Ye Li, Jie Hou, Zhaolin Du, Mengqi Liu, Hongan Chen, Xinyi Wang, Guofei Liu, Yajun Wang, Yanpo Yao, Lin Zhao, Yi An, Peizhe Sun
Soil cadmium (Cd) contamination threatens food security in China's rice-growing regions. Current risk assessment mainly relies on physicochemical indicators, overlooking microbial ecological responses. Here, 40 soil samples from a Cd-contaminated paddy field in Xiangtan, China, were analyzed for soil properties, Cd concentration, and bacterial communities using 16S rRNA sequencing. An eight-indicator minimum data set (MDS) was identified through principal component and correlation analyses to develop a soil Cd risk index (SCRI), which was further validated using 71 regional field samples with rice grain Cd and yield data. The MDS explained 75.33% of the total variance, and SCRI showed strong agreement with the full data set (R2 = 0.81). SCRI thresholds identified high- (≤0.28) and low-risk (≥0.30) areas, with grain Cd exceedance rates of 94.12% and 41.38%, respectively. SCRI provides a practical framework for Cd risk assessment, cultivar selection, and sustainable management of contaminated paddy soils.