Temporiti Marta Elisabetta Eleonora, Nicola Lidia, Girometta Carolina Elena, Roversi Anna, Daccò Chiara, Tosi Solveig
Laboratory of Mycology, Department of Earth and Environmental Sciences, University of Pavia, 27100 Pavia, Italy.
J Fungi (Basel). 2022 Nov 25;8(12):1247. doi: 10.3390/jof8121247.
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 followed by 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.
塑料污染是一个日益严重的环境问题,导致其在土壤中积累并持续存在数十年,可能对土壤质量和生态系统服务产生影响。微生物,尤其是真菌,是土壤生物多样性和土壤代谢能力的关键组成部分。本研究的目的是研究意大利北部三个不同地点的土壤真菌生物多样性和土壤微生物代谢谱,同时测量土壤中宏观和微观塑料的浓度。土壤微生物的代谢分析通过Biolog生态板进行,而18S核糖体cDNA的ITS1片段用作真菌群落代谢条形码分析的目标。结果表明,在微塑料浓度最高的地点,土壤微生物代谢能力显著且剧烈下降。此外,与其他两个地点相比,最原始地点的土壤真菌群落组成存在显著差异。土壤样本的代谢条形码分析显示,在所有采样土壤中, 普遍占主导地位,其次是 。此外,在所有三个地点都观察到参与植物残体降解的真菌占主导地位。总之,本研究为进一步研究塑料对土壤微生物群落及其活动的影响奠定了基础。