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Expression of copper-resistance genes in microbial communities under copper stress and oxic/anoxic conditions

机译:铜胁迫和缺氧/缺氧条件下微生物群落中铜抗性基因的表达

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摘要

Microorganisms have developed copper-resistance mechanisms in order to survive in contaminated environments. The abundance and expression of the copper-resistance genes cusA and copA, encoding respectively for a Resistance Cell Nodulation protein and for a P-type ATP-ase pump, was assessed along a gradient of copper concentration in microcosms prepared from Seine estuary mudflat sediment. We demonstrated that the abundance of copA and cusA genes decreased with the increase of copper concentration and that cusA gene was up to ten times higher than the copA gene. Only the copA gene was expressed in both oxic and anoxic conditions. The abundance and activity of the microbial community remained constant whatever the concentrations of copper along the gradient. The molecular phylogeny of the two copper-resistance genes was studied and revealed that the increase of copper increased the diversity of copA and cusA gene sequences.
机译:微生物已经开发出抗铜机制,以便在受污染的环境中生存。铜的抗性基因cusA和copA的丰度和表达,分别编码一个抵抗细胞结节蛋白和一个P型ATP酶泵,沿着塞纳河口滩涂沉积物制备​​的微观世界中的铜浓度梯度进行评估。我们证明了copA和cusA基因的丰度随着铜浓度的增加而降低,并且cusA基因比copA基因高十倍。在有氧和无氧条件下仅表达copA基因。无论沿梯度的铜浓度如何,微生物群落的丰度和活性均保持恒定。研究了两个铜抗性基因的分子系统发育,发现铜的增加增加了copA和cusA基因序列的多样性。

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