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首页> 外文期刊>FEMS Microbiology Ecology >Actinobacteria phylogenomics, selective isolation from an iron oligotrophic environment and siderophore functional characterization, unveil new desferrioxamine traits
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Actinobacteria phylogenomics, selective isolation from an iron oligotrophic environment and siderophore functional characterization, unveil new desferrioxamine traits

机译:actinobacteria系统核糖组织,从铁寡营养环境中选择性分离和阳光功能表征,揭示了新的去氧性状特征

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Desferrioxamines are hydroxamate siderophores widely conserved in both aquatic and soil-dwelling Actinobacteria. While the genetic and enzymatic bases of siderophore biosynthesis and their transport in model families of this phylum are well understood, evolutionary studies are lacking. Here, we perform a comprehensive desferrioxamine-centric (des genes) phylogenomic analysis, which includes the genomes of six novel strains isolated from an iron and phosphorous depleted oasis in the Chihuahuan desert of Mexico. Our analyses reveal previously unnoticed desferrioxamine evolutionary patterns, involving both biosynthetic and transport genes, likely to be related to desferrioxamines chemical diversity. The identified patterns were used to postulate experimentally testable hypotheses after phenotypic characterization, including profiling of siderophores production and growth stimulation of co-cultures under iron deficiency. Based in our results, we propose a novel des gene, which we term desG, as responsible for incorporation of phenylacetyl moieties during biosynthesis of previously reported arylated desferrioxamines. Moreover, a genomic-based classification of the siderophore-binding proteins responsible for specific and generalist siderophore assimilation is postulated. This report provides a much-needed evolutionary framework, with specific insights supported by experimental data, to direct the future ecological and functional analysis of desferrioxamines in the environment.
机译:除去氟胺是羟肟胺的散发体,在水生和土壤住宅的抗肌钙中被广泛保守。虽然Signerophore生物合成的遗传和酶库和它们在这种门的模型家庭中进行了很好的理解,但缺乏进化研究。在这里,我们进行全面的脱硫以中心(DES基因),其中包括从墨西哥吉瓦川沙漠中的铁和磷耗尽绿洲分离的六种新菌株的基因组。我们的分析揭示了涉及生物合成和运输基因的先前未被注意的除丙胺进化模式,可能与除去丙烯胺化学多样性有关。所鉴定的模式用于在表型表征后假设实验可测试的假设,包括在铁缺乏症下的施用和生长刺激的膀胱生产和生长刺激。在我们的结果中,我们提出了一种新的DES基因,我们将DESG术语术语,负责在先前据报道的芳基化脱氧基胺的生物合成期间掺入苯基乙炔部分。此外,假设负责特异性和通用性施工电影同化的基于基于基于烷基结合蛋白的基因组分类。本报告提供了一项急需的进化框架,实验数据支持特定的见解,以指导未来环境中去除氧胺的生态和功能分析。

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