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Ecology, Diversity, and Evolution of Magnetotactic Bacteria

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TLDR
The purpose of this review is focused on the diversity and the ecology of the MTB and also the evolution and transfer of the molecular determinants involved in magnetosome formation.
Abstract
SUMMARY Magnetotactic bacteria (MTB) are widespread, motile, diverse prokaryotes that biomineralize a unique organelle called the magnetosome. Magnetosomes consist of a nano-sized crystal of a magnetic iron mineral that is enveloped by a lipid bilayer membrane. In cells of almost all MTB, magnetosomes are organized as a well-ordered chain. The magnetosome chain causes the cell to behave like a motile, miniature compass needle where the cell aligns and swims parallel to magnetic field lines. MTB are found in almost all types of aquatic environments, where they can account for an important part of the bacterial biomass. The genes responsible for magnetosome biomineralization are organized as clusters in the genomes of MTB, in some as a magnetosome genomic island. The functions of a number of magnetosome genes and their associated proteins in magnetosome synthesis and construction of the magnetosome chain have now been elucidated. The origin of magnetotaxis appears to be monophyletic; that is, it developed in a common ancestor to all MTB, although horizontal gene transfer of magnetosome genes also appears to play a role in their distribution. The purpose of this review, based on recent progress in this field, is focused on the diversity and the ecology of the MTB and also the evolution and transfer of the molecular determinants involved in magnetosome formation.

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Magnetosome biogenesis in magnetotactic bacteria

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References
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Journal ArticleDOI

Calcium-ion mediated assembly and function of glycosylated flagellar sheath of marine magnetotactic bacterium

TL;DR: It is shown that calcium ions mediate the assembly of the tubular‐shaped sheath and disintegration of the sheath was deleterious for smooth swimming of MO‐1 cells, demonstrating a novel bacterial Ca2+‐dependent surface architecture, which is essential for bacterial swimming.
Journal ArticleDOI

Envelope ultrastructure of uncultured naturally occurring magnetotactic cocci.

TL;DR: The surface ultrastructure of uncultured magnetotactic cocci collected from a marine environment by transmission electron microscopy using freeze-fracture and freeze-etching revealed a Gram-negative cell wall and capsular material and S-layer formed by particles arranged with hexagonal symmetry.
Journal ArticleDOI

Detection of Metabolic Key Enzymes of Methane Turnover Processes in Cold Seep Microbial Biofilms

TL;DR: It is shown that sulfate reduction is conducted synchronized and in direct proximity to reverse methanogenesis of ANME archaea, and oxygen-dependent processes are also conducted by a small proportion of the microbial population.
Journal ArticleDOI

[Magnetospirillum aberrantis sp. nov., a new freshwater bacterium with magnetic inclusions].

TL;DR: Strain SpK was characterized by the ability to form small, dense intracellular granules occurring in clusters or short chains shown to have magnetic properties, unlike magnetosomes, the granules did not form long chains.
Journal ArticleDOI

Inter-phylum structural conservation of the magnetosome-associated TPR-containing protein, MamA

TL;DR: Two MamA structures from Candidatus Magnetobacterium bavaricum were determined via X-ray crystallography and confirm that Mbav MamA folds as a sequential TPR protein and shares a high degree of structural similarity with homologous MamA proteins from Magnetospirillum species.
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