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Magnetotactic bacteria form magnetite from a phosphate-rich ferric hydroxide via nanometric ferric (oxyhydr)oxide intermediates

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TLDR
It is shown that magnetite forms through phase transformation from a highly disordered phosphate-rich ferric hydroxide phase, consistent with prokaryotic ferritins, via transient nanometric ferric (oxyhydr)oxide intermediates within the magnetosome organelle.
Abstract
The iron oxide mineral magnetite (Fe3O4) is produced by various organisms to exploit magnetic and mechanical properties. Magnetotactic bacteria have become one of the best model organisms for studying magnetite biomineralization, as their genomes are sequenced and tools are available for their genetic manipulation. However, the chemical route by which magnetite is formed intracellularly within the so-called magnetosomes has remained a matter of debate. Here we used X-ray absorption spectroscopy at cryogenic temperatures and transmission electron microscopic imaging techniques to chemically characterize and spatially resolve the mechanism of biomineralization in those microorganisms. We show that magnetite forms through phase transformation from a highly disordered phosphate-rich ferric hydroxide phase, consistent with prokaryotic ferritins, via transient nanometric ferric (oxyhydr)oxide intermediates within the magnetosome organelle. This pathway remarkably resembles recent results on synthetic magnetite formation and bears a high similarity to suggested mineralization mechanisms in higher organisms.

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Citations
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Designed synthesis and surface engineering strategies of magnetic iron oxide nanoparticles for biomedical applications

TL;DR: This review outlines the limitations of extant surface engineering strategies and several developing strategies that may overcome these limitations and details the promising future directions of this active research field.

Phosphate Imposed Limitations onBiological Reduction and Alterationof Ferrihydrite

TL;DR: In this article, the impact of surface modifications induced by phosphate adsorption on ferrihydrite reduction by Shewanella putrefaciens under static and advective flow conditions is explored.
Journal ArticleDOI

A vacuole-like compartment concentrates a disordered calcium phase in a key coccolithophorid alga

TL;DR: Cryo-preserved cells of the dominant coccolithophore Emiliania huxleyi are studied using state-of-the-art nanoscale imaging and spectroscopy to identify a compartment filled with high concentrations of a disordered form of calcium, suggesting an active role in coccoliths formation.
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Magnetic mineral assemblages in soils and paleosols as the basis for paleoprecipitation proxies: A review of magnetic methods and challenges

TL;DR: Magnetic iron oxide minerals, principally magnetite, maghemite, hematite, and goethite are formed in well-drained soils in response to a suite of physical, chemical, and biological factors.
Journal ArticleDOI

Structural insight into magnetochrome-mediated magnetite biomineralization

TL;DR: The structure of the magnetosome-associated protein MamP is presented and it is found that it is built on a unique arrangement of a self-plugged PDZ domain fused to two magnetochrome domains, defining a new class of c-type cytochrome exclusively found in magnetotactic bacteria.
References
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Journal ArticleDOI

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TL;DR: A software package for the analysis of X-ray absorption spectroscopy (XAS) data is presented, based on the IFEFFIT library of numerical and XAS algorithms and is written in the Perl programming language using the Perl/Tk graphics toolkit.
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Real-space multiple-scattering calculation and interpretation of x-ray-absorption near-edge structure

TL;DR: In this paper, a selfconsistent real-space multiple-scattering (RSMS) approach for calculations of x-ray-absorption near-edge structure (XANES) is presented and implemented in an ab initio code applicable to arbitrary aperiodic or periodic systems.
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A multiplatform code for the analysis of energy-dispersive X-ray fluorescence spectra

TL;DR: A user friendly program for X-ray fluorescence analysis has been developed at the European Synchrotron Radiation Facility as mentioned in this paper, which allows interactive as well as batch processing of large data sets.
Journal ArticleDOI

Oxidation state and coordination of Fe in minerals: An Fe K-XANES spectroscopic study

TL;DR: In this paper, the authors measured high-resolution Fe K-edge XANES spectra of a series of crystalline Fe 2+ - and Fe 3+ -bearing model compounds in an effort to correlate characteristics of the pre-edge feature with oxidation state and local coordination environment of Fe atoms.
Journal ArticleDOI

Sea urchin spine calcite forms via a transient amorphous calcium carbonate phase.

TL;DR: It is shown that sea urchin spine regeneration proceeds via the initial deposition of amorphous calcium carbonate, which may have interesting implications for the development of sophisticated materials.
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