Published 2009 | Version v1
Journal article

Nitrogen Recovered By Sorghum Plants As Affected By Saline Irrigation Water And Organic/Inorganic Resources Using 15N Technique

  • 1. Soil Department, Faculty of Agriculture, Azhar University, Nasr City, Cairo (Egypt)
  • 2. Atomic Energy Authority, Nuclear Research Centre, Soil and Water Research Department Inshas (Egypt)

Description

A pot experiment was conducted in the green house of Soil and Water Department, Nuclear Research Centre, Atomic Energy Authority, Egypt, to follow up the effect of saline irrigation water, inorganic and organic fertilizers on sorghum growth and N fractions that recovered by plant organs. Two types of artificial water salinity were used; one has 3 dS m-1 salinity level with 4 and 8 SAR and the second one has 3 and 6 dS m-1 salinity levels with 6 SAR . Leucenae residue and chicken manure were applied as organic sources at rate of 2% v/v. Sorghum was fertilized with recommended doses of super phosphate and potassium sulfate at rate of 150 kg P and 50 kg K per feddan, respectively. Labelled ammonium sulfate with 5% 15N atom excess was applied to sorghum at rate of 100 kg N fed-1. Dry matter yield (stalks and roots) was negatively affected by increasing water salinity levels or SAR ratios. Similar trend was recorded with N uptake by either stalks or roots of sorghum plants. On the other hand, both the dry matter yield and N uptake were positively and significantly affected by incorporation of organic sources in comparison to the untreated control. In this regard, the dry matter yield and N uptake induced by incorporation of chicken manure was superior over those recorded with leucenae residues. It means, in general, that the incorporation of organic sources into the soil may maximize the plant ability to combat the hazards effects caused by irrigation with saline water. Nitrogen derived from fertilizer (% Ndff), soil (% Ndfs) and organic resources (% Ndfr) showed frequent trends as affected by water salinity and organic resources but in most cases, severe reduction of these values was recorded when plants were irrigated with saline water. In the same time, plants were more dependent on N derived from organic sources than those derived from mineral fertilizer. Superiority of one organic source over the other was related to water salinity levels and SAR ratios applied in the present study. Fertilizer use efficiency and 15N recovery were negatively affected by increasing water salinity levels and changes of SAR ratios. Fertilizer N remained in soil after harvest was reduced in most cases when sorghum plants were irrigated with different water salinity levels. Similar effect was noticed with incorporation of organic resources comparing to those only fertilized with mineral fertilizer.

Additional details

Publishing Information

Journal Title
Isotope and Radiation Research
Journal Volume
41
Journal Issue
4s1
Journal Page Range
p. 1293-1312
ISSN
0021-1907
CODEN
ISRRAC