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Biosynthesis of a Complex Yersiniabactin-Like Natural Product via the mic Locus in Phytopathogen Ralstonia solanacearum▿†

机译:通过拟南芥青枯雷尔氏菌中的基因座生物合成类似耶尔西菌素的天然产物

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摘要

A genome mining study in the plant pathogenic bacterium Ralstonia solanacearum GMI1000 unveiled a polyketide synthase/nonribosomal peptide synthetase gene cluster putatively involved in siderophore biosynthesis. Insertional mutagenesis confirmed the respective locus to be operational under iron-deficient conditions and spurred the isolation of the associated natural product. Bioinformatic analyses of the gene cluster facilitated the structural characterization of this compound, which was subsequently identified as the antimycoplasma agent micacocidin. The metal-chelating properties of micacocidin were evaluated in competition experiments, and the cellular uptake of gallium-micacocidin complexes was demonstrated in R. solanacearum GMI1000, indicating a possible siderophore role. Comparative genomics revealed a conservation of the micacocidin gene cluster in defined, but globally dispersed phylotypes of R. solanacearum.
机译:在植物病原细菌Ralstonia solanacearum GMI1000中进行的基因组挖掘研究揭示了聚酮化合物合酶/非核糖体肽合成酶基因簇,该基因簇可能与铁载体的生物合成有关。插入诱变证实了各自的基因座可在缺铁条件下运行,并刺激了相关天然产物的分离。基因簇的生物信息学分析促进了该化合物的结构表征,随后将该化合物鉴定为抗支原体药物micacocidin。在竞争实验中评估了micacocidin的金属螯合性能,并在茄形毛状菌GMI1000中证明了镓-micacocidin复合物的细胞摄取,表明其可能具有铁载体作用。比较基因组学揭示了茄形红霉菌中定义的micacocidin基因簇的保守性,但在全球分布。

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