4.7 Article

Effect of phosphorus sources on growth and cadmium accumulation in wheat under different soil moisture levels

期刊

ENVIRONMENTAL POLLUTION
卷 311, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2022.119977

关键词

Diammonium phosphate; Single super phosphate; Nitrophos; Cadmium; Antioxidant enzymes

资金

  1. Government College University Faisalabad
  2. National Natural Science Foundation of China [51974313]
  3. key project of Jiangsu Key Laboratory of Coal -based Greenhouse Gas Control and Utilization [2020ZDZZ03]

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This study investigated the impact of different phosphorus sources on cadmium accumulation in wheat under water limited stress. The results showed that phosphorus supply increased wheat growth and decreased cadmium concentrations. Diammonium phosphate had the greatest effect on growth and yield.
Both cadmium (Cd) toxicity and water limited stress in crop plants are serious concerns worldwide while little is known about the impact of various phosphorus (P) sources on Cd accumulation in cereals especially under water limited stress. A study was conducted to explore the efficiency of three frequently available P fertilizers on Cd accumulation in wheat under different soil moisture levels. Three different P sources including diammonium phosphate (DAP), single super phosphate (SSP), and nitrophos (NP) were applied in the soil with three levels (0, 50 and 100 mg/kg). The drought stress was applied to half treatments during the latter growth stages of wheat and plants were harvested at maturity. The results demonstrated that water-limited stress decreased the growth and yield of plants than respective treatments without water stress. P supply increased the growth of wheat irrespective of water-limited stress. The effect on growth and yield varied with the sources and levels of P and maximum effects was observed in DAP treatment (100 mg/kg). The P amendments enhanced the leaf photo-synthesis and activities of SOD, POD, CAT and decreased the leaf oxidative burst. Water limited stress enhanced the Cd concentrations in shoots, roots, and grains whereas P amendments minimized the Cd concentrations and enhanced the P concentrations in these parts of plants. The results obtained demonstrated that P supply in the form of DAP might be effective in minimization of Cd in grains and can be used for safe cultivation of metal -contaminated soils.

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