The Analysis of the Mycobiota in Plastic Polluted Soil Reveals a Reduction in Metabolic Ability

Author:

Temporiti Marta Elisabetta EleonoraORCID,Nicola LidiaORCID,Girometta Carolina ElenaORCID,Roversi Anna,Daccò ChiaraORCID,Tosi SolveigORCID

Abstract

Plastic pollution is a growing environmental issue that results in its accumulation and persistence in soil for many decades, with possible effects on soil quality and ecosystem services. Microorganisms, and especially fungi, are a keystone of soil biodiversity and soil metabolic capacity. The aim of this research was to study soil fungal biodiversity and soil microbial metabolic profiles in three different sites in northern Italy, where macro- and microplastic concentration in soil was measured. The metabolic analyses of soil microorganisms were performed by Biolog EcoPlates, while the ITS1 fragment of the 18S ribosomal cDNA was used as a target for the metabarcoding of fungal communities. The results showed an intense and significant decrease in soil microbial metabolic ability in the site with the highest concentration of microplastics. Moreover, the soil fungal community composition was significantly different in the most pristine site when compared with the other two sites. The metabarcoding of soil samples revealed a general dominance of Mortierellomycota followed by Ascomycota in all sampled soils. Moreover, a dominance of fungi involved in the degradation of plant residues was observed in all three sites. In conclusion, this study lays the foundation for further research into the effect of plastics on soil microbial communities and their activities.

Publisher

MDPI AG

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics,Microbiology (medical)

Reference132 articles.

1. Plastic Europe (2022, June 14). Plastics–The Facts 2021: An Analysis of European Plastics Production, Demand and Waste Data. Available online: https://plasticseurope.org/knowledge-hub/plastics-the-facts-2021/.

2. Behavior of microplastics and plastic film residues in the soil environment: A critical review;Ruimin;Sci. Total Environ.,2019

3. Effects of different concentrations and types of microplastics on bacteria and fungi in alkaline soil;Fan;Ecotoxicol. Environ. Saf.,2022

4. Aging mechanism of microplastics with UV irradiation and its effects on the adsorption of heavy metals;Mao;J. Hazard. Mater.,2020

5. Lost at sea: Where is all the plastic?;Thompson;Science,2004

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