1978Journal of the Indian Society of Soil ScienceOpen access

Zinc-Phosphate Relationship in Submerged Rice in an Alluvial Soil

Kavindra Nath Tiwari, Abhilasha Pathak

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Abstract

In a green-house experiment with rice conducted to study the zinc-phosphate interrelationship in a submerged alluvial soil, P and Zn fertilization either alone or in combination significantly affected the yield and the concentration and uptake of P and Zn by rice crop. The concentration of Zn and P decreased significantly with increasing levels of P and Zn, respectively. The antagonistic effect of P on Zn was more pronounced than that of Zn on P. The effect of P×Zn interaction was significant on Zn availability in soil which indicates that the availability of applied Zn reduced in presence of P.

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In a green-house experiment with rice conducted to study the zinc-phosphate interrelationship in a submerged alluvial soil, P and Zn fertilization either alone or in combination significantly affected the yield and the concentration and uptake of P and Zn by rice crop. The concentration of Zn and P decreased significantly with increasing levels of P and Zn, respectively. The antagonistic effect of P on Zn was more pronounced than that of Zn on P. The effect of P×Zn interaction was significant on Zn availability in soil which indicates that the availability of applied Zn reduced in presence of P.

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Available abstract

In a green-house experiment with rice conducted to study the zinc-phosphate interrelationship in a submerged alluvial soil, P and Zn fertilization either alone or in combination significantly affected the yield and the concentration and uptake of P and Zn by rice crop. The concentration of Zn and P decreased significantly with increasing levels of P and Zn, respectively. The antagonistic effect of P on Zn was more pronounced than that of Zn on P. The effect of P×Zn interaction was significant on Zn availability in soil which indicates that the availability of applied Zn reduced in presence of P.

Key concepts: Zinc, Alluvium, Phosphate, Alluvial soils, Human fertilization, Animal science, Chemistry, Veterinary medicine

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