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Reduction of geomagnetic field (GMF) to near null magnetic field (NNMF) affects Arabidopsis thaliana root mineral nutrition

机译:地磁场(GMF)降低至接近零磁场(NNMF)影响拟南芥根矿物质营养

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The Earth magnetic field (or geomagnetic field, GMF) is a natural component of our planet and variations of the GMF are perceived by plants with a still uncharacterized magnetoreceptor. The purpose of this work was to assess the effect of near null magnetic field (NNMF, ∼40 nT) onArabidopsis thalianaCol0 root ion modulation. A time-course (from 10 min to 96 h) exposure of Arabidopsis to NNMF was compared to GMF and the content of some cations (NH4+, K+, Ca2+and Mg2+) and anions (Cl−, SO4=, NO3−and PO4=) was evaluated by capillary electrophoresis. The expression of several cation and anion channel- and transporter-related genes was assessed by gene microarray. A few minutes after exposure to NNMF, Arabidopsis roots responded with a significant change in the content and gene expression of all nutrient ions under study, indicating the presence of a plant magnetoreceptor that responds immediately to MF variations by modulating channels, transporters and genes involved in mineral nutrition. The response of Arabidopsis to reduced MF was a general reduction of plant ion uptake and transport. Our data suggest the importance to understand the nature and function of the plant magnetoreceptor for future space programs involving plant growth in environments with a reduced MF.
机译:地磁场(或地磁场,GMF)是我们星球的自然组成部分,带有仍未表征的磁感受器的植物可以感知到GMF的变化。这项工作的目的是评估接近零磁场(NNMF,〜40 nT)对拟南芥Col0根离子调制的影响。将拟南芥在NNMF上随时间变化的过程(从10分钟至96小时)与GMF进行了比较,并比较了某些阳离子(NH4 +,K +,Ca2 +和Mg2 +)和阴离子(Cl-,SO4 =,NO3-和PO4)的含量通过毛细管电泳评估=)。通过基因芯片评估了几种与阳离子和阴离子通道和转运蛋白相关的基因的表达。暴露于NNMF几分钟后,拟南芥根对所有营养离子的含量和基因表达均发生了显着变化,表明存在一种植物磁感受器,该磁感应器通过调节参与其中的通道,转运蛋白和基因对MF变化立即做出反应。矿物质营养。拟南芥对降低的MF的反应是植物离子吸收和运输的普遍降低。我们的数据表明,对于未来的太空计划(涉及在MF降低的环境中生长植物),了解植物磁感受器的性质和功能的重要性。

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