Compared to MgSO4, the Use of Magnesium Nanofertilizer Alleviates Potassium-Magnesium Antagonism in Tomato Roots

被引:0
|
作者
Chen, Wenhui [1 ]
Hu, Ziyi [2 ]
Liu, Dunyi [1 ,2 ]
机构
[1] Southwest Univ, Acad Agr Sci, Coll Resources & Environm, Chongqing 400716, Peoples R China
[2] Southwest Univ, Interdisciplinary Res Ctr Agr Green Dev Yangtze Ri, Chongqing 400716, Peoples R China
来源
AGRICULTURE-BASEL | 2025年 / 15卷 / 04期
关键词
nanofertilizer; noninvasive microtest technology; magnesium sulfate; hydroponic growth; <italic>Solanum lycopersicum</italic> L; GROWTH; NANOPARTICLES; AVAILABILITY; DEFICIENCY; NUTRIENT; FERTILIZERS; CALCIUM; PLANTS; YIELD; RATIO;
D O I
10.3390/agriculture15040368
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Magnesium (Mg) deficiency is increasingly recognized as a critical factor limiting crop production, especially in soils with high potassium (K) application. This study investigated the effects of different Mg fertilizers (MgSO4 and Mg(OH)2-based nanofertilizer) on K-Mg interactions in hydroponically grown tomato seedlings, with varying K (0.7, 7, and 21 mM) and Mg (0.1 and 1 mM) supply concentrations. The results observed with MgSO4 application showed that high K levels (21 mM) significantly antagonized Mg uptake, reducing total Mg content and negatively affecting plant growth and root-to-shoot ratios at both Mg supply levels. Specifically, the K3 (21 mM) treatment reduced total biomass by 45.35% compared to the K2 (7 mM) treatment. Moreover, a high K supply combined with low Mg intake exacerbated Mg deficiency. The optimal K:Mg ratio for growth was found to be 7:1. K-Mg antagonism occurred primarily during root uptake, with excessive K leading to increased Mg2+ efflux in the root elongation zone. Notably, the application of Mg(OH)2 nanoparticles alleviated K-induced Mg deficiency, as indicated by the lack of a significant correlation between K supply and relative Mg concentrations in plants treated with nano-Mg across K:Mg ratios ranging from 7:0.1 to 21:0.1. However, Mg concentration decreased by 17.54% and 35.63% in shoots and by 27.72% and 37.08% in roots for K2 and K3, respectively, in plants treated with MgSO4. It is concluded that optimizing K:Mg ratios and using Mg-based nanofertilizers can improve K and Mg utilization in high-K soils.
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页数:17
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