Pinto-Poblete Andrés, Retamal-Salgado Jorge, López María Dolores, Zapata Nelson, Sierra-Almeida Angela, Schoebitz Mauricio
Faculty of Agronomy, Universidad de Concepción, Concepción 4070386, Chile.
Faculty of Engineering and Business, Universidad Adventista de Chile, Km 12 Camino a Tanilvoro, Chillán 3780000, Chile.
Plants (Basel). 2022 Feb 17;11(4):536. doi: 10.3390/plants11040536.
The synergistic effect between heavy metals and microplastics can affect soil properties as well as plant performance and yield. The objective of this study was to evaluate the combined effect of microplastics and cadmium on a soil-plant system. Specifically, we proposed to explore changes in soil microbiological activity, the growth and yield parameters of strawberry plants, and to evaluate the accumulation of these pollutants in the soil and root system. Plants were planted in clay pots under greenhouse conditions. The experiment was set up as a completely randomized design, with four treatments (Control; MPs; Cd; and Cd + MPs) and five replicates. The results showed that MPs and/or Cd affected plant growth, plant biomass, the number of fruits, root characteristics, dehydrogenase activity, acid phosphatase, and microbial biomass, and increased the accumulation of Cd in the roots and soil. The increased bioavailability of Cd, due to the presence of microplastics, could explain the observed negative effects on soil properties and the performance of strawberry plants.
重金属与微塑料之间的协同效应会影响土壤性质以及植物生长和产量。本研究的目的是评估微塑料和镉对土壤-植物系统的综合影响。具体而言,我们旨在探究土壤微生物活性的变化、草莓植株的生长和产量参数,并评估这些污染物在土壤和根系中的积累情况。植株种植于温室条件下的陶土花盆中。实验采用完全随机设计,设有四个处理组(对照组;微塑料组;镉组;镉+微塑料组),每组重复五次。结果表明,微塑料和/或镉影响了植物生长、植物生物量、果实数量、根系特征、脱氢酶活性、酸性磷酸酶和微生物生物量,并增加了镉在根系和土壤中的积累。由于微塑料的存在而导致镉生物有效性增加,这可以解释所观察到的对土壤性质和草莓植株生长的负面影响。