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Development of a Genetic System for Geobacter Sulfurreducens

机译:Geobacter sulfurreducens遗传系统的开发

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摘要

Members of the genus Geobacter are the dominant metal-reducing microorganisms in a variety of anaerobic subsurface environments and have been shown to be involved in the bioremediation of both organic and metal contaminants. To facilitate the study of the physiology of these organisms, a genetic system was developed forGeobacter sulfurreducens. The antibiotic sensitivity of this organism was characterized, and optimal conditions for plating it at high efficiency were established. A protocol for the introduction of foreign DNA into G. sulfurreducens by electroporation was also developed. Two classes of broad-host-range vectors, IncQ and pBBR1, were found to be capable of replication in G. sulfurreducens. In particular, the IncQ plasmid pCD342 was found to be a suitable expression vector for this organism. When the information and novel methods described above were utilized, thenifD gene of G. sulfurreducens was disrupted by the single-step gene replacement method. Insertional mutagenesis of this key gene in the nitrogen fixation pathway impaired the ability of G. sulfurreducens to grow in medium lacking a source of fixed nitrogen. Expression of thenifD gene in trans complemented this phenotype. This paper constitutes the first report of genetic manipulation of a member of the Geobacter genus.
机译:地球细菌属的成员是在各种厌氧地下环境中主要的金属还原微生物,并且已被证明参与有机和金属污染物的生物修复。为了促进对这些生物的生理学的研究,开发了用于减少土壤杆菌的遗传系统。对这种生物的抗生素敏感性进行了表征,并确定了对其进行高效铺板的最佳条件。还开发了通过电穿孔将外来DNA引入硫还原菌的方案。发现两类宽宿主范围载体IncQ和pBBR1能够在硫还原菌中复制。特别地,发现IncQ质粒pCD342是该生物的合适表达载体。当利用上述信息和新颖方法时,通过单步基因替换方法破坏了硫还原菌的ifD基因。该关键基因在固氮途径中的插入诱变削弱了硫还原芽孢杆菌在缺乏固定氮源的培养基中生长的能力。反式的ififD基因表达补充了该表型。本文构成了对Geobacter属成员的基因操作的第一份报告。

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