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Utilization of Heme as an Iron Source by Marine Alphaproteobacteria in the Roseobacter Clade

机译:海洋丙酸杆菌在玫瑰杆菌属中的血红素作为铁源的利用

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The bioavailability and utilization of porphyrin-bound iron, specifically heme, by marine microorganisms have rarely been examined. This study used Ruegeria sp. strain TrichCH4B as a model organism to study heme acquisition by a member of the Roseobacter clade. Analogs of known heme transporter proteins were found within the Ruegeria sp. TrichCH4B genome. The identified heme uptake and utilization system appears to be functional, as the heme genes were upregulated under iron stress, the bacterium could grow on ferric-porphyrin complexes as the sole iron source, and internalization of ~(55) Fe from ferric protoporphyrin IX was observed. The potential ability to utilize heme in the Roseobacter clade appears to be common, as half of the isolates in the RoseoBase database were found to have a complete heme uptake system. A degenerate primer set was designed and successfully used to identify the putative heme oxygenase gene ( hmus ) in the roseobacter heme uptake system from diverse nonenriched marine environments. This study found that members of the Roseobacter clade are capable of utilizing heme as an iron source and that this capability may be present in all types of marine environments. The results of this study add a new perspective to the current picture of iron cycling in marine systems, whereby relatively refractory intracellular pools of heme-bound iron may be taken up quickly and directly reincorporated into living bacteria without previous degradation or the necessity of a siderophore intermediate.
机译:很少研究海洋微生物与卟啉结合的铁,特别是血红素的生物利用度和利用率。该研究使用了Ruegeria sp。菌株TrichCH4B作为模型生物,研究玫瑰红细菌进化支成员的血红素获取。在Ruegeria sp。中发现了已知的血红素转运蛋白的类似物。 TrichCH4B基因组。鉴定出的血红素吸收和利用系统似乎是有功能的,因为在铁胁迫下血红素基因被上调,细菌可以在铁-卟啉复合物上作为唯一铁源生长,而原铁卟啉IX中〜(55)Fe的内在化是有效的。观测到的。利用Roseobacter进化枝中血红素的潜在能力似乎很普遍,因为发现RoseoBase数据库中一半的分离株具有完整的血红素吸收系统。设计了一个简并引物组,并成功地用于鉴定来自多种未富集海洋环境的玫瑰红杆菌血红素摄取系统中的假定的血红素加氧酶基因(hmus)。这项研究发现,玫瑰红杆菌属的成员能够利用血红素作为铁源,并且这种能力可能存在于所有类型的海洋环境中。这项研究的结果为海洋系统中铁循环的当前状况提供了新的视角,从而可以迅速吸收相对难治的血红素结合铁的细胞内池,并将其直接重新掺入活细菌中,而无需先前的降解或铁载体的必要性中间。

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