Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Dr, San Diego, CA 92182-1030, USA.
Biometals. 2012 Feb;25(1):135-47. doi: 10.1007/s10534-011-9491-9. Epub 2011 Sep 6.
Marinobacter belong to the class of Gammaproteobacteria and these motile, halophilic or halotolerent bacteria are widely distributed throughout the world's oceans having been isolated from a wide variety of marine environments. They have also been identified as members of the bacterial flora associated with other marine organisms. Here, using a combination of natural products chemistry and genomic analysis, we assess the nature of the siderophores produced by this genus and their potential relationship to phylogeny and lifestyle/ecological niche of this diverse group of organisms. Our analysis shows a wide level of diversity in siderophore based iron uptake systems among this genus with three general strategies: (1) production and utilization of native siderophores in addition to utilization of a variety of exogenous ones, (2) production and utilization of native siderophores only, (3) lack of siderophore production but utilization of exogenous ones. They all share the presence of at least one siderophore-independent iron uptake ABC transport systems of the FbpABC iron metal type and lack the ability for direct transport of ferrous iron. Siderophore production and utilization can be correlated with phylogeny and thus it forms a type of chemotaxonomic marker for this genus.
海洋盐杆菌属于γ-变形菌纲,这些运动的、嗜盐或耐盐细菌广泛分布于世界各地的海洋中,它们从各种各样的海洋环境中被分离出来。它们也被认为是与其他海洋生物相关的细菌菌群的成员。在这里,我们使用天然产物化学和基因组分析的组合,评估了该属产生的铁载体的性质,以及它们与该多样化生物群的系统发育和生活方式/生态位的潜在关系。我们的分析表明,该属的基于铁载体的铁摄取系统具有广泛的多样性,存在三种一般策略:(1)除了利用各种外源性铁载体外,还产生和利用天然铁载体;(2)仅产生和利用天然铁载体;(3)缺乏铁载体的产生,但利用外源性铁载体。它们都至少具有一个铁载体独立的 FbpABC 型铁金属 ABC 转运系统,并且缺乏直接转运亚铁的能力。铁载体的产生和利用可以与系统发育相关联,因此它形成了该属的一种化学生态分类标记。