dependent on the pcs-1 status of the nematode. Synchrotron based X-ray fluorescence imaging uncovered that the cadmium body burden increased significantly in the pcs-1(tm1748) knockout allele. Taken together, this suggests that whilst the transcription of pcs-1 may not be mediated by an exposure zinc or cadmium, it is nevertheless an integral part of the cadmium detoxification pathway in C. elegans.
机译:环境金属污染对动植物的健康构成了越来越大的健康风险。因此,充分阐明金属排毒途径非常重要。植螯素合酶(PCS)是一种参与植物螯合素(PCs)生物合成的酶,在镉排毒中起着重要作用。但是,PCS和PC不仅限于植物,还存在于一些较低的后生动物中。例如,模型线虫秀丽隐杆线虫包含功能齐全的植物螯合素合酶和植物螯合素途径。通过表达pcs-1启动子标签的GFP(pcs-1 :: GFP)的转基因线虫菌株和pcs-1特异性qPCR分析,进一步的证据表明秀丽隐杆线虫植物螯合酶合酶基因(pcs -1)对高水平锌(500μM)的慢性(48 h)损伤或对高水平镉(300μM)的急性暴露(3 h)的转录无反应。但是,镉而不是锌的积累取决于线虫的pcs-1状态。基于同步加速器的X射线荧光成像发现,在pcs-1(tm1748)敲除等位基因中,镉的身体负担显着增加。两者合计,这表明尽管pcs-1的转录可能不受暴露于锌或镉的介导,但它仍然是秀丽隐杆线虫中镉解毒途径不可或缺的一部分。

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