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6 (magnetosome) compositions biosynthesized by magnetotactic bacteria (MTB), the magnetic properties of
7 It plays a central role in the behavior of magnetotactic bacteria and also appears to be important
9 oth accessing the magnetosomes within intact magnetotactic bacteria and compare these to scanning ele
11 Most organisms are simply diamagnetic, while magnetotactic bacteria and migratory animals are among o
12 find that pseudoproteases are widespread in magnetotactic bacteria and that they have evolved indepe
14 heless, living organisms such as chitons and magnetotactic bacteria are able to form magnetite crysta
22 tite (Fe(3)O(4)) by two different species of magnetotactic bacteria at temperatures between 4 degrees
24 ains), observed or inferred to be present in magnetotactic bacteria but incompatible with a nonbiolog
25 be addressed in future investigations of how magnetotactic bacteria construct their magnetic compass
31 Intracellular magnetite crystal formation by magnetotactic bacteria has emerged as a powerful model f
33 ecial properties of these magnetic crystals, magnetotactic bacteria have been exploited for a variety
39 e-like magnetofossils, as well as nano-sized magnetotactic bacteria magnetosome chains, have been rep
40 ineralization of magnetite occurs rapidly in magnetotactic bacteria on a similar time scale to high-t
43 an the chain patterns observed in a cultured magnetotactic bacteria sample or magnetofossils in extra
46 RS-1, the only reported species of cultured magnetotactic bacteria that is outside of the alpha-Prot
51 terize the magneto-aerotactic behavior of 12 magnetotactic bacteria with various morphologies, phylog
52 emonstrate magnetic imaging of living cells (magnetotactic bacteria) under ambient laboratory conditi
54 ne clade, represented by the MamK protein of magnetotactic bacteria, is required for the subcellular
56 MamK, represents a clade, primarily found in magnetotactic bacteria, that is involved in the proper o
57 ge of the properties and function of MamK in magnetotactic bacteria, this study emphasizes the functi
59 he magnetic fields produced by the motion of magnetotactic bacteria, which have permanent dipole mome
73 equired to produce magnetite crystals in the magnetotactic bacterium Magnetospirillum magneticum AMB-
74 ueous precipitation and of production by the magnetotactic bacterium Magnetospirillum magneticum stra
75 d throughout the Alphaproteobacteria, in the magnetotactic bacterium Magnetospirillum magneticum stra
76 ed from Magnetospirillum magneticum AMB-1, a magnetotactic bacterium that synthesises single-magnetic
77 ve functional analysis of the MAI genes in a magnetotactic bacterium, Magnetospirillum magneticum AMB
80 us low temperature of the sediment where the magnetotactic cocci are present (always below 1 degrees
81 NA gene sequences from magnetically-enriched magnetotactic cocci clustered into three distinct groups
83 nomic data analysis of magnetically-enriched magnetotactic cocci revealed the presence of mam genes a
84 two of these sites contained large number of magnetotactic cocci that were studied using electron mic
86 aerotactic sensing and the determination of magnetotactic polarity, through the sensory pathway, Che
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