OpenAlex:
Artificial Intelligence in Plant Sciences
OpenAlex:
Artificial Intelligence in Plant Sciences
OpenAlex:
sRNA_seq_clean_thrips_leafdiscs_timeseries
OpenAlex:
sRNA_seq_clean_thrips_leafdiscs_timeseries
OpenAlex:
Ugandan healers near Rwenzori Mountains use 95 plants as medicine
OpenAlex:
Color phenotyping and genome-wide association studies of ...
OpenAlex:
FUNCTIONAL STUDIES ON SIEVE ELEMENT-SPECIFIC PROTEINS
OpenAlex:
Understanding the control of perpetual flowering and cont...
OpenAlex:
Artificial Intelligence in Plant Sciences
OpenAlex:
Artificial Intelligence in Plant Sciences
OpenAlex:
sRNA_seq_clean_thrips_leafdiscs_timeseries
OpenAlex:
sRNA_seq_clean_thrips_leafdiscs_timeseries
Magnesium oxide nanoparticles enhance tomato growth and magnesium uptake with reduced leaching in acidic soils.
PubMed · 2026-01-21
Tiny magnesium oxide particles (nanoparticles) outperform conventional magnesium fertilizers in acidic soils, keeping more magnesium in the root zone and delivering measurably higher tomato yields and fruit quality.
1
MgO nanoparticles increased exchangeable magnesium in the top 20 cm of soil by over 113% compared to baseline, outperforming both bulk MgO and MgSO4.
2
Magnesium leaching (migration flux) was significantly lower with nanoparticles than with the conventional soluble fertilizer MgSO4.
3
Plants treated with MgO nanoparticles showed improved chlorophyll content, photosynthetic efficiency, mineral accumulation, and superior fruit yield and quality.