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首页> 外文期刊>European Biophysics Journal >The swimming polarity of multicellular magnetotactic prokaryotes can change during an isolation process employing magnets: evidence of a relation between swimming polarity and magnetic moment intensity
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The swimming polarity of multicellular magnetotactic prokaryotes can change during an isolation process employing magnets: evidence of a relation between swimming polarity and magnetic moment intensity

机译:多细胞磁通科的游泳极性在采用磁铁的隔离过程中可以改变:游泳极性与磁矩强度之间的关系

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摘要

Magnetotactic microorganisms are characterized by swimming in the direction of an applied magnetic field. In nature, two types of swimming polarity have been observed: north-seeking microorganisms that swim in the same direction as the magnetic field, and south-seeking microorganisms that swim in the opposite direction. The present work studies the reversal in the swimming polarity of the multicellular magnetotactic prokaryote Candidatus Magnetoglobus multicellularis following an isolation process using high magnetic fields from magnets. The proportion of north- and south-seeking organisms was counted as a function of the magnetic field intensity used during the isolation of the organisms from sediment. It was observed that the proportion of north-seeking organisms increased when the magnetic field was increased. The magnetic moment for north- and south-seeking populations was estimated using the U-turn method. The average magnetic moment was higher for north- than south-seeking organisms. The results suggest that the reversal of swimming polarity must occur during the isolation process in the presence of high magnetic fields and magnetic field gradients. It is shown for the first time that the swimming polarity reversal depends on the magnetic moment intensity of multicellular magnetotactic prokaryotes, and new studies must be undertaken to understand the role of magnetic moment polarity and oxygen gradients in determination of swimming polarity.
机译:磁通科微生物的特征在于在施加磁场的方向上游泳。本质上,已经观察到两种游泳极性:朝鲜微生物在与磁场相同的方向游泳,寻求朝着相反方向游泳的朝鲜微生物。在使用来自磁体的高磁场的隔离过程之后,本作研究在多细胞磁通原核生andidatus磁性球杆菌的游泳极性中的逆转。北寻求生物的比例被计算为在从沉积物中分离生物期间使用的磁场强度的函数。观察到磁场增加时,朝鲜生物的比例增加。使用U形转弯法估算了北方和寻找人口的磁矩。北方的平均磁矩比寻求朝鲜生物更高。结果表明,在高磁场和磁场梯度存在下,在隔离过程中必须发生游泳极性的逆转。首次示出了游泳极性逆转的第一次取决于多细胞磁通科原核生物的磁矩强度,并且必须进行新的研究,以了解磁矩极性和氧梯度在测定游泳极性时的作用。

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