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Construction of small plasmid vectors for use in genetic improvement of the extremely acidophilic Acidithiobacillus caldus.

机译:小质粒载体的构建,用于遗传性极强嗜酸嗜酸硫杆菌的遗传改良。

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摘要

The genetic improvement of biomining bacteria including Acidithiobacillus caldus could facilitate the bioleaching process of sulfur-containing minerals. However, the available vectors for use in A. caldus are very scanty and limited to relatively large broad-host-range IncQ plasmids. In this study, a set of small, mobilizable plasmid vectors (pBBR1MCS-6, pMSD1 and pMSD2) were constructed based on plasmid pBBR1MCS-2, which does not belong to the IncQ, IncW, or IncP groups. The function of the tac promoter on 5.8-kb pMSD2 was determined by inserting a kanamycin-resistant reporter gene. The resulting recombinant pMSD2-Km was successfully transferred by conjugation into A. caldus MTH-04 with transfer frequency of 1.38+0.64x10(-5). The stability and plasmid copy number of pMSD2-Km in A. caldus MTH-04 were 75+2.7% and 5-6 copies per cell, respectively. By inserting an arsABC operon into pMSD2, an arsenic-resistant recombinant pMSD2-As was constructed and transferred into A. caldus MTH-04 by conjugation. The arsenic tolerance of A. caldus MTH-04 containing pMSD2-As was obviously increased up to 45mM of NaAsO2. These vectors could be applied in genetic improvement of A. caldus as well as other bioleaching bacteria
机译:生物采矿细菌的遗传改良,包括嗜酸硫杆菌(Acidithiobacillus caldus),可以促进含硫矿物的生物浸出过程。但是,可用于产气荚膜曲霉的载体非常少,并且限于相对较大的宽宿主范围的IncQ质粒。在这项研究中,基于质粒pBBR1MCS-2构建了一组小的可移动质粒载体(pBBR1MCS-6,pMSD1和pMSD2),该质粒不属于IncQ,IncW或IncP组。通过插入抗卡那霉素的报告基因来确定tac启动子在5.8-kb pMSD2上的功能。通过缀合成功地将得到的重组pMSD2-Km转移到产穗曲霉MTH-04中,转移频率为1.38 + 0.64x10(-5)。 pMSD2-Km在拟定曲霉MTH-04中的稳定性和质粒拷贝数分别为每个细胞75 + 2.7%和5-6个拷贝。通过将arsABC操纵子插入pMSD2中,构建了抗砷重组pMSD2-As,并通过缀合转移到产气荚膜曲霉MTH-04中。含有pMSD2-As的拟南芥MTH-04的砷耐受性明显提高至NaAsO2达45mM。这些载体可用于A. caldus以及其他生物浸出细菌的遗传改良。

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