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首页> 外文期刊>Plant and Soil >Magnesium mobility in soils as a challenge for soil and plant analysis, magnesium fertilization and root uptake under adverse growth conditions.
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Magnesium mobility in soils as a challenge for soil and plant analysis, magnesium fertilization and root uptake under adverse growth conditions.

机译:在不利的生长条件下,土壤中的镁迁移率成为土壤和植物分析,镁肥和根系吸收的挑战。

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摘要

Background: Due to its unique chemistry magnesium (Mg) is subject to various cycling processes in agricultural ecosystems. This high mobility of Mg needs to be considered for crop nutrition in sustainable agricultural systems. The Mg mobility in soils and plants and its consequences for crop nutrition are understood, but recent findings in crop Mg uptake, translocation and physiology particularly under adverse growth conditions give new insights into the importance of Mg in crop production. Scope: The aim of this review is to combine the knowledge on the origin and mobility of Mg in soils with the role of Mg in plant stress physiology and recent evidence on the principles of crop Mg uptake. The question is addressed whether the progress made in Mg research, particularly on the role of Mg in stress physiology, makes a revision of the development of Mg fertilization recommendations necessary. Conclusions: New insights into Mg uptake and utilization but particularly into the role of Mg in increasing crop tolerance to various stresses indicate changes in the crop Mg demand under adverse growth conditions. Future work should incorporate these findings in optimization of site-specific balanced fertilization programs particularly under stress conditions.
机译:背景:由于其独特的化学性质,镁(Mg)在农业生态系统中会经历各种循环过程。镁的这种高迁移率需要在可持续农业系统中用于作物营养。人们了解了镁在土壤和植物中的流动性及其对作物营养的影响,但有关作物镁吸收,转运和生理的最新发现,特别是在不利的生长条件下,为镁在作物生产中的重要性提供了新见解。范围:这篇综述的目的是将关于镁在土壤中的起源和迁移的知识与镁在植物胁迫生理中的作用以及关于作物吸收镁的原理的最新证据相结合。问题是镁的研究进展,特别是镁在应激生理中的作用,是否有必要修订镁施肥建议的发展。结论:关于镁吸收和利用的新见解,尤其是镁在增加作物对各种胁迫的耐受性中的作用表明,在不利的生长条件下,作物对镁的需求量发生了变化。未来的工作应将这些发现纳入优化特定地点的平衡施肥计划中,尤其是在压力条件下。

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