Author:
Shirin Jazbia,Chen Yongjing,Hussain Shah Azhar,Da Yanmei,Zhou Guowei,Sun Qingye
Abstract
Microplastics (MPs) have garnered global attention as emerging contaminants due to their adaptability, durability, and robustness in various ecosystems. Still, studies concerning their combination with heavy metals (HMs), their interactions with soil biota, and how they affect soil physiochemical properties and terrestrial plant systems are limited. Our study was set to investigate the combined effect of HMs (cadmium, arsenic, copper, zinc and lead) contaminated soil of Tongling and different sizes (T1 = 106 µm, T2 = 50 µm, and T3 = 13 µm) of polystyrene microplastics on the soil physiochemical attributes, both bacterial and fungal diversity, compositions, AMF (arbuscular mycorrhizal fungi), plant pathogens in the soil, and their effect on Lactuca sativa by conducting a greenhouse experiment. According to our results, the combination of HMs and polystyrene microplastic (PS-MPs), especially the smaller PS-MPs (T3), was more lethal for the lettuce growth, microbes and soil. The toxicity of combined contaminants directly reduced the physio-biochemical attributes of lettuce, altered the lettuce’s antioxidant activity and soil health. T3 at the final point led to a significant increase in bacterial and fungal diversity. In contrast, overall bacterial diversity was higher in the rhizosphere, and fungal diversity was higher in the bulk soil. Moreover, the decrease in MPs size played an important role in decreasing AMF and increasing both bacterial and fungal pathogens, especially in the rhizosphere soil. Functional prediction was found to be significantly different in the control treatment, with larger MPs compared to smaller PS-MPs. Environmental factors also played an important role in the alteration of the microbial community. This study also demonstrated that the varied distribution of microbial populations could be an ecological indicator for tracking the environmental health of soil. Overall, our work showed that the combination of HMs and smaller sizes of MPs was more lethal for the soil biota and lettuce and also raised many questions for further studying the ecological risk of PS-MPs and HMs.
Reference156 articles.
1. Effect of water regime on growth and yield of lettuce (Lactuca sativa l.);Acharya;Bioscan,2013
2. Combined application of compost and Bacillus sp. CIK-512 ameliorated the lead toxicity in radish by regulating the homeostasis of antioxidants and lead;Ahmad;Ecotoxicol. Environ. Saf.,2018
3. Cadmium-tolerant bacteria induce metal stress tolerance in cereals;Ahmad;Environ. Sci. Pollut. Res.,2014
4. Environmental perspectives of microplastic pollution in the aquatic environment: a review;Ahmad;Mar. Life Sci. Technol.,2020
5. Contrasting responses of arbuscular mycorrhizal fungal families to simulated climate warming and drying in a semiarid shrubland;Alguacil;Mar. Life Sci. Technol.Microbial Ecol.,2022