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Microplastics Can Change Soil Properties and Affect Plant Performance

Environmental Science & Technology · 2019 · Vol. 53(10) · pp. 6044–6052
Anderson Abel de Souza MachadoChung Wai LauWerner KloasJoana BergmannJulien BachelierErik FaltinRoland BeckerAnna Sofia GörlichMatthias C. Rillig

Abstract

Microplastics can affect biophysical properties of the soil. However, little is known about the cascade of events in fundamental levels of terrestrial ecosystems, i.e., starting with the changes in soil abiotic properties and propagating across the various components of soil-plant interactions, including soil microbial communities and plant traits. We investigated here the effects of six different microplastics (polyester fibers, polyamide beads, and four fragment types: polyethylene, polyester terephthalate, polypropylene, and polystyrene) on a broad suite of proxies for soil health and performance of spring onion ( Allium fistulosum). Significant changes were observed in plant biomass, tissue elemental composition, root traits, and soil microbial activities. These plant and soil responses to microplastic exposure were used to propose a causal model for the mechanism of the effects. Impacts were dependent on particle type, i.e., microplastics with a shape similar to other natural soil particles elicited smaller differences from control. Changes in soil structure and water dynamics may explain the observed results in which polyester fibers and polyamide beads triggered the most pronounced impacts on plant traits and function. The findings reported here imply that the pervasive microplastic contamination in soil may have consequences for plant performance and thus for agroecosystems and terrestrial biodiversity.

Microplastics and Plastic Pollutionbiodegradable polymer synthesis and propertiesRecycling and Waste Management TechniquesMicroplasticsEnvironmental scienceBiomass (ecology)Environmental chemistryEcologyBiologyChemistry

MeSH terms

PlantsPlasticsSoilEcosystemBiodiversity

Funding

  • Deutsche Forschungsgemeinschaft
  • Education, Audiovisual and Culture Executive Agency
  • H2020 European Research Council
Citations
1,944
FWCI
38.88
field-weighted impact
References
29
Percentile
100%
vs. same field & year
Citations per year
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