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Expression of mercuric reductase from Bacillus megaterium MB1 in eukaryotic microalga Chlorella sp DT: an approach for mercury phytoremediation

机译:巨大芽孢杆菌mB1中汞还原酶在真核微藻Chlorella sp DT中的表达:汞植物修复的一种方法

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摘要

A eukaryotic microalga, Chlorella sp. DT, was transformed with the Bacillus megaterium strain MB1 merA gene, encoding mercuric reductase (MerA), which mediates the reduction of Hg2+ to volatile elemental Hg-0. The transformed Chlorella cells were selected first by hygromycin B and then by HgCl2. The existence of merA gene in the genomic DNA of transgenic strains was shown by polymerase chain reaction amplification, while the stable integration of merA into genomic DNA of transgenic strains was confirmed by Southern blot analysis. The ability to remove Hg2+ in merA transgenic strains was higher than that in the wild type. The merA transgenic strains showed higher growth rate and photosynthetic activity than the wild type did in the presence of a toxic concentration of Hg2+. Cultured with Hg2+, the expression level of superoxide dismutase in transgenic strains was lower than that in the wild type, suggesting that the transgenic strains faced a lower level of oxidative stress. All the results indicated that merA gene was successfully integrated into the genome of transgenic strains and functionally expressed to promote the removal of Hg2+.
机译:真核微藻,小球藻。用巨大芽孢杆菌MB1 merA基因转化DT,该基因编码汞还原酶(MerA),介导Hg2 +还原为挥发性元素Hg-0。首先通过潮霉素B,然后通过HgCl2选择转化的小球藻细胞。通过聚合酶链反应扩增显示merA基因在转基因菌株的基因组DNA中的存在,而通过Southern印迹分析证实merA稳定整合到转基因菌株的基因组DNA中。 merA转基因菌株去除Hg2 +的能力高于野生型。在毒性浓度的Hg2 +存在下,与野生型相比,merA转基因菌株显示出更高的生长速率和光合作用活性。用Hg2 +进行培养,转基因菌株中超氧化物歧化酶的表达水平低于野生型,这表明转基因菌株面临的氧化应激水平较低。所有结果表明,merA基因已成功整合到转基因菌株的基因组中,并在功能上表达以促进Hg2 +的去除。

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