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Single-cell determination of iron content in magnetotactic bacteria: implications for the iron biogeochemical cycle

机译:磁直星细菌中铁含量的单细胞测定:铁生物地球化学循环的影响

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摘要

Magnetotactic bacteria (MTB) are ubiquitous aquatic microorganisms that mineralize dissolved iron into intracellular magnetic crystals. After cell death, these crystals are trapped into sediments that remove iron from the soluble pool. MTB may significantly impact the iron biogeochemical cycle, especially in the ocean where dissolved iron limits nitrogen fixation and primary productivity. A thorough assessment of their impact has been hampered by a lack of methodology to measure the amount of, and variability in, their intracellular iron content. We quantified the iron mass contained in single MTB cells of Magnetospirillum magneticum strain AMB-1 using a time-resolved inductively coupled plasma-mass spectrometry methodology. Bacterial iron content depends on the external iron concentration, and reaches a maximum value of ~10(-6) ng of iron per cell. From these results, we calculated the flux of dissolved iron incorporation into environmental MTB populations and conclude that MTB may mineralize a significant fraction of dissolved iron into crystals.
机译:磁通术细菌(MTB)是普遍存在的水生微生物,即矿化溶解铁进入细胞内磁性晶体。在细胞死亡后,将这些晶体陷入沉积物中,从而从可溶性池中除去铁。 MTB可能会显着影响铁生物地球化学循环,特别是在溶解铁限制氮固定和初级生产率的海洋中。通过缺乏方法的缺乏方法来彻底评估其影响,以衡量其细胞内铁含量的含量和变异性。我们使用时间分辨的电感耦合等离子体质谱法量化了磁摩托列马菌株菌株AMB-1的单MTB细胞中所含的铁物质。细菌铁含量取决于外部铁浓度,并达到每种细胞的最大值〜10(-6)铁。从这些结果来看,我们计算了溶解铁掺入的助焊剂进入环境MTB群体,并得出结论,MTB可以将显着的溶解铁矿化成晶体。

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