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Magnetic fields: how is plant growth and development impacted?

机译:磁场:如何影响植物的生长发育?

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This review provides detailed insight on the effects of magnetic fields on germination, growth, development, and yield of plants focusing on ex vitro growth and development and discussing the possible physiological and biochemical responses. The MFs considered in this review range from the nanoTesla (nT) to geomagnetic levels, up to very strong MFs greater than 15 Tesla (T) and also super-weak MFs (near 0 T). The theoretical bases of the action of MFs on plant growth, which are complex, are not discussed here and thus far, there is limited mathematical background about the action of MFs on plant growth. MFs can positively influence the morphogenesis of several plants which allows them to be used in practical situations. MFs have thus far been shown to modify seed germination and affect seedling growth and development in a wide range of plants, including field, fodder, and industrial crops; cereals and pseudo-cereals; grasses; herbs and medicinal plants; horticultural crops (vegetables, fruits, ornamentals); trees; and model crops. This is important since MFs may constitute a non-residual and non-toxic stimulus. In addition to presenting and summarizing the effects of MFs on plant growth and development, we also provide possible physiological and biochemical explanations for these responses including stress-related responses of plants, explanations based on dia-, para-, and ferromagnetism, oriented movements of substances, and cellular and molecular changes.
机译:这篇综述提供了关于磁场对植物发芽,生长,发育和产量的影响的详细见解,重点是离体生长和发育,并讨论了可能的生理和生化反应。这次审查中考虑的MF范围从nanoTesla(nT)到地磁水平,直至大于15特斯拉(T)的超强MF以及超弱MF(接近0 T)。 MFs对植物生长的作用的理论基础很复杂,这里不做讨论,因此到目前为止,关于MFs对植物生长的作用的数学背景有限。 MF可以积极影响几种植物的形态发生,使其可以在实际情况下使用。迄今为止,MF已被证明可以改变种子发芽,并影响大田,饲料和工业作物等多种植物的幼苗生长。谷物和伪谷物;草草药和药用植物;园艺作物(蔬菜,水果,观赏植物);树木;和模型作物。这很重要,因为MF可能构成非残留且无毒的刺激。除了介绍和总结MF对植物生长和发育的影响外,我们还为这些响应提供了可能的生理和生化解释,包括植物的压力相关响应,基于径向,对位和铁磁性的解释,铁的定向运动。物质以及细胞和分子的变化。

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