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Magnetic properties of uncultivated magnetotactic bacteria and their contribution to a stratified estuary iron cycle

机译:未培养趋磁细菌的磁性及其对河口铁循环的贡献

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Of the two nanocrystal (magnetosome) compositions biosynthesized by magnetotactic bacteria (MTB), the magnetic properties of magnetite magnetosomes have been extensively studied using widely available cultures, while those of greigite magnetosomes remain poorly known. Here we have collected uncultivated magnetite- and greigite-producing MTB to determine their magnetic coercivity distribution and ferromagnetic resonance (FMR) spectra and to assess the MTB-associated iron flux. We find that compared with magnetite-producing MTB cultures, FMR spectra of uncultivated MTB are characterized by a wider empirical parameter range, thus complicating the use of FMR for fossilized magnetosome (magnetofossil) detection. Furthermore, in stark contrast to putative Neogene greigite magnetofossil records, the coercivity distributions for greigite-producing MTB are fundamentally left-skewed with a lower median. Lastly, a comparison between the MTB-associated iron flux in the investigated estuary and the pyritic-Fe flux in the Black Sea suggests MTB play an important, but heretofore overlooked role in euxinic marine system iron cycle.
机译:在由趋磁细菌(MTB)生物合成的两种纳米晶体(磁小体)组成中,磁铁矿小体的磁性能已使用广泛可用的培养物进行了广泛研究,而对格利特磁小体的磁性能仍然知之甚少。在这里,我们收集了未培养的产生磁铁矿和钙铁矿的MTB,以确定它们的磁矫顽力分布和铁磁共振(FMR)光谱,并评估了与MTB相关的铁通量。我们发现,与生产磁铁矿的MTB文化相比,未培养的MTB的FMR光谱具有更宽的经验参数范围,从而使FMR在化石磁小体(磁化石)检测中的使用变得复杂。此外,与推定的新近纪(Neogene)钙铁矿磁化石记录形成鲜明对比的是,生产钙铁矿的MTB的矫顽力分布基本上向左偏斜,中间值较低。最后,对被调查河口中与MTB相关的铁通量与黑海中的黄铁矿-铁通量进行比较,表明MTB在海洋生物系统的优氧循环中起着重要的作用,但至今仍被忽略。

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