Cause
- Very acid soils (pH < 4.5)
- Sandy soils with low Mg reserves
- Heavy K fertilization without Mg balance (K:Mg ratio > 3:1 in soil)
- Coastal lowland and peat soils
- Erosion on hilly blocks
Effect
Field signs:- Older leaves in the lower whorl yellow first (Mg is mobile)
- Yellowing progresses to red-purple leaf margins (classic signature)
- Interveinal chlorosis: yellow between veins, veins stay green
- Newer whorls stay normal until deficiency is severe
- Premature leaf drop in extreme cases
Leaf-tissue thresholds
Sample Whorl 2 leaves.
Also check K:Mg ratio in soil; should be 2:1 to 3:1.
Satellite signals
Mg deficiency is patchy across the canopy (lower whorl only) and does not have a strong satellite signature until severe. Rely on ground scouting and tissue analysis.Action
1
Confirm with tissue and soil test
Whorl 2 Mg < 0.20% and soil Mg < 0.5 me/100g confirms deficiency.
2
Apply kieserite or magnesium sulphate
Kieserite (27% MgO, 22% S) is the standard fast-acting Mg source:
- Immature: 100 to 200 g kieserite/tree/year
- Mature: 200 to 300 g kieserite/tree/year
3
Long-term correction with dolomite
Ground magnesium limestone (dolomite, ~20% MgO, ~30% CaO) raises pH and supplies Mg. Apply 500 kg to 1 t/ha every 3 to 5 years on acid soils.
4
Rebalance K:Mg
If heavy KCl programs are causing induced Mg deficiency, split K applications more finely and interleave with Mg.
5
Follow up
Re-sample Whorl 2 leaves 4 months after correction. New whorls should be normal green; older leaves may not recover.