Precision-based augmented manure for pH-targeted soil acidification: improved phosphate-mediated cadmium immobilization and canola growth in calcareous soils

0Citations
Citations of this article
14Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Cadmium (Cd) contamination in agricultural soils poses a significant threat to sustainable food production, necessitating innovative remediation strategies. This study introduces knowledge-based augmented manure (AM), formulated through controlled microbial oxidation of sulfur to generate H+ ions for targeted soil acidification, optimizing phosphate (P)-mediated Cd immobilization. A greenhouse experiment was conducted using B. napus in non-spiked and Cd-spiked alkaline soils (0 and 60 mg kg−1 Cd), with two P fertilizer rates (0.5% and 1% DAP) applied in combination with either normal manure (NM) or AM. The amendment rates (P40 and P80) were determined based on an incubation trial to achieve specific soil pH targets (7.5 and 6.5) while preventing over-acidification. Results showed that Cd stress severely impaired plant growth and triggered antioxidant enzyme activity. However, AM + P80 significantly improved plant physiological and agronomic traits, leading to a 90.9% reduction in Cd bioaccumulation, an 83% decrease in the Cd bioconcentration factor, and a 78.8% decline in the Cd harvest index. Additionally, the AM + P80 treatment reduced the health risk index by 83.2%, demonstrating its potential to enhance soil health, suppress Cd uptake, and safeguard food safety. These findings highlight AM as a promising, precision-based soil amendment that regulates pH, optimizes P-Cd interactions, and improves plant resilience in Cd-contaminated calcareous soils.

Cite

CITATION STYLE

APA

Naveed, M., Abid, I., Munir, M., Ghafoor, A., Alqahtani, N., Islam, S., … Mustafa, A. (2025). Precision-based augmented manure for pH-targeted soil acidification: improved phosphate-mediated cadmium immobilization and canola growth in calcareous soils. Chemical and Biological Technologies in Agriculture, 12(1). https://doi.org/10.1186/s40538-025-00883-y

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free