JOURNAL ARTICLE

Phosphorus-induced zinc deficiency in wheat pot-grown on noncalcareous and calcareous soils of different properties

Abstract

High levels of phosphorus (P) often induce zinc (Zn) deficiency in plants grown on Zn-poor soils. We investigated P-induced Zn deficiency in durum wheat (Triticum durum L. ‘Carpio’) grown on 16 noncalcareous and 31 calcareous soils differing in levels of available (Olsen) P and available (diethylenetriaminepentaacetic acid (DTPA)-extractable) Zn using micropots. A completely randomized factorial design with two levels of P (0 and 40 mg P kg−1 soil) and Zn (0 and 3 mg Zn kg−1 soil), i.e. four treatments (‘control’, + P, + Zn, and + PZn), were used. Grain yield of control plants depended mainly on the Olsen P level. Phosphorus had a negative effect on yield in 6 soils with Olsen P/ZnDTPA > 25, and Zn a positive one in 5 soils with Olsen P/ZnDTPA > 50; and the + PZn treatment generally resulted in the highest yield. Grain Zn concentration of control plants was negatively correlated with growth and Olsen P. Calcareous soils were less sensitive to P-induced Zn deficiency than noncalcareous soils because phosphate is sorbed by calcite rather than being co-adsorbed with Zn on the Fe oxides. Co-application of P and Zn to soil at low and application of Zn at high Olsen P ensured both maximum yield and grain Zn bioavailability.

Keywords:
Calcareous soils Soil water Calcareous Zinc Phosphorus Grain yield Calcite Zinc deficiency (plant disorder)

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Topics

Plant Micronutrient Interactions and Effects
Life Sciences →  Agricultural and Biological Sciences →  Plant Science
Plant nutrient uptake and metabolism
Life Sciences →  Agricultural and Biological Sciences →  Plant Science
Plant Stress Responses and Tolerance
Life Sciences →  Agricultural and Biological Sciences →  Plant Science

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