Earthworms can alleviate the harmful effects of microplastic pollution on plant growth.
en-GBde-DEes-ESfr-FR

Earthworms can alleviate the harmful effects of microplastic pollution on plant growth.

05.11.2025 TranSpread

With the widespread use of plastic products a large amount of microplastics (MPs) have entered soil ecosystems, leading to a continuous decline in soil environmental quality. MPs in the soil can adhere to the surfaces of plant roots, hindering nutrient absorption and disrupting physiological metabolism. Furthermore, MPs can affect water and nutrient cycles in the soil, alter soil microbial communities, and indirectly increase stress on plant growth.

Due to the complexity of soil ecosystems, mitigating the harmful effects of MPs pollution on plants remains challenging. Recently, a Chinese research team published findings in Environmental Chemistry and Ecotoxicology, revealing the role of earthworms in alleviating the negative impact of microplastics on plants. The team found that earthworms can reduce the adverse effects of microplastics on plant growth by promoting soil nutrient and organic matter cycling, improving microbial communities, and regulating plant gene expression.

Hailong Wang, who led the study, pointed out that earthworms also promote an increase in the relative abundance of microbial communities involved in nitrogen, phosphorus, and carbon cycling in soils contaminated with MPs, which is beneficial for promoting the nutrient cycling processes of nitrogen, phosphorus, and organic matter in the soil.

"Our research further reveals that earthworms can alleviate the adverse effects of MPs on plant growth by regulating gene expression in plants," says Wang. "In MPs contaminated soils, the addition of earthworms upregulates genes related to ribosomal protein synthesis in the roots of Astragalus sinicus L, improving the efficiency of protein synthesis and supporting cell development and repair."

At the same time, earthworms also promote the expression of genes related to nutrient accumulation and energy metabolism in Astragalus sinicus L, enhancing the plant's resistance to environmental stress. "We hope that the results of this study can be applied in future ecological restoration efforts and provide a scientific basis and solutions for mitigating the adverse effects of microplastic pollution on plant growth," adds Wang.

###

References

DOI

10.1016/j.enceco.2025.09.006

Original Source URL

https://doi.org/10.1016/j.enceco.2025.09.006

Funding information

This research was supported by Joint Special Project of Universities in Yunnan Province (202401BA070001-003), the Applied Basic Research Foundation of Yunnan Province (202301AT070051), a grant (no. 2024KF007) from State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan and Key Laboratory of Industrial Microbial Fermentation Engineering of Yunnan Province, Yunnan University and Ten Thousand Talent Plans for Young Top-notch Talents of Yunnan Province (YNWRQNBJ-2018-011).

About Environmental Chemistry and Ecotoxicology

Environmental Chemistry and Ecotoxicology publishes studies that examine the environmental chemistry (distribution, dynamics and fate) of pollutants, the biologic and toxic effects of man-made chemical pollutants on ecotoxicological animal models and plants.

Paper title: Modulation of soil microenvironment and plant gene expression by earthworms reduces polypropylene microplastic-induced growth stress in Chinese milk vetch (Astragalus sinicus L.)
Angehängte Dokumente
  • PARTIAL MECHANISMS BY WHICH EARTHWORMS ALLEVIATE THE EFFECTS OF POLYPROPYLENE MICROPLASTICS ON THE GROWTH OF ASTRAGALUS SINICUS L.
05.11.2025 TranSpread
Regions: North America, United States, Asia, China
Keywords: Science, Agriculture & fishing, Environment - science

Disclaimer: AlphaGalileo is not responsible for the accuracy of content posted to AlphaGalileo by contributing institutions or for the use of any information through the AlphaGalileo system.

Referenzen

We have used AlphaGalileo since its foundation but frankly we need it more than ever now to ensure our research news is heard across Europe, Asia and North America. As one of the UK’s leading research universities we want to continue to work with other outstanding researchers in Europe. AlphaGalileo helps us to continue to bring our research story to them and the rest of the world.
Peter Dunn, Director of Press and Media Relations at the University of Warwick
AlphaGalileo has helped us more than double our reach at SciDev.Net. The service has enabled our journalists around the world to reach the mainstream media with articles about the impact of science on people in low- and middle-income countries, leading to big increases in the number of SciDev.Net articles that have been republished.
Ben Deighton, SciDevNet
AlphaGalileo is a great source of global research news. I use it regularly.
Robert Lee Hotz, LA Times

Wir arbeiten eng zusammen mit...


  • e
  • The Research Council of Norway
  • SciDevNet
  • Swiss National Science Foundation
  • iesResearch
Copyright 2025 by DNN Corp Terms Of Use Privacy Statement