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Updated: Jan 18, 2026

Microplot Design and Plant and Soil Sample Preparation for 15Nitrogen Analysis
Published on: May 10, 2020
Nitrogenous fertilizers affect Cd accumulation in the soil-mulberry-silkworm system: implications for safe
Yongbing Jiang1,2, Xiyun Yang3, Shimeng Jiang2
1School of Metallurgy and Environment, Central South University, Changsha, 410083, PR China.
Abstract:
Developing the sericulture industry is an important way to safely utilize cadmium (Cd) heavily contaminated farmland, and nitrogenous fertilizer (N fertilizer) is crucial for the quality of mulberry leaves and the yield of silkworm cocoons. This study evaluated the influences of N fertilizers (NH4Cl, NH4HCO3, CO(NH2)2, (NH4)2SO4) on the accumulation of Cd in the soil-mulberry-silkworm system, the physiological responses of Bombyx mori L. (silkworm), and the yield and quality of cocoons. The results showed that the four N fertilizers first decreased the ingestion rate (IR) and digestion rate (DR) and then increased them slowly. The maximum concentration of Cd in silkworm excrement (SE) was 0.77 mg/kg And the concentration of Cd in SE is 4.1 ~ 6.5 times as high as in the silkworm body. All the bioconcentration factors (BCFs) of mulberry organs for Cd were lower than 1, but the translocation factors (TFs) from larva to SE were above 1. The NH4Cl and (NH4)2SO4 increased the BCFs of Cd in root, but CO(NH2)2 and NH4HCO3 decreased them. CO(NH2)2 and NH4HCO3 increased the survival rates of larva pupa, but NH4Cl and (NH4)2SO4 significantly reduced them. The four N fertilizers all increased the ratios of cocoon shells, and NH4HCO3 was the highest, followed by CO(NH2)2. The whole cocoon weight of CO(NH2)2 and NH4HCO3 treatments were 1.34 And 1.42 g, respectively, significantly greater than that of the control treatment. NH4HCO3 decreased the percentage content of Cd accumulation in silkworms and enhanced it in SE. These results indicated that planting mulberry and raising silkworm with reasonable use of NH4HCO3 and CO(NH2)2 contributes to the safe utilization of acidic paddy fields heavily polluted by Cd.
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