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A Transposable Partitioning Locus Used To Stabilize Plasmid-Borne Hydrogen Oxidation and Trifolitoxin Production Genes in a Sinorhizobium Strain

机译:一个可转换的分区座位,用于稳定质粒的氧化氢和三叶草毒素菌株中的三叶草毒素产生基因。

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Improved nitrogen-fixing inoculum strains for leguminous crops must be able to effectively compete with indigenous strains for nodulation, enhance legume productivity compared to the productivity obtained with indigenous strains, and maintain stable expression of any added genes in the absence of selection pressure. We constructed a transposable element containing the tfx region for expression of increased nodulation competitiveness and the par locus for plasmid stability. The transposon was inserted into tetA of pHU52, a broad-host-range plasmid conferring the H2 uptake phenotype. The resulting plasmid, pHUTFXPAR, conferred the plasmid stability, trifolitoxin production, and H2 uptake phenotypes in the broad-host-range organism Sinorhizobiumsp. strain ANU280. The broad applications of a transposon conferring plasmid stability are discussed.
机译:改良的豆科作物固氮接种菌菌株必须能够有效地与本地菌株竞争结瘤,与本地菌株相比获得更高的豆类生产率,并在没有选择压力的情况下保持任何添加基因的稳定表达。我们构建了一个可转座元件,其中包含tfx区域,用于表达增加的结瘤竞争力,以及用于质粒稳定性的par位点。将转座子插入pHU52的tetA中,pHU52是赋予H2吸收表型的宽宿主范围的质粒。所得质粒pHUTFXPAR在宽宿主范围的生物体中华根瘤菌中赋予了质粒稳定性,三叶毒素产生和H2吸收表型。菌株ANU280。讨论了转座子赋予质粒稳定性的广泛应用。

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