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Article detail · 2015

Role of magnesium fertilisers in agriculture plant soil continuum

Journal

Crop and Pasture Science

ISSN 1836-0947

YÖKSİS OpenAlex Open access · hybrid SJR Q1 JCR Q1 Citations 355 Top 10% Percentile 98.4% FWCI 12.35
Year
2015
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue Crop and Pasture Science
  • Catalog match (ISSN) Crop and Pasture Science
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex · English

In this review, we summarise factors contributing to plant availability of magnesium (Mg) in soils, the role of Mg in plant physiological processes related to yield formation and abiotic stress tolerance, and soil and fertiliser parameters related to Mg leaching in fertilised soils. Mg is a common constituent in many minerals, comprising 2% of Earth’s crust; however, most soil Mg (90–98%) is incorporated in the crystal lattice structure of minerals and thus not directly available for plant uptake. Plants absorb Mg from the soil solution, which is slowly replenished by soil reserves. Duration and intensity of weathering, soil moisture, soil pH, and root–microbial activity in soil are key factors that determine plant-available Mg release from soils. On the other hand, the amount of Mg released from soil minerals is generally small compared with the amounts needed to sustain high crop yield and quality. Thus, in many agro-ecosystems, application of Mg fertilisers is crucial. Magnesium is involved in many physiological and biochemical processes; it is an essential element for plant growth and development and plays a key role in plant defence mechanisms in abiotic stress situations. An early effect of Mg deficiency in plants is the disturbed partitioning of assimilates between roots and shoots because the supply of sink organs with photosynthetic products is impaired, and sugars accumulate in source leaves. Thus, optimal supply of Mg is required to improve crop tolerance to various stresses and to increase yield and quality parameters of harvested products. Unlike other cations, Mg is very mobile in soils because it is less bound to the soil charges. Therefore, Mg losses by leaching might occur in sandy soils with high water conductivity. Leaching of Mg in soils when applied with various water-soluble fertilisers may also vary depending on the fertiliser’s chemical composition, granule size, and effect on soil pH and cation balance, as we discuss in detail.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

355 citations

OpenAlex cited_by_count (cache / database)

23 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. Synergistic and antagonistic interactions between potassium and magnesium in higher plants 2020 Citations 338 · OpenAlex
  2. Functions of macronutrients 2023 Citations 225 · OpenAlex
  3. Magnesium deficiency decreases biomass water use efficiency and increases leaf water use efficiency and oxidative stress in barley plants 2016 Citations 103 · OpenAlex
  4. Magnesium Deficiency Reduced the Yield and Seed Germination in Wax Gourd by Affecting the Carbohydrate Translocation 2020 Citations 63 · OpenAlex
  5. Effect of magnesium fertilization on seed yield, seed quality, carbon assimilation and nutrient uptake of rapeseed plants 2021 Citations 62 · OpenAlex
  6. Potassium-magnesium imbalance causes detrimental effects on growth, starch allocation and Rubisco activity in sugarcane plants 2022 Citations 30 · OpenAlex
  7. Elevated carbon dioxide exacerbates adverse effects of Mg deficiency in durum wheat 2017 Citations 24 · OpenAlex
  8. Effects of Newly Isolated Rhizobacteria on the Physiological Characteristics and Nutrient Uptake of Watermelon Plants Grafted onto Different Rootstocks Under Water Stress 2024 Citations 11 · OpenAlex
  9. Effects of Newly Isolated Rhizobacteria on the Physiological Characteristics and Nutrient Uptake of Watermelon Plants Grafted onto Different Rootstocks Under Water Stress 2024 Citations 11 · OpenAlex
  10. Effects of Newly Isolated Rhizobacteria on the Physiological Characteristics and Nutrient Uptake of Watermelon Plants Grafted onto Different Rootstocks Under Water Stress 2024 Citations 11 · OpenAlex

Authors

  1. MEHMET ŞENBAYRAM HARRAN ÜNİVERSİTESİ
  2. Andreas Gransee
  3. Wahle Verena
  4. Thiel Heike