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Effects of Arsenite Resistance on the Growth and Functional Gene Expression of Leptospirillum ferriphilum and Acidithiobacillus thiooxidans in Pure Culture and Coculture

机译:砷酸盐抗性对纯培养和共培养甲氧吡喃菊酯和酸酐硫磷酸噻嗪类生长和功能基因表达的影响

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摘要

The response of iron-oxidizing Leptospirillum ferriphilum YSK and sulfur-oxidizing Acidithiobacillus thiooxidans A01 to arsenite under pure culture and coculture was investigated based on biochemical characterization (concentration of iron ion and pH value) and related gene expression. L. ferriphilum YSK and At. thiooxidans A01 in pure culture could adapt up to 400 mM and 800 mM As(III) after domestication, respectively, although arsenite showed a negative effect on both strains. The coculture showed a stronger sulfur and ferrous ion oxidation activity when exposed to arsenite. In coculture, the pH value showed no significant difference when under 500 mM arsenite stress, and the cell number of At. thiooxidans was higher than that in pure culture benefiting from the interaction with L. ferriphilum. The expression profile showed that the arsenic efflux system in the coculture was more active than that in pure culture, indicating that there is a synergetic interaction between At. thiooxidans A01 and L. ferriphilum YSK. In addition, a model was proposed to illustrate the interaction between arsenite and the ars operon in L. ferriphilum YSK and At. thiooxidans A01. This study will facilitate the effective application of coculture in the bioleaching process by taking advantage of strain-strain communication and coordination.
机译:基于生化特征研究,研究了铁氧化型酸溶螺旋液铁纤维蛋白Ysk和硫氧化酸酐硫磷酰胺A01至砷酸盐,并进行了培养物和携带植物植物。 L. Ferriphilum Ysk和AT。纯培养物中的硫代氧酰胺AO1分别可以在驯化后适应高达400毫米和800毫米,尽管砷酸盐对两个菌株显示出负面影响。当暴露于砷酸盐时,共培育率呈硫和亚铁离子氧化活性。在共培养中,在500毫米砷岩胁迫下,pH值显示出没有显着差异,以及在细胞数。硫代氧酰辛比与L.Ferriphilum相互作用的纯培养物高于纯培养物。表达谱表明,共有植物中的砷流出系统比纯培养物更活跃,表明AT之间存在协同相互作用。硫氧酰胺A01和L.Ferriphilum Ysk。此外,提出了一种模型,以说明亚砷酸盐和ars操纵子在L.Ferriphilum Ysk和AT之间的相互作用。硫代氧酰胺A01。本研究将促进通过利用应变 - 应变通信和协调的生物浸入过程中的有效应用。

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