AI Article Synopsis

  • Cadmium (Cd) contamination in rice has raised concerns, prompting research into reducing its accumulation in rice grains.
  • A pot experiment assessed the combined effects of sulfur application and various water management strategies on Cd levels in rice.
  • Results showed that higher sulfur application (above 30 mg/kg) significantly decreased Cd concentrations in brown rice, although the impact on Cd levels in grains under different water regimes was not as significant.

Article Abstract

Cadmium (Cd) contamination in paddy soils and the related pollution risk of rice grain have received increasing attention. Agronomic measures, such as the application of sulfur and changes in water regimes, were reported to mitigate the accumulation of Cd in rice. However, there is limited information on the combined effects of sulfur application and water regimes. Therefore, a pot experiment was conducted to investigate the effects of two sulfur forms, three water regimes and multiple sulfur application rates on Cd accumulation in rice. The sulfur was applied as SO (S, replacing the traditional fertilizers by SO-containing fertilizers), and element S (S) was applied at 0, 10, 20, 30 and 40 mg S kg soil. The water regimes were continuous flooding (F), flooding-moist alternation (FM), and moist irrigation (M), for a total of 30 treatments. The results indicated that application of S exceeding 30 mg S kg significantly reduced the Cd concentrations in brown rice by 31.1-56.3%, and the Cd concentrations decreased with increasing amount of irrigation water. Similar reductions in Cd concentrations in rice shoots and rice straw collected at tillering and maturity stages were observed after application of S. However, the effect of S application on Cd accumulation in grain was not significant under different water regimes. Furthermore, this study found that application of both S and S inhibited the transfer of Cd from rice roots to shoots in most cases. These findings indicate that replacing traditional fertilizers with SO-containing fertilizers, especially combined with increased irrigation, could be a potential approach to mitigate Cd accumulation in rice growing in Cd-contaminated acidic paddy soils.

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http://dx.doi.org/10.1016/j.ecoenv.2020.110200DOI Listing

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