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Sudden motility reversal indicates sensing of magnetic field gradients in Magnetospirillum magneticum AMB-1 strain

机译:突然的运动力逆转表明对磁螺线菌AMB-1菌株中的磁场梯度的感知

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摘要

Many motile unicellular organisms have evolved specialized behaviors for detecting and responding to environmental cues such as chemical gradients (chemotaxis) and oxygen gradients (aerotaxis). Magnetotaxis is found in magnetotactic bacteria and it is defined as the passive alignment of these cells to the geomagnetic field along with active swimming. Herein we show that Magnetospirillum magneticum (AMB-1) show a unique set of responses that indicates they sense and respond not only to the direction of magnetic fields by aligning and swimming, but also to changes in the magnetic field or magnetic field gradients. We present data showing that AMB-1 cells exhibit sudden motility reversals when we impose them to local magnetic field gradients. Our system employs permalloy (Ni80Fe20) islands to curve and diverge the magnetic field lines emanating from our custom-designed Helmholtz coils in the vicinity of the islands (creating a drop in the field across the islands). The three distinct movements we have observed as they approach the permalloy islands are: unidirectional, single reverse and double reverse. Our findings indicate that these reverse movements occur in response to magnetic field gradients. In addition, using a permanent magnet we found further evidence that supports this claim. Motile AMB-1 cells swim away from the north and south poles of a permanent magnet when the magnet is positioned less than ∼30 mm from the droplet of cells. All together, these results indicate previously unknown response capabilities arising from the magnetic sensing systems of AMB-1 cells. These responses could enable them to cope with magnetic disturbances that could in turn potentially inhibit their efficient search for nutrients.
机译:许多运动的单细胞生物已经进化出专门的行为,以检测和响应环境线索,例如化学梯度(趋化性)和氧梯度(易流性)。趋磁性存在于趋磁细菌中,定义为这些细胞与主动游泳一起与地磁场的被动对准。本文中,我们显示Magnetospirillum magneticum(AMB-1)显示了一组独特的响应,表明它们不仅可以感应并响应对齐和游动的磁场方向,还可以感应和响应磁场或磁场梯度的变化。我们提供的数据表明,当我们将AMB-1细胞施加于局部磁场梯度时,它们会突然发生运动力反转。我们的系统使用坡莫合金(Ni80Fe20)岛来弯曲和发散由我们在岛附近定制的亥姆霍兹线圈产生的磁场线(在整个岛上产生磁场下降)。我们在接近坡莫合金岛时观察到的三个不同的运动是:单向运动,单向运动和双向运动。我们的发现表明,这些反向运动是响应磁场梯度而发生的。此外,使用永久磁铁,我们发现了进一步的证据支持这一说法。当磁铁的位置离细胞液滴约30毫米以下时,可动AMB-1细胞就会游离永久磁铁的北极和南极。总之,这些结果表明由AMB-1细胞的磁传感系统引起的先前未知的响应能力。这些反应使他们能够应对电磁干扰,而电磁干扰又可能会抑制他们对营养物质的有效搜索。

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