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Anomalous Magnetic Orientations of Magnetosome Chains in a Magnetotactic Bacterium: Magnetovibrio blakemorei Strain MV-1

机译:趋磁细菌中的磁小体链的异常磁取向:Magnetovibrio blakemorei菌株MV-1

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摘要

There is a good deal of published evidence that indicates that all magnetosomes within a single cell of a magnetotactic bacterium are magnetically oriented in the same direction so that they form a single magnetic dipole believed to assist navigation of the cell to optimal environments for their growth and survival. Some cells of the cultured magnetotactic bacterium Magnetovibrio blakemorei strain MV-1 are known to have relatively wide gaps between groups of magnetosomes that do not seem to interfere with the larger, overall linear arrangement of the magnetosomes along the long axis of the cell. We determined the magnetic orientation of the magnetosomes in individual cells of this bacterium using Fe 2p X-ray magnetic circular dichroism (XMCD) spectra measured with scanning transmission X-ray microscopy (STXM). We observed a significant number of cases in which there are sub-chains in a single cell, with spatial gaps between them, in which one or more sub-chains are magnetically polarized opposite to other sub-chains in the same cell. These occur with an estimated frequency of 4.0±0.2%, based on a sample size of 150 cells. We propose possible explanations for these anomalous cases which shed insight into the mechanisms of chain formation and magnetic alignment.
机译:有大量已发表的证据表明,趋磁细菌单个细胞内的所有磁小体均在同一方向上磁取向,因此它们形成单个磁偶极子,据信该磁偶极子有助于细胞导航至最佳环境以使其生长和生长。生存。众所周知,培养的趋磁细菌Magnetovibrio blakemorei菌株MV-1的某些细胞在磁小体组之间具有相对较宽的间隙,这些间隙似乎并不干扰沿细胞长轴的较大的整体线性排列。我们使用通过扫描透射X射线显微镜(STXM)测量的Fe 2p X射线磁性圆二色性(XMCD)光谱确定了该细菌单个细胞中磁小体的磁取向。我们观察到大量情况,其中单个细胞中存在子链,它们之间存在空间间隙,其中一个或多个子链与同一细胞中的其他子链相反地磁极化。基于150个细胞的样本量,这些事件的发生频率估计为4.0±0.2%。我们对这些异常情况提出了可能的解释,从而使人们对链形成和磁对准的机理有了更深入的了解。

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