Meng Zhao , Yifan Li , Congping Li , Xuexia Wang , Bing Cao , Jiajia Zhang , Jiachen Wang , Guoyuan Zou , Yanhua Chen
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引用次数: 0
Abstract
Agricultural production uses different types of fertilisation treatments, typically employing the combined application of organic fertiliser (OF) or organic–inorganic fertiliser (OIF) to improve soil quality. When coupled with cadmium (Cd), microplastics (MPs) affect plant growth and Cd accumulation in soils treated with different fertilisers. This study systematically examined the effects of polyurethane (PU) MPs coupled with Cd on the growth characteristics, root metabolite characteristics, rhizosphere bacterial community structure, and Cd bioavailability of maize under different long-term fertilisation treatments and soil types (red/cinnamon soil). The combined effects of PU MPs and Cd on maize growth differed across fertilisation treatments. Under OF, maize plants accumulated more Cd than under OIF. The accumulation of Cd in maize plants in red soil was twice that in cinnamon soil. Under OF, PU MPs promoted Cd activation by decreasing the soil pH, while root metabolites promoted Cd adsorption sites by synthesising specific amino acids, degrading aromatic compounds, and synthesising pantothenic acid and coenzyme A. Under OF, PU MPs can lower the soil pH to promote the activation of cadmium, while root metabolites promote root growth and increase cadmium adsorption sites by synthesizing specific amino acids, degrading aromatic compounds, and synthesizing pantothenic acid and coenzyme A, hereby promoting root Cd absorption. Under OIF, PU MPs act by influencing the biosynthesis of amino acids in root metabolites, enriching energy metabolism pathways, promoting the transport and translocation of mineral nutrients, thereby amplifying the "toxic effects" of Cd. This study provides new insights into the risk assessment of PU MPs and Cd coupling under different fertilisation treatments, and suggests that the prevention and control of combined PU MPs and Cd pollution in red soil under OF treatment should receive more attention in the future.
农业生产采用不同类型的施肥方法,通常是结合施用有机肥(OF)或有机-无机肥料(OIF)来改善土壤质量。微塑料(MPs)与镉(Cd)结合使用时,会影响植物的生长和不同肥料处理土壤中的镉积累。本研究系统地考察了在不同的长期施肥处理和土壤类型(红壤/褐土)下,聚氨酯(PU)微塑料与镉的结合对玉米的生长特性、根系代谢物特性、根瘤菌群落结构和镉生物利用率的影响。不同施肥处理下,PU MPs 和镉对玉米生长的综合影响不同。在 OF 条件下,玉米植株比在 OIF 条件下积累了更多的镉。红壤中玉米植株的镉累积量是桂皮土壤的两倍。在 OF 条件下,PU MPs 通过降低土壤 pH 值促进镉的活化,而根系代谢物则通过合成特定氨基酸、降解芳香族化合物、合成泛酸和辅酶 A 促进镉吸附位点的增加,从而促进根系对镉的吸收。在 OIF 条件下,PU MPs 通过影响根系代谢产物中氨基酸的生物合成、丰富能量代谢途径、促进矿质养分的运输和转运发挥作用,从而放大镉的 "毒性效应"。本研究为不同施肥处理下 PU MPs 与镉耦合的风险评估提供了新的见解,表明 OF 处理下红壤中 PU MPs 与镉联合污染的防控在未来应得到更多关注。
期刊介绍:
The Journal of Hazardous Materials serves as a global platform for promoting cutting-edge research in the field of Environmental Science and Engineering. Our publication features a wide range of articles, including full-length research papers, review articles, and perspectives, with the aim of enhancing our understanding of the dangers and risks associated with various materials concerning public health and the environment. It is important to note that the term "environmental contaminants" refers specifically to substances that pose hazardous effects through contamination, while excluding those that do not have such impacts on the environment or human health. Moreover, we emphasize the distinction between wastes and hazardous materials in order to provide further clarity on the scope of the journal. We have a keen interest in exploring specific compounds and microbial agents that have adverse effects on the environment.