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Probing the Role of the Chloroplasts in Heavy Metal Tolerance and Accumulation in Euglena gracilis

机译:致氯化体在Euglena Gracilis中氯骨质体中的作用

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The E. gracilis Zm-strain lacking chloroplasts, characterized in this study, was compared with the earlier assessed wild type Z-strain to explore the role of chloroplasts in heavy metal accumulation and tolerance. Comparison of the minimum inhibitory concentration (MIC) values indicated that both strains tolerated similar concentrations of mercury (Hg) and lead (Pb), but cadmium (Cd) tolerance of the Z-strain was twice that of the Zm-strain. The ability of the Zm-strain to accumulate Hg was higher compared to the Z-strain, indicating the existence of a Hg transportation and accumulation mechanism not depending on the presence of chloroplasts. Transmission electron microscopy (TEM) showed maximum accumulation of Hg in the cytosol of the Zm-strain and highest accumulation of Cd in the chloroplasts of the Z-strain indicating a difference in the ability of the two strains to deposit heavy metals in the cell. The highly abundant heavy metal transporter MTP2 in the Z-strain may have a role in Cd transportation to the chloroplasts. A multidrug resistance-associated protein highly increased in abundance in the Zm-strain could be a potential Hg transporter to either cytosol or mitochondria. Overall, the chloroplasts appear to have major role in the tolerance and accumulation of Cd in E. gracilis .
机译:缺乏叶绿体的E.Gracilis ZM-菌株,其特征在本研究中,与前面评估的野生型Z-菌株进行了比较,以探讨叶绿体在重金属积累和耐受性中的作用。最小抑制浓度(MIC)值的比较表明,耐受类似浓度的汞(Hg)和铅(Pb)的菌株,但Z-菌株的镉(Cd)耐受性是Zm-菌株的两倍。与Z-菌株相比,ZM-菌株积聚Hg的能力,表明存在Hg运输和积累机制的存在,而不是根据叶绿体的存在。透射电子显微镜(TEM)显示ZM-菌株的胞嘧啶中HG的最大累积和Z-菌株叶绿体中CD的最高积聚,表明两个菌株在细胞中沉积重金属的能力差异。 Z-菌株中高度丰厚的重金属转运蛋白MTP2可具有在CD运输到叶绿体中的作用。在ZM菌株中高度增加的多药抗性相关蛋白质可以是潜在的HG转运蛋白,或者是细胞溶胶或线粒体。总的来说,叶绿体似乎在克拉西斯的CD的耐受性和积累中具有重要作用。

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