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The Siderophore Metabolome of Azotobacter vinelandii

机译:葡萄固氮菌的铁载体代谢组

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In this study, we performed a detailed characterization of the siderophore metabolome, or “chelome,” of the agriculturally important and widely studied model organism Azotobacter vinelandii. Using a new high-resolution liquid chromatography-mass spectrometry (LC-MS) approach, we found over 35 metal-binding secondary metabolites, indicative of a vast chelome in A. vinelandii. These include vibrioferrin, a siderophore previously observed only in marine bacteria. Quantitative analyses of siderophore production during diazotrophic growth with different sources and availabilities of Fe showed that, under all tested conditions, vibrioferrin was present at the highest concentration of all siderophores and suggested new roles for vibrioferrin in the soil environment. Bioinformatic searches confirmed the capacity for vibrioferrin production in Azotobacter spp. and other bacteria spanning multiple phyla, habitats, and lifestyles. Moreover, our studies revealed a large number of previously unreported derivatives of all known A. vinelandii siderophores and rationalized their origins based on genomic analyses, with implications for siderophore diversity and evolution. Together, these insights provide clues as to why A. vinelandii harbors multiple siderophore biosynthesis gene clusters. Coupled with the growing evidence for alternative functions of siderophores, the vast chelome in A. vinelandii may be explained by multiple, disparate evolutionary pressures that act on siderophore production.
机译:在这项研究中,我们对农业上重要且经过广泛研究的模式生物葡萄固氮菌的铁载体代谢组或“螯组”进行了详细表征。使用一种新的高分辨率液相色谱-质谱(LC-MS)方法,我们发现了超过35种与金属结合的次生代谢产物,表明藤本植物中存在大量的螯虾。这些包括弧菌铁蛋白,以前仅在海洋细菌中观察到的铁载体。定量分析重氮营养生长过程中不同来源和铁的铁含量,结果表明,在所有测试条件下,弧菌铁蛋白都以所有铁载体的最高浓度存在,这提示弧菌铁蛋白在土壤环境中具有新的作用。生物信息学搜索证实了Azotobacter spp产弧菌铁蛋白的能力。以及跨多个门,栖息地和生活方式的其他细菌。此外,我们的研究揭示了所有以前未报道的所有已知藤蔓铁锈菌衍生物,并根据基因组分析合理化了它们的起源,这对铁锈菌多样性和进化产生了影响。总之,这些见解提供了有关为什么A. vinelandii包含多个铁载体生物合成基因簇的线索。加上越来越多的证据表明铁载体具有替代功能,A。vinelandii中的巨大螯蟹可以用作用于铁载体生产的多种不同的进化压力来解释。

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